0000000000917386

AUTHOR

Giuseppe Campione

showing 177 related works from this author

RC column externally strengthened with RC jackets

2013

In this paper the behaviour in compression of RC columns externally strengthened with concrete jacketing is analysed and a cross-section analysis of the jacketed member under axial load and bending moment is developed. The focus was to study the effect of confinement of concrete jacket on concrete core and the behaviour of compressed bars with buckling effects. Some other important aspects such as shrinkage, creep, old to new concrete surfaces and bond split effects were not included in the model because: the use of thick non-shrink grout jacket and a well-roughened surface of old-to-new concrete was supposed; long term effects were included though corrective coefficients for monolithic beh…

Engineeringbusiness.industryGroutBuilding and ConstructionStructural engineeringengineering.materialCompression (physics)Settore ICAR/09 - Tecnica Delle CostruzioniCreepBucklingMechanics of MaterialsSolid mechanicsBending momentGeneral Materials ScienceComposite materialbusinessDuctilityCivil and Structural EngineeringShrinkageConcrete columns Concrete jacketing Confinement Moment–curvature diagram
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Behavior of fiber-reinforced concrete columns under axially and eccentrically compressive loads

2010

An experimental investigation into the behavior of 16 short, confined, reinforced concrete columns with and without steel fibers was carried out. The columns with square sections had a concrete core 165 x 165 mm (6.49 x 6.49 in.) at the midsection and were hunched at the ends to apply eccentric loading and prevent boundary effects. The specimens were tested to failure at different strain rates under two loading schemes: concentric compression and eccentric compression with a constant eccentricity. The axial load and axial strains were obtained to evaluate the effects of the presence of steel fibers, the thickness of the cover concrete, and the eccentricity of the applied axial load. The com…

Materials scienceCompressive testbusiness.industryColumnmedia_common.quotation_subjectStructural engineeringFiber-reinforced concreteSteel fiberBuilding and ConstructionSpallCompression (physics)Confined concretelaw.inventionSettore ICAR/09 - Tecnica Delle CostruzioniMoment-curvature diagramlawUltimate tensile strengthEccentricity (behavior)Composite materialbusinessAxial symmetryDuctilityConcrete covermedia_commonCivil and Structural Engineering
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A simple model for the calculation of the axial load-carrying capacity of corroded RC columns

2015

In the present paper, a simplified model is used to determine the axial load-carrying capacity of compressed short reinforced concrete columns subjected to corrosion processes. The model considers members with circular and square cross-sections and accounts for—cover spalling, —concrete core confinement induced by transverse steel reinforcement, —buckling of longitudinal reinforcing bars. Strength reduction in concrete cover and core due to cracking induced by rust formation, reduction of steel area in longitudinal bars and transverse stirrups due to general and pitting corrosion and loss of confinement pressure are considered. The load-carrying capacity and load-axial strain curves here ge…

Materials science0211 other engineering and technologies020101 civil engineering02 engineering and technology0201 civil engineeringCorrosion021105 building & constructionPitting corrosionMechanics of MaterialGeneral Materials ScienceComposite materialConcrete coverCivil and Structural EngineeringBucklingbusiness.industryCompressionStrength reductionBuilding and ConstructionStructural engineeringSpallStrength of materialsCorrosionCrackingBucklingMechanics of MaterialsMaterials Science (all)businessConfinementMaterials and Structures
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The use of steel angles for the connection of laminated glass beams: Experiments and modelling

2012

Abstract In the present paper the experimental results relative to three-point bending tests on multilayer glass beams and on semi-rigid connections realised with stainless double web angles are presented and discussed. Small and medium size glass beams were tested and load–deflection curves and crack patterns at failure were recorded. The laminated glass specimens, of equal cross-section, were characterised by three different combinations of annealed float and fully thermally tempered glass plies and different interlayers. Steel joints constituted by double web angles to connect two glass beams were tested adopting several geometrical configurations and using stainless steel bolts preloade…

Bearing capacityMaterials scienceStainleConnection (vector bundle)Settore ICAR/10 - Architettura TecnicaToughened glassBuilding and ConstructionBendingPhysics::Classical PhysicsCondensed Matter::Disordered Systems and Neural NetworksFlexural responseSettore ICAR/09 - Tecnica Delle CostruzioniGlass memberBrittlenessFlexural strengthSteel angleMultilayerGlaGeneral Materials ScienceBearing capacityComposite materialLaminated glassCivil and Structural EngineeringStress concentrationConstruction and Building Materials
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Flexural Test on a Full-Scale 60-kW Wind Turbine-Tower Telescopic Steel Pipe

2019

A full-scale static test to failure was conducted on 6-m (236.22 in.)-long steel pipes constituting a segment of a telescopic wind tower with a 60-kW wind turbine. The diameter of the circular cross section of the steel pipes was 900 mm (35.43 in.), and the nominal thickness was 10 mm (0.39 in.). The steel grade was 355 MPa (51,488 psi). The tests were conducted in a force-controlled mode in a four-point bending test with a shear-to-span ratio of 2.05. The flexural limit states developed in the form of ovalization of the cross section and of local buckling. The buckling occurred in the plastic range because of the diameter-to-thickness ratio of the section. Although local buckling caused sl…

business.industryBucklingMetal and composite structuresFull scaleStructural engineeringBuilding and ConstructionTurbineFull-scale testTest (assessment)Flexural strengthSettore ICAR/09 - Tecnica Delle CostruzioniOvalizationArts and Humanities (miscellaneous)Flexural strengthFull-scale testsShear-to-moment interactionSteel pipesEnvironmental scienceMetal and composite structurebusinessBuckling; Flexural strength; Full-scale tests; Metal and composite structures; Ovalization; Shear-to-moment interaction; Steel pipes; Civil and Structural Engineering; Building and ConstructionTowerCivil and Structural Engineering
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Retrofitting of Existing Steel MR-Frames by Encasing the Columns

2005

Summary The study concerns the behaviour of steel MR-frames subjected to vertical and lateral forces, not properly designed according to capacity design criteria, and upgraded by means of encasing the steel columns with concrete having different grade. The purpose of the paper is to examine if the proposed technique allows one to adequately increase the lateral stiffness and the resistance of the frames. Pushover analyses on multi-storey frames are performed trough a non-linear calculus program, able to take into account of the second order effects. The behaviour of frames with encased columns was compared with those of the bare frames, highlighting that with the proposed technique it is po…

Capacity designEngineeringSteel columnssteel moment resisting frames refurbischement of the columns by encasing.business.industryHingeRetrofittingLateral stiffnessLimit state designStructural engineeringDuctilitybusinessJoint (geology)IABSE Symposium, Lisbon 2005: Structures and Extreme Events
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Analytical evaluation of steel–concrete composite trussed beam shear capacity

2015

A calculation method for the prediction of the shear resistance of precast composite beams, named Hybrid Steel Trussed-Concrete Beams (HSTCBs), is herein proposed. HSTCBs are constituted by a prefabricated steel truss embedded within a concrete matrix cast in situ so that, after curing, the two materials work together in the mechanical response of the composite structural element, the steel truss behaving as reinforcement of the beam. The proposed analytical model is developed on the basis of the results of a reference experimental campaign of three-point bending tests available in the literature, carried out on specimens of HSTCB designed in order to attain a shear failure. Furthermore, th…

EngineeringDiagonalComposite number0211 other engineering and technologiesTruss020101 civil engineering02 engineering and technologyAnalytical modeling; Beam and arch action; Shear resistance; Steel–concrete composite beams; Building and Construction; Civil and Structural Engineering; Mechanics of Materials; Materials Science (all)0201 civil engineeringStructural elementAnalytical modelingBeam and arch actionPrecast concreteSteel–concrete composite beams021105 building & constructionGeneral Materials ScienceMechanics of MaterialCivil and Structural Engineeringbusiness.industryStructural engineeringBuilding and ConstructionFinite element methodSettore ICAR/09 - Tecnica Delle CostruzioniShear resistanceMechanics of MaterialsSolid mechanicsSteel–concrete composite beamMaterials Science (all)businessBeam (structure)
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Seismic behavior of exterior RC beam-column joints without code-specified ties in the joint core

2021

Abstract Beam-column joint design for reinforced concrete (RC) buildings is a critical issue for modern earthquake engineering, because for these structural elements, the current codes provide several geometrical constraints and reinforcement provisions, which may be very complex to implement during the construction phase. To investigate how a construction error might influence the joint behavior, two identical full-scale exterior beam-column joints specimens are built, according to Italian Building Code specifications for the high ductility class, but without the required horizontal ties inside the joint panel. This construction error could be plausible because, according to the design dra…

Earthquake engineeringbusiness.industryComputer scienceBeam-column jointStructural engineeringreinforced concrete; beam-column joint; cyclic behavior; shear strength; high ductility; seismic design; construction error.Cyclic behaviorHigh ductilityShear (sheet metal)Reinforced concreteConstruction errorShear strengthBuilding codeShear strengthbusinessDuctilityReduction (mathematics)ReinforcementJoint (geology)Seismic designCivil and Structural EngineeringReinforced concrete; Beam-column joint; Cyclic behavior; Shear strength; High ductility; Seismic design; Construction error;
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Behavior of fiber reinforced concrete-filled tubular columns in compression

2002

Experimental compression tests on steel tubular columns filled with plain concrete and fiber reinforced concrete are carried out. For each type of column three different lengths are considered in order to point out the influence of slenderness on the ductility in compression. The experimental investigations presented here have emphasized the improvement in ductility capacity obtained when fiber reinforced concrete is utilised instead of plain concrete. Moreover, the results obtained stress that the lateral displacements due to global instability are drastically reduced.

Materials sciencebusiness.industryBuilding and ConstructionStructural engineeringFiber-reinforced concreteCompression (physics)law.inventionStress (mechanics)Mechanics of MaterialsReinforced solidlawSolid mechanicsGeneral Materials ScienceComposite materialDuctilitybusinessCivil and Structural EngineeringMaterials and Structures
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Compressive behaviour of laminated structural glass members

2011

Abstract Several experimental investigations in the past few years have highlighted the fact that the compressive strength of glass was significantly higher than its tensile strength, allowing new applications of glass in compression members. However, due to the high slenderness of structural glass elements made of thin glass panels, they tend to fail in a brittle manner. A substantial amount of fundamental research has been carried out in the past few years to investigate the stability behaviour of structural glass elements. However, although buckling of glass panels has been quite well studied, a very poor amount of research has been addressed to glass columns, which by contrast represent…

Materials scienceBending (metalworking)business.industryBucklingCompressionLaminated glaStructural engineeringCompression (physics)Thin glassCompressive strengthBrittlenessGlass columnBucklingUltimate tensile strengthComposite materialbusinessLaminated glassCivil and Structural Engineering
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Use of FRP fabrics and stainless steel grids for strengthening brick masonry columns

2016

This work presents the results of an experimental investigation on 42 solid clay brick columns internally strengthened by FRP fabrics or stainless steel grids placed in the horizontal joints of mortar. Monotonic compressive loading tests were carried out under concentric and eccentric load. Eccentric tests were carried out loading the specimens on a reduced area with respect to the entire crosssection producing a D-region. The reinforcing of every course and of alternate courses are studied. The effectiveness of the proposed strengthening techniques is discussed, in terms of increase in strength and energy required to the collapse of brick columns. An analytical expression is proposed that …

Materials sciencebusiness.industryMasonry materialBrick masonryD regionStrengthening (metal)Structural engineeringD regionFibre-reinforced plasticMasonrybusinessReinforcementStainless steel
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Strength and ductility of R.C. columns strengthened with steel angles and battens

2012

Abstract In this paper the behaviour of R.C. members externally strengthened with steel angles and battens subjected to axial force and bending moment is analysed. A fibre model was utilised to predict the moment–curvature diagrams of the strengthened members on the basis of stress–strain curves of the constituent materials (confined concrete, steel bars and angles) recently derived by the author. The stress–strain curves utilised for compressed concrete were able to take into account the confinement effects induced by longitudinal (bars and steel angles) and transverse (stirrups and battens) steel reinforcements. Constitutive laws in compression for confined concrete and steel bars and ang…

Materials sciencebusiness.industryMoment–curvature diagramBuilding and ConstructionStructural engineeringCurvatureCompression (physics)Moment (mathematics)Transverse planeSettore ICAR/09 - Tecnica Delle CostruzioniSteel angleBattenBending momentStrengtheningGeneral Materials ScienceAxial forceComposite materialbusinessAxial symmetryDuctilityCivil and Structural EngineeringConcrete columnConfinementDuctility
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Retrofit of External Beam-Column Concrete Joints with Diagonally Crossed Reinforcement: Experimental and Analytical Investigations

2022

AbstractExperimental research was carried out regarding the flexural behavior under cyclic reversal loading of six full-scale external beam-column concrete joints cast with plain concrete in the pr...

Materials scienceArts and Humanities (miscellaneous)Flexural strengthDiagonalShear strengthBeam columnBuilding and ConstructionComposite materialReinforcementCivil and Structural EngineeringPractice Periodical on Structural Design and Construction
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Flexural and Shear Resistance of Steel Fiber–Reinforced Lightweight Concrete Beams

2014

In the present paper an analytical model is proposed that is able to determine the shear resistance of lightweight reinforced concrete beams with longitudinal bars, in the presence of reinforcing steel fibers. The model is based on the evaluation of the resistance contribution resulting from beam and arch actions. For the resistance contribution of main bars in tension, the residual bond adherence of steel bars and the crack spacing of reinforced concrete (RC) beams in the presence of fibers are considered. The contribution in terms of postcracking resistance in the tension zone of the beams is also included. The model was verified on the basis of experimental data available in the literatu…

Materials scienceConcrete beamsbusiness.industryMechanical EngineeringShear resistanceBuilding and ConstructionStructural engineeringResiduallightweigth concrete beams shearSettore ICAR/09 - Tecnica Delle CostruzioniFlexural strengthShear (geology)Mechanics of MaterialsUltimate tensile strengthGeneral Materials ScienceArchbusinessBeam (structure)Civil and Structural EngineeringJournal of Structural Engineering
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Flexural response of FRC corbels

2009

Abstract A strut-and-tie macro-model is proposed to determine the flexural response of fiber reinforced concrete (FRC) corbels, reinforced with longitudinal bars and subjected to vertical load. The effects of the corbel geometry, the percentage of steel fibers, and grades of concrete and steel bars are also included. The model, which is specific for FRC corbels with hooked steel fibers, allows the determination of load levels, and corresponding displacements, associated with the first cracking, yielding of the main steel bars and crushing of the concrete strut. The sequential occurrence of these phenomena is established, depending on the amounts of steel fibers and reinforcing steel. The si…

Materials sciencebusiness.industryVertical loadBuilding and ConstructionStructural engineeringFiber-reinforced concreteReinforced concretelaw.inventionCrackingFlexural strengthlawCorbelShear strengthGeneral Materials ScienceBearing capacityComposite materialbusinessCement and Concrete Composites
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Influence of steel reinforcements on the behavior of compressed high strength R.C. circular columns

2012

Abstract In the present paper the focus is on the compressive response of short high strength reinforced concrete members having circular transverse cross-sections and reinforced with longitudinal steel bars and transverse spirals or hoops. An analytical model is proposed which allows one to estimate the confinement pressures exerted by transverse steel and by longitudinal bars during the loading process, taking into account the interaction of the hoops or spirals with the inner core both in the plane of the transverse steel and in the space between two successive hoops. Yielding of steel spirals or hoops and longitudinal bars including buckling phenomena and damage to the concrete core are…

High strength concreteMaterials sciencebusiness.industryPlane (geometry)BucklingStress–strain curveInner coreCompressionStructural engineeringCompression (physics)Core (optical fiber)Transverse planeSettore ICAR/09 - Tecnica Delle CostruzioniBucklingStress-strain curveComposite materialbusinessElastic modulusConfinementCivil and Structural Engineering
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Overstrength requirements to avoid brittle shear failure in RC slender beams with stirrups

2020

Abstract In this paper, an analytical expression was derived for the prediction of shear strength of slender reinforced concrete (RC) beams with stirrups. Failure occurring in B and D regions of the beam was considered. An expression derived for the shear strength of the B region was based on a modified constant angle truss model. The analytical expression derived consisted of three terms. The first one was related to the concrete contribution expressed through the square root of cylindrical compressive strength, geometrical ratio of longitudinal bars, and depth to width ratio. The second one was relating to the shear force induced by yielding of stirrups to the inclination of the main crac…

Materials sciencebusiness.industryShear forceGeneral EngineeringTruss020101 civil engineeringYoung's modulus02 engineering and technologyStructural engineering0201 civil engineeringsymbols.namesake020303 mechanical engineering & transportsCompressive strengthBrittleness0203 mechanical engineeringShear (geology)Shear strengthsymbolsGeneral Materials SciencebusinessBeam (structure)Engineering Failure Analysis
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Flexural behaviour of external R/C steel fibre reinforced beam-column joints

2011

ABSTRACT A softened strut-and-tie macro model able to reproduce the flexural behaviour of external beam-column joint is presented. The model is specific for concrete with hooked steel fibres (FRC) and it is designed to calculate the flexural response, as load-deflection curve, of a beam-column sub-assemblages. The model considers the presence of a constant vertical load acting on the column and of a monotonically increasing lateral force applied at the tip of the beam.

Environmental EngineeringMaterials scienceThree point flexural testbusiness.industryFlexural modulusSteel fibreVertical loadStructural engineeringbeam-column joint fibre reinforced concrete load-deflection curves analytical-model seismic resistance concrete beams strength connections stressSettore ICAR/09 - Tecnica Delle CostruzioniFlexural strengthBeam columnComposite materialbusinessJoint (geology)Beam (structure)Civil and Structural EngineeringEuropean Journal of Environmental and Civil Engineering
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Flexural Behavior of Steel Fibrous Reinforced Concrete Deep Beams

2012

Experimental research was carried out regarding the flexural behavior of deep beams cast with plain and fibrous concrete with hooked steel fibers, and subjected to monotonic vertical loads. Four deep fiber-reinforced concrete beams were cast. Two of them were made of plain concrete with main and web steel reinforcements (RC), and two were made of hooked steel fiber-reinforced concrete (SFRC) with main steel reinforcements. The experimental results show the brittle behavior of reinforced deep RC members characterized by crushing of concrete struts and fracture of web steel bars. SFRC deep beams exhibit higher strength and, above all, ductility with respect to RC members due to the bridging a…

steel fibersConcrete beamsMaterials sciencebusiness.industryMechanical EngineeringBuilding and ConstructionStructural engineeringReinforced concreteFinite element methoddeep beamBrittlenessFlexural strengthMechanics of MaterialsDeflection (engineering)General Materials SciencebusinessReinforcementSofteningCivil and Structural EngineeringJournal of Structural Engineering
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Efficiency of Stress-Strain Models of Confined Concrete With and Without Steel Jacketing to Reproduce Experimental Results

2016

The improvement and the capacity assessment of existing buildings has become the main topic of the last years so that different studies can be found devoted to damaged structures or structures not having a capacity compatible with the safety levels of the actual codes. Reinforced concrete framed structure buildings represent a conspicuous rate of the existing constructions so many efforts are addressed to them. Referring to this type of buildings, a good prediction of strength and deformation capacity requests models able to interpret the constitutive law of concrete confined by internal reinforcement or by eventual external reinforcement applied to increase capacity of cross-sections. Cons…

Materials scienceLateral pressurebusiness.industryStress–strain curveSteel jacketing0211 other engineering and technologies020101 civil engineering02 engineering and technologyBuilding and ConstructionStructural engineering0201 civil engineeringSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthCompression strength021105 building & constructionAxial loadConcrete confinementAxial loadbusinessThe Open Construction and Building Technology Journal
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Effects of shape of transverse cross-section on the load carrying capacity of laminated glass columns

2014

Abstract In this paper simplified expressions for the calculus of the load carrying capacity of glass columns having rectangular, tee (T) and cruciform (X) transverse cross-sections are proposed and verified against available experimental data. Members with T and X cross-sections are obtained by gluing single multilayered glass panels. The expressions derived take into account of the: shape of the transverse cross-section (rectangular, T, and, X sections); buckling phenomenon (flexural and torsional); failure in the glued sections; long time effects. Case of full connections and absence of connections are considered to determine the range of variation of expressions adopted. The comparison …

TorsionMaterials sciencebusiness.industryBucklingCompressionTorsion (mechanics)Laminated glaBuilding and ConstructionStructural engineeringLoad carryingTransverse cross sectionTransverse planeSettore ICAR/09 - Tecnica Delle CostruzioniGlass columnBucklingCruciformFlexural strengthGeneral Materials ScienceComposite materialbusinessLaminated glassCivil and Structural EngineeringFlexure
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Experimental Investigation for Degradation Analysis of an RC Italian Viaduct and Retrofitting Design

2020

AbstractThe degradation state of RC bridge structures is one of the most important and difficult aspects to be interpreted. For these structures, structural analysis using FEM requires a reliable d...

EngineeringDamage detectionbusiness.industry0211 other engineering and technologies020101 civil engineering02 engineering and technologyBuilding and ConstructionStructural engineeringBridge (interpersonal)Finite element method0201 civil engineeringArts and Humanities (miscellaneous)021105 building & constructionRetrofittingbusinessCivil and Structural EngineeringDegradation (telecommunications)Practice Periodical on Structural Design and Construction
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Influence of design mistakes and material degradation on the collapse of a long-span RC roof in South Italy

2020

Abstract In 2004, during ordinary maintenance work, consisting in the waterproofing of a building located in the South of Italy, the long-span (14.50 m) in situ cast reinforced concrete (RC) roof partially collapsed. The building, constructed in 1950, was in service as a cinema up to 1967 and utilized as a school up to 1985. Finally, it was a hotel up to 2000. In 2004, when the building was not in service and underwent maintenance work, it partially collapsed under the dead load. After the collapse, which involved a large portion of the roof, several beams and two columns, the Court nominated a first Official Technical Consultant in order to investigate on the causes of failure and related …

Design mistakesEngineeringWaterproofingStructural systemCollapse (topology)020101 civil engineering02 engineering and technologyMaterial degradationSteel bar0201 civil engineering0203 mechanical engineeringNew roofForensic engineeringRetrofittingBuildingGeneral Materials ScienceRoofBond failurebusiness.industryGeneral EngineeringSettore ICAR/09 - Tecnica Delle Costruzioni020303 mechanical engineering & transportsWork (electrical)Structural loadbusinessSettore ICAR/08 - Scienza Delle CostruzioniRC
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Flexural Response of RC Beams Failing in Shear

2020

In this paper, an analytical model to determine the flexural response of simply supported RC beams under four-point bending tests failing in flexure and shear is presented. The model is able to provide load-deflection curves, including also the shear contributions, which are determined assuming a kinematic rigid plastic model able to consider different strength contributions such as the concrete, the dowel action, and transverse reinforcement with progressive yielding. For each contribution, a physical explanation is provided to link the strength evaluation with a specific kinematic evolution for the determination of the overall response of RC beams under combined shear and flexural loads. …

Materials sciencebusiness.industryShearSteel barBuilding and ConstructionStructural engineeringSettore ICAR/09 - Tecnica Delle CostruzioniBrittle failureArts and Humanities (miscellaneous)Flexural strengthShear (geology)Reinforced concrete beambusinessFlexureCivil and Structural EngineeringPractice Periodical on Structural Design and Construction
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Flexural behaviour of concrete corbels containing steel fibers or wrapped with FRP sheets

2005

In the present paper an analytical and experimental investigation referring to the flexural behaviour of reinforced concrete corbels subjected to vertical forces is presented. For fixed shape and dimensions of the corbels the experimental investigation analyses the effects of the following: longitudinal and transverse steel reinforcements; fiber reinforced concrete (FRC) with hooked steel fibers; external wrapping retrofitting technique with a thin layer of carbon fiber sheet (CFRP). The analytical model based on equivalent truss structures, allows one to determine the bearing capacity of corbels, distinguishing the different ultimate states reached. The analytical results are then compared…

Materials scienceflexural behaviourTrussBendingFiber-reinforced concretelaw.inventionexperimental investigationFlexural strengthCorbellawconfinement effectGeneral Materials ScienceBearing capacityCFRPComposite materialCivil and Structural EngineeringR.C. corbelbusiness.industryFRCBuilding and ConstructionStructural engineeringFibre-reinforced plasticSettore ICAR/09 - Tecnica Delle Costruzionisteel fiberMechanics of MaterialsSolid mechanicsMaterials Science (all)businessMaterials and Structures
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Approximate Solution on Large Deflection of Glass Panels Subjected to Uniform Pressure

2015

The estimation of the deflection of glass panels under wind pressure is important in designing external facades of buildings. A direct method to compute the large deflections of glass panels under uniform loads such as wind pressure is presented. The model allows for derivation of the load-deflection response of square or rectangular multilayered glass panels subject to uniform loads. The boundary conditions examined are those of four-point discontinuous supports or continuous supports along the four sides. With some assumptions on bending and membrane action of flat glasses, simple analytical expressions were derived from the elastic theory. Viscoelastic effects for multilayered glass pane…

Materials sciencebusiness.industryMechanical EngineeringDirect methodStructural engineeringViscoelasticityglass panelslarge displacementsSettore ICAR/09 - Tecnica Delle CostruzioniMembrane actionFlexural strengthMechanics of MaterialsDeflection (engineering)Large deflectionBoundary value problembusinessLaminated glass
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Structural behavior of the old masonry bridge in the Gulf of Castellammare

2016

Abstract Masonry arch bridges represent a very significant part of the heritage of road and railway artworks all over the word and especially in the Mediterranean area, both in terms of: numbers; reduced environmental impact; and static efficiency. In these cases, the cost of maintenance is often limited to the content and channeling of surface water and control of vegetation, which can eventually take root on the joints of the masonry at the shoulders. In masonry bridges, there are no expansion joints or hinges with support equipment or trolleys, as in metal bridges and reinforced concrete ones, or paint, or resin surface protection, all items that affect the cost of maintenance. The perma…

EngineeringServiceability (structure)Brick masonry; Compression; Load-test; Structural analysisHingeStructural analysis020101 civil engineering02 engineering and technologyExpansion jointcomputer.software_genre0201 civil engineeringLoad testing0203 mechanical engineeringmedicineForensic engineeringBrick masonryarches compression load-test structural analysisGeneral Materials ScienceArchbusiness.industryCompressionGeneral EngineeringLoad-testStiffnessStructural engineeringMasonry020303 mechanical engineering & transportsBrick masonryTrainmedicine.symptombusinesscomputer
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Flexural response of external R.C. beam-column joints externally strengthened with steel cages

2015

Abstract An experimental and theoretical research referred to the flexural behavior of external R.C. joints strengthened with steel cages constituted by steel angles and battens is presented. The subassemblage (beam, column and joint) was subjected to a constant vertical load acting on the column and to a monotonically increasing lateral force applied at the tip of the beam. The control specimen is without strengthening system and it was designed with weak column and strong beam and overstrength in the joint region. Strengthening cases here studied refer to steel caging in the column and both in the beam and in the column. Cyclic response in term of load–displacement curves, crack patterns …

Engineeringbusiness.industryColumnShearBeamStructural engineeringShear (sheet metal)Settore ICAR/09 - Tecnica Delle CostruzioniColumn (typography)Flexural strengthJointBattenSteel angleMoment (physics)Beam columnComposite materialbusinessFailure mode and effects analysisJoint (geology)Beam (structure)FlexureCivil and Structural Engineering
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Bond characterization of monolithic and layered glass panels and ultrasonic tests to control glued surfaces

2019

Abstract An experimental investigation is presented regarding the compressive and shear strength of monolithic and PVB laminated glass elements connected by acrylic glue. Ultrasonic tests were also used to control the efficiency of glued surfaces of glass panels. Twenty-four triplets composed of three float glass elements glued with acrylic adhesive were prepared to perform bond tests. Of these twelve triplets were made with monolithic glass elements with a nominal thickness of 20 mm, while twelve were made with layered glass elements 20 mm thick. Three single elements of monolithic glass and three of layered glass were tested for compressive strength. Ultrasonic tests were performed on a s…

Glued jointMaterials scienceFloat glassMechanical testingCompression (physics)Glued jointsCharacterization (materials science)law.inventionShear (sheet metal)Settore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthlawShear strengthGlaAdhesionUltrasonic sensorAdhesion; Glass; Glued joints; Mechanical testing; Ultrasonic testingGlassComposite materialLaminated glassSettore ICAR/08 - Scienza Delle CostruzioniCivil and Structural EngineeringUltrasonic testing
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Applicability of over-coring technique to loaded RC columns

2014

Stress determination is a very important step in the assessment of the safety of existing reinforced concrete structures. In rock mechanic this goal is achieved with the over-coring technique. The main idea behind such a technique is to isolate a material sample from the stress field in the surrounding mass and monitor its re-equilibrium deformation response. If the materials remains elastic, and elastic properties are known, stresses may be obtained from the corresponding measured strains. The goal of this paper is to evaluate if the over-coring technique is applicable to reinforced concrete members. The results of an experimental investigation on the behaviour of compressed concrete colum…

Engineeringbusiness.industryMechanical EngineeringNumerical analysisexperimental researchcompressive testover-coring technique RC columnBuilding and ConstructionStructural engineeringCoringRc columnsStress fieldStress (mechanics)reduction of bearing capacitySettore ICAR/09 - Tecnica Delle CostruzioniMechanics of MaterialsRange (statistics)Compressive testGeotechnical engineeringDeformation (engineering)businessCivil and Structural Engineering
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Load carrying capacity of RC compressed columns strengthened with steel angles and strips

2012

Abstract In this paper a comparison between the analytical expressions for the prediction of the load carrying capacity of strengthened reinforced concrete (RC) columns with steel angles and strips is made. Expressions examined consider: the strength contribution due to the confinement effects induced by transverse strips; the composite action due to steel angles and unconfined concrete core; the strength contribution due to the composite actions of angles and concrete core taking into account that steel angles are subjected to axial force and bending moment and concrete core is confined by transverse strips. Design rules given by recent codes for the design of the strengthened columns are …

EngineeringComposite actionAnalytical expressionsbusiness.industryComposite numberStructural engineeringSTRIPSRecommendationsDesign ruleLoad carryinglaw.inventionCore (optical fiber)Settore ICAR/09 - Tecnica Delle CostruzioniTransverse planelawSteel angleStrengtheningBending momentStripAxial forceComposite materialbusinessConcrete columnConfinementCivil and Structural EngineeringEngineering Structures
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Stainless steel grids for confinement of clay brick masonry columns

2016

This work presents the results of an experimental investigation on the behavior of 21 solid clay brick columns internally strengthened by stainless steel grids placed in the horizontal joints of mortar. This reinforcing technique can be applied as a constructive technique for new construction or as a retrofitting technique for existing structures (old structures to be reconstructed by original constructive method and internal reinforcement). Monotonic compressive loading tests were carried out under concentric and eccentric load. The effects of different numbers of steel grids and eccentricity of the external load were examined. Also, a detailed characterization of the constituent materials…

Materials scienceConcrete and masonry structure0211 other engineering and technologies020101 civil engineering02 engineering and technology0201 civil engineering021105 building & constructionGeneral Materials ScienceGeotechnical engineeringMechanics of MaterialDuctilitySteel gridDuctilityFlexureCivil and Structural EngineeringBrickbusiness.industryMechanical EngineeringCompressionStructural engineeringBuilding and ConstructionMasonryCompression (physics)Strength of materialsSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthMechanics of MaterialsBrick masonryStrengthMaterials Science (all)MortarbusinessSize effect on structural strength
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RC Columns Strengthened with Steel Angles and Battens: Experimental Results and Design Procedure

2013

In this paper, an analytical model for the design of axially loaded strengthened RC columns with steel angles and battens is presented. Cases of directly loaded and not directly loaded steel angles are considered. The model considers the contribution in confinement pressures caused by transverse battens and steel angles and the contribution in terms of the load-carrying capacity of steel angles subjected to axial force and the bending moment. An experimental investigation on the compressive behavior of eight short, confined, RC columns externally strengthened with steel angles and steel battens with various pitches was carried out, and has been utilized as support for the analytical model. …

moment curvatureMaterials sciencebusiness.industryBuilding and ConstructionStructural engineeringStrength of materialsbattenTransverse planeSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthArts and Humanities (miscellaneous)BucklingBending momentBearing capacityAxial symmetrybusinessSize effect on structural strengthconcrete steel angles battensCivil and Structural Engineering
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Shear-to-Moment Interaction in Glass Beams with Open Cross Sections

2018

An experimental investigation regarding the flexural behavior of glass beams with a length of 1,200 mm and rectangular, T-shaped, or I-shaped cross sections is presented and discussed. T-shaped and I-shaped cross sections were obtained by assembling laminated glass (LG) panels of 200 mm depth and 12.76 mm thickness through an acrylic adhesive. Three specimens for each series investigated were tested in flexure, focusing on the flexural and shear response of beams through the determination of the load-deflection curves and crack patterns at rupture. The shear span to depth ratio a/d was 2.25, which is a very low value, and interaction of shear and bending moment occurred during the tests. An…

Materials sciencebusiness.industryMechanical EngineeringAssembly0211 other engineering and technologiesMechanical testing020101 civil engineering02 engineering and technologyStructural engineeringBuilding and ConstructionStrength of materials0201 civil engineeringFlexural strengthShear (geology)Mechanics of Materials021105 building & constructionAdhesionGlaGeneral Materials ScienceMechanics of MaterialMaterials Science (all)businessCivil and Structural Engineering
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Structural Behavior of Telescopic Steel Pipe for a Full-Scale 60 kW Wind Turbine Tower

2020

A simple analytical model, including local effects due to buckling and shear to moment interaction, was developed to pre-dict the load-carrying capacity of CHS tubes under flexure and shear. A finite-element analysis with ABAQUS Code was also conducted for validation of the proposed model. By properly modeling the imperfection effects due to the ovalization of steel tube, a good correlation of the structural response and failure mode was also achieved, and a good correlation with the analytical model was also achieved. Numerical and analytical results were compared with experimental results recently obtained by the author with good agreement. Experimental tests refer to full-scale static te…

Materials science· Ovalization&nbspFull scale020101 civil engineering02 engineering and technologyTurbine0201 civil engineering· Full-scale tests&nbsp0203 mechanical engineeringDuctility· Metal and composite structuresCivil and Structural Engineeringbusiness.industry· Buckling&nbspStructural engineeringShear-to-moment interaction&nbsp· Flexural strength&nbspMoment (mathematics)Shear (sheet metal)Settore ICAR/09 - Tecnica Delle Costruzioni020303 mechanical engineering & transportsBucklingbusinessTowerFailure mode and effects analysis· Steel pipes&nbsp
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Shear design of high strength concrete beams in MRFs

2019

This paper presents the criteria for the shear design of high strength concrete (HSC) beams in moment resisting frames (MRFs). The formulation of an analytical model is provided for the case of beams with longitudinal reinforcement in the presence of transverse stirrups. The model is of additive type, in the meaning that the shear resistance of the beam is evaluated as the sum of several contributions. In particular, the contribution of concrete, longitudinal rebars, and transversal reinforcement are taken into account. Furthermore, for assessing the concrete contribution, a classical approach is followed, according to which two effects arise in the shear mechanism: the arc and the beam eff…

High strength concreteMaterials scienceGeography Planning and DevelopmentFlexural resistance; High strength concrete; Moment resisting frames; Shear resistance; Shear-moment domain; Building and Construction0211 other engineering and technologies020101 civil engineering02 engineering and technologyResidual0201 civil engineeringlcsh:HT165.5-169.9Flexural resistanceReinforcementShear-moment domainHigh strength concrete021110 strategic defence & security studiesbusiness.industryShear resistanceStructural engineeringMoment resisting framesBuilding and Constructionlcsh:City planningUrban StudiesTransverse planeSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthShear resistanceShear (geology)lcsh:TA1-2040Moment resisting framelcsh:Engineering (General). Civil engineering (General)businessBeam (structure)
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Flexural behavior of external beam-column reinforced concrete assemblages externally strengthened with steel cages

2016

In this paper, an experimental study referring to the flexural behavior of full-scale external beam-column joints externally strengthened with steel angles and strips and subjected to cyclic reversal loading is presented. One control specimen and five other specimens having the same characteristics as the control specimen but strengthened with steel angles and strips along beams and columns, and characterized by different configurations of strengthening in the critical regions, were tested. The control specimen was designed with a weak column and strong beam to reproduce the most common cases of old frame structures in the Mediterranean area, which were designed only for gravity loads and a…

Load-deflection curveMaterials sciencebusiness.industryBeam-column assemblage0211 other engineering and technologies020101 civil engineeringFailure mode02 engineering and technologyStructural engineeringBuilding and ConstructionReinforced concrete0201 civil engineeringFlexural strengthSteel angle021105 building & constructionBeam columnStripComposite materialbusinessCyclic actionCivil and Structural Engineering
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Compressive behaviour of concrete elliptical columns confined by single hoops

2007

The compressive behaviour of short concrete members having elliptical cross-sections and confined with single steel hoops is investigated. An analytical model is given for calculation of the stress-strain curves of compressed members also including the valuation of the ultimate stress corresponding to formation of a complete failure plane in the concrete core. The model is able to evaluate the confining pressure due to steel hoops referring to a fictitious reduced area of the confined core and to the effective stresses in the hoops, which are variable along the perimeter; moreover, it makes it possible to determine the maximum compressive strength and the corresponding strain of the confine…

Engineeringbusiness.industryHoopStress–strain curvesStress–strain curveMaximum compressive strengthStructural engineeringEllipseCompressive strengthUltimate streUltimate stressEllipseUltimate strainbusinessCivil and Structural EngineeringConfinement
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Simplified analytical model for moment–axial force domain in the presence of shear in R.C. members externally strengthened with steel cages

2015

Equations for a hand calculation of moment–axial force domain in the presence of shear for R.C. beam/column externally strengthened with steel angles and strips are developed. The analytical derivation is made assuming, for axial load and flexure, the equivalent stress-block parameters for internal forces, considering the confinement effects induced in the concrete core by external cages both in the cases of strips or angles yielding. Limit states due to bond failure, concrete crushing and yielding of steel angles and strips in flexure and in shear, including moment-to-shear interaction, are considered. The proposed model gives results in a good agreement with available experimental data an…

Axial force–moment interaction; Concrete beams; Concrete columns; Shear–moment interaction; Steel angles; Strengthening; Strips; Building and Construction; Civil and Structural Engineering; Mechanics of Materials; Materials Science (all)Materials scienceAxial force–moment interactionMaterials ScienceConcrete beams0211 other engineering and technologiesBond failureConcrete beam020101 civil engineering02 engineering and technologySTRIPSSteel angles0201 civil engineeringlaw.inventionlawStrips021105 building & constructionConcrete columnsMechanics of MaterialGeneral Materials ScienceCivil and Structural EngineeringHand calculationShear–moment interactionbusiness.industryBuilding and ConstructionStructural engineeringSettore ICAR/09 - Tecnica Delle CostruzioniShear (geology)Mechanics of MaterialsSteel angleSolid mechanicsStrengtheningAxial loadStripMaterials Science (all)Axial forcebusinessInternal forcesConcrete columnMaterials and Structures
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Influence of FRP wrapping techniques on the compressive behavior of concrete prisms

2006

Abstract Results of an experimental investigation on the compressive behavior of concrete prisms with square cross-section, externally wrapped with carbon fiber reinforced plastic (CFRP) sheets are presented. The effects of the following parameters were analyzed: local reinforcement at the corners and continuous layers; horizontal and vertical discontinuous strips; number of continuous layers—length of specimens. An analytical model is proposed to determine the maximum bearing capacity of compressed concrete members with square cross-section and externally wrapped with FRP for the different configurations examined, and also able to consider the strength reduction with the length increase of…

Materials sciencebusiness.industryStrength reductionBuilding and ConstructionStructural engineeringSTRIPSFibre-reinforced plasticCompression (physics)Strength of materialslaw.inventionlawGeneral Materials ScienceBearing capacityPrismComposite materialbusinessReinforcementCement and Concrete Composites
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Behaviour in compression of lightweight fiber reinforced concrete confined with transverse steel reinforcement

2004

Abstract The compressive behavior of lightweight fiber reinforced concrete confined with transverse reinforcement consisting of steel stirrups or spirals was analyzed. Pumice stone and expanded clay aggregates were utilized to decrease the weight of the composite; hooked steel fibers were also added. The investigation was carried out by testing cylindrical and prismatic specimens of different sizes in compression using an open-loop displacement control machine, recording the full load–deformation curves. The influence of the dimensions and shape on the bearing capacity and on the ductility of the specimens confined with transverse steel reinforcements was analyzed. The results show the poss…

Materials sciencebusiness.industryStress–strain curveComposite numberlightweight concrete pumice stone expanded clay steel fibers steel transverse reinforcement compression tests stress-strain curves shape effectsBuilding and ConstructionFiber-reinforced concreteStructural engineeringCompression (physics)law.inventionTransverse planelawGeneral Materials ScienceBearing capacityComposite materialReinforcementDuctilitybusiness
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Frictional effects in structural behavior of no-end-connected steel-jacketed RC columns: Experimental results and new approaches to model numerical a…

2017

Steel jacketing of reinforced concrete (RC) columns is a common retrofitting technique used to restore bearing and deformation capacity of buildings presenting structural deficiencies. For practical reasons, steel angles are in several cases arranged leaving a gap with the end beams or slabs. Despite this disconnection, the angles are still able to support a non-negligible portion of load because of the frictional forces developed along the column-angle contact interface. In these cases, the definition of computational numerical and analytical models for the assessment of reinforced cross sections becomes more complex and must be handled with care. The actual load-carrying capacity of the a…

EngineeringFriction0211 other engineering and technologies020101 civil engineeringFiber-section02 engineering and technology0201 civil engineeringlaw.inventionOpenSeeslaw021105 building & constructionRetrofittingGeneral Materials ScienceGeotechnical engineeringMechanics of MaterialDomainOpenSeeCivil and Structural EngineeringSteel jacketing; Confinement; OpenSees; Friction; Cohesion; Fiber-section; Domains; Special design issuesBearing (mechanical)business.industryOpenSeesMechanical EngineeringSteel jacketingStructural engineeringBuilding and ConstructionReinforced concreteStrength of materialsRc columnsSettore ICAR/09 - Tecnica Delle CostruzioniSpecial design issueMechanics of MaterialsDomainsCohesionMaterials Science (all)Deformation (engineering)businessSpecial design issuesConfinement
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Compressive behavior of short fibrous reinforced concrete members with square cross-section

2011

In the present paper a mechanical model to predict the compressive response of high strength short concrete columns with square cross-section confined by transverse steel is presented. The model allows one to estimate the equivalent confinement pressures exercised by transverse steel during the loading process taking into account of the interaction of the stirrups with the inner core both in the plane of the stirrups and in the space between two successive stirrups. The lateral pressure distributions at hoop levels are obtained by using a simple model of elastic beam on elastic medium simulating the interaction between stirrups and concrete core, including yielding of steel stirrups and dam…

Materials sciencebusiness.industryMechanical Engineeringhigh strength concreteBuilding and ConstructionStructural engineeringCompression (physics)Reinforced concreteSpallcompressionCore (optical fiber)Settore ICAR/09 - Tecnica Delle CostruzioniTransverse planeconfinement stress-strain curves.BucklingMechanics of MaterialsReinforced solidBearing capacityComposite materialbusinessCivil and Structural EngineeringStructural Engineering and Mechanics
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Compressive behavior of FRP externally wrapped R.C. column with buckling effects of longitudinal bars

2018

Abstract In this paper, a calculation model to simulate the compressive behavior of R.C. columns with square cross-sections externally wrapped with FRP, including buckling effects of the longitudinal bars and reduction of the confinement pressure induced by the buckled compressed bars, is presented and discussed. The model distinguishes the cases of corner and side bars, calculating the different critical lengths and the critical loads. The Teng et al. (2009) model was adopted to predict the compressive behavior of FRP-confined concrete, and the Dhakal and Maekawa (2002) model was taken into account to predict the compressive behavior of longitudinal bars. The critical length and critical s…

Materials scienceAnalytical expressionsBar (music)business.industryBuckling0211 other engineering and technologies020101 civil engineeringR.C. columnSteel bar02 engineering and technologyStructural engineeringFibre-reinforced plasticInstabilityConfinement pressure0201 civil engineeringFRP wrapBucklingColumn (typography)021105 building & constructionReduction (mathematics)businessConcrete coverCivil and Structural Engineering
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Evaluation of infilled frames: an updated in-plane-stiffness macro-model considering the effects of vertical loads

2015

The influence of masonry infills on the in-plane behaviour of RC framed structures is a central topic in the seismic evaluation and retrofitting of existing buildings. Many models in the literature use an equivalent strut member in order to represent the infill but, among the parameters influencing the equivalent strut behaviour, the effect of vertical loads acting on the frames is recognized but not quantified. Nevertheless a vertical load causes a non-negligible variation in the in-plane behaviour of infilled frames by influencing the effective volume of the infill. This results in a change in the stiffness and strength of the system. This paper presents an equivalent diagonal pin-jointed…

EngineeringEquivalent diagonal pin-jointed strut modelInfilled framesDiagonalIn-plane behaviourInfilled frames In-plane behaviour Equivalent diagonal pin-jointed strutmodel Vertical load influenceVertical load influenceComputer Science::Computational Engineering Finance and SciencemedicineInfillRetrofittingGeotechnical engineeringMacroCivil and Structural Engineeringmodelbusiness.industryStiffnessStructural engineeringBuilding and ConstructionMasonryGeotechnical Engineering and Engineering GeologyEquivalent diagonal pin-jointed strutFinite element methodStiffeningSettore ICAR/09 - Tecnica Delle CostruzioniGeophysicsmedicine.symptombusinessInfilled frame
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Flexural Response of Reinforced Concrete Beam on Elastic Foundation under Vertical Load and Bending Moment: Review of Existing Methods and Proposed N…

2021

AbstractThis work examined the behavior of a RC beam on a soil foundation subject to concentrated vertical loads and bending moment in both the elastic and the plastic phases. Some of the simplifie...

Ultimate loadMaterials sciencebusiness.industryFoundation (engineering)Vertical loadBuilding and ConstructionStructural engineeringReinforced concreteArts and Humanities (miscellaneous)Shallow foundationFlexural strengthBending momentbusinessBeam (structure)Civil and Structural EngineeringPractice Periodical on Structural Design and Construction
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Simple equations for strength and deformability verification of tubular steel wind turbine towers

2021

Abstract Simple analytical expressions for a preliminary design of tubular steel wind turbine towers under flexure and shear are proposed. Expressions derived included local buckling effects, shear to moment interaction, ovalization of cross-section and inelastic rotation of foundation. A finite-element analysis with ABAQUS program was also conducted for examination of the ovalization effects and for the whole response of steel tube in flexure. Numerical and analytical results were compared with the experimental results of recent studies available in the literature, showing good agreement. The range of variable investigated refers to medium and large size steel wind tower with cylindrical s…

Materials sciencebusiness.industry0211 other engineering and technologiesFoundation (engineering)020101 civil engineering02 engineering and technologyStructural engineeringTurbineFinite element method0201 civil engineeringShear (sheet metal)Moment (mathematics)Nonlinear systemBuckling021105 building & constructionbusinessTowerCivil and Structural EngineeringEngineering Structures
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Simplified flexural response of steel-fiber reinforced concrete beams

2008

In the present paper, an analytical model is proposed that is able to determine the flexural response of supported beams under four-point bending tests. Cases of normal strength reinforced concrete beams with longitudinal bars in the presence of reinforcing hooked steel fibers and transverse stirrups are considered. A simplified analytical model is presented that is able to calculate the load-deflection curves and the maximum and ultimate deflections occurring in the case of shear or flexure failures. In the case of shear failure, the maximum shear strength of the beams is evaluated by using a recent analytical expression proposed by the author able to account for the shear-to-moment intera…

Engineeringbusiness.industryconcrete beamfiber reinforced materialfailuresBuilding and ConstructionStructural engineeringBendingFiber-reinforced concretebendingCompression (physics)Stiffeninglaw.inventionShear (sheet metal)Settore ICAR/09 - Tecnica Delle CostruzioniFlexural strengthMechanics of MaterialslawShear strengthGeneral Materials SciencesteelComposite materialbusinessBeam (structure)Civil and Structural Engineering
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Experimental investigation on compressive behavior of bottle-shaped struts

2011

The goal of this investigation was the experimental verification of the dispersion of compression in bottle-shaped struts. Two typical bottle shapes were generated under load in compression concrete—both drilled and undrilled—and were reinforced concrete prismatic members with loading steel plate having a reduced area with respect to the entire cross section of the members. Axial load, and axial and lateral strains were recorded during the tests to evaluate the effects of key parameters. The comparative analysis of the experimental results showed that: 1) the presence of a hole produces a variation on the stress and strain distribution and a reduction in the load-carrying capacity; 2) the r…

Materials sciencebusiness.product_categorybusiness.industrystrength provision.Stress–strain curveBuilding and ConstructionStructural engineeringholeCompression (physics)compressionCross section (physics)Transverse planeCompressive strengthBottlebottle-shaped strutBearing capacityComposite materialbusinessReduction (mathematics)Civil and Structural Engineering
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Buckling strength of steel tube for lifting telescopic wind steel tower

2021

Abstract A telescopic pole for wind energy production with low environmental impact and its lifting system for a 60–250 kW turbine and a height of 30 m have been designed and manufactured. The tower, was raised and lowered by automation or by remote control, that allows one to differentiate the presence of the generator within the landscape over time. The jacking systems acting on the legs had a combination of holes (on the legs) and pegs actuated by hydraulic pistons. The aim of the paper was the experimental and the analytical verification of the stability condition of the steel piston as a lifting system of the prototype. An experimental investigation was carried out on small-scale speci…

Wind powerbusiness.industryGeneral EngineeringStructural engineeringTurbineElevation (ballistics)Generator (circuit theory)Transverse planeJackingBucklingGeneral Materials SciencebusinessTowerGeologyEngineering Failure Analysis
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Analysis of a Collapsed Long-Span Reinforced Concrete Roof in South Italy: Design Mistakes and Material Degradation

2020

In 2004, during ordinary maintenance work, consisting of waterproofing a building located in the south of Italy, the long-span (14.5 m) in situ RC roof partially collapsed. The building, constructed in 1950, was in service as a cinema until 1967 and then utilized as a school until 1985. Lastly, it was a hotel until 2000. In 2004, when the building was not in service and was undergoing maintenance work, it partially collapsed under dead load. After the collapse, which involved a large portion of the roof, several beams, and two columns, the Italian court nominated an official technical consultant to investigate the direct and related causes of the failure. After the main causes were identifi…

Long spanDesign mistakesWaterproofingBond failureBuilding and ConstructionMaterial degradationReinforced concreteShear failureReinforced concreteSettore ICAR/09 - Tecnica Delle CostruzioniWork (electrical)Material DegradationForensic engineeringBuildingSafety Risk Reliability and QualitySettore ICAR/08 - Scienza Delle CostruzioniRoofGeologyCivil and Structural Engineering
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Simplified model for compressive response of RC column footing with square cross-section

2017

Abstract In this paper, a simplified calculus model for the prediction of the compressive response of RC column footing with a square cross-section is presented. As it is well-known RC concrete footing are designed adopting uniform contact pressures on the substrate and assuming a strut and tie model in deep members and a cantilever beam or slab model in flexible members. Deep and flexible members are distinguished in literature only based on the tangent of the angle expressed as the ratio between the depth and the shear span of the footing. In this paper, several subgrade contact pressures distribution for column footings (rigid or soft soils) were considered in developing a mechanical mod…

EngineeringCantileverbusiness.industry0211 other engineering and technologiesTangent020101 civil engineering02 engineering and technologySubgradeStructural engineering0201 civil engineeringSettore ICAR/09 - Tecnica Delle CostruzioniShear (geology)Punching shear021105 building & constructionSquare cross sectionSlabLoad displacementbusinessFooting Strut and tie model Beam model Elastic soil Winkler modelCivil and Structural Engineering
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Ductility of Reinforced Concrete Members Externally Wrapped with Fiber-Reinforced Polymer Sheets

2007

The effectiveness of external wrapping with fiber-reinforced polymer for enhancing the curvature ductility of lightly reinforced concrete members is investigated. Referring to members with circular transverse cross sections, the performances in terms of both strength and ductility capacities are analyzed, and the predictive reliability of two different recent constitutive models, available in the literature and able to take into account the softening behavior of confined concrete, is checked. A parameter characterizing the effectiveness of the confining wrapping is proposed, and characteristic values are suggested. Moreover, referring to ductility increases due to confinement effects, a com…

Ductility; Sheets; Fiber reinforced polymers; Reinforced ConcreteMaterials sciencebusiness.industryMechanical EngineeringBuilding and ConstructionStructural engineeringFibre-reinforced plasticCurvatureductility sheets fiber reinforced polymers concrete reinforcedSettore ICAR/09 - Tecnica Delle CostruzioniComposite constructionTransverse planeMechanics of MaterialsReinforced solidCeramics and CompositesComposite materialbusinessDuctilitySofteningCivil and Structural EngineeringParametric statisticsJournal of Composites for Construction
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Strength and strain enhancements of concrete columns confined with FRP sheets

2004

The compressive behavior up to failure of short concrete members reinforced with fiber reinforced plastic (FRP) is investigated. Rectangular cross-sections are analysed by means of a simplified elastic model, able also to explain stress-concentration. The model allows one to evaluate the equivalent uniform confining pressure in ultimate conditions referred to the effective confined cross-section and to the effective stresses in FRP along the sides of section; consequently, it makes it possible to determine ultimate strain and the related bearing capacity of the confined member corresponding to FRP failure. The effect of local reinforcements constitute by single strips applied at corners bef…

Stress-concentrationMaterials scienceStrain (chemistry)business.industryMechanical EngineeringMaximum compressive strengthRectangular cross-sectionBuilding and ConstructionSTRIPSStructural engineeringFibre-reinforced plasticOverburden pressurelaw.inventionSettore ICAR/09 - Tecnica Delle CostruzioniMechanics of MaterialslawBearing capacityUltimate strainComposite materialReinforcementbusinessConfinementFRPCivil and Structural EngineeringStress concentrationStructural Engineering and Mechanics
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Steel fiber-reinforced concrete corbels:experimental behavior and shear strength prediction

2007

Corbels are structural members often used in reinforced concrete structures to transfer vertical and horizontal forces to principal members. This paper presents experimental research regarding the flexural behavior of corbels in plain and fibrous concrete and in the presence of steel bars. The study considers the influence of the type of concrete grade (normal- and high-strength concretes), of the fiber percentage and of the arrangement and percentage of the steel bars on the flexural behavior of the corbels. The results in terms of load-deflection curves and crack patterns show the effectiveness in using fibrous reinforced concrete corbels as well as in the presence of stirrups ensuring ad…

Materials sciencebusiness.industrycorbels reinforced concrete shear strength steel fibers stirrupsBuilding and ConstructionStructural engineeringFiber-reinforced concretelaw.inventionTypes of concreteCrackingFlexural strengthCorbellawDeflection (engineering)Reinforced solidBearing capacityComposite materialbusinessCivil and Structural Engineering
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Practical Model for Load-Carrying Capacity of Eccentrically Loaded Square Column Footings

2018

In this paper, a practical calculus model based on the strut-and-tie approach for prediction of the load-carrying capacity of eccentrically loaded RC column footings with square cross sections is presented. Existing models based on beam or slab models with flexural and two-way slab punching shear failure are presented and discussed. Several subgrade contact pressure distributions for column footings are considered. A parametric analysis of the effects of footing and column dimensions (depth, width), longitudinal ratio of longitudinal steel, and strength of concrete and steel is made for all models examined. Available experimental data are utilized to verify the model in comparison with exis…

Materials sciencebusiness.industryFootingBuilding and ConstructionStructural engineeringPunching shearColumn (database)Load carryingSettore ICAR/09 - Tecnica Delle CostruzioniArts and Humanities (miscellaneous)Beam modelElastic soilConcrete crushingStrut-and-tie modelSquare (unit)businessCivil and Structural Engineering
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Behavior in compression of concrete cylinders externally wrapped with basalt fibers

2015

Abstract This paper gives additional information on the use of new class of composites constituted by Basalt Fiber Reinforced Polymer (BFRP) bonded with epoxy resin to concrete specimens as an alternative confinement material for compressed concrete members with respect to carbon or glass fibers. From the experimental point of view, concrete cylinders are wrapped with continuous fibers, in the form of sheets, applying both full and partial discrete wrapping with BFRP straps, and then tested in compression. For comparison, few other concrete cylinders are wrapped with Carbon Fiber Reinforced Polymer (CFRP) sheets and tested in compression. The number and type of plies (full or partial wrappi…

Concrete cylinders; Basalt fibers; Carbon fibers; Monotonic tests; Cyclic testsMaterials scienceGlass fiberIndustrial and Manufacturing EngineeringConcrete cylindersBrittlenessMonotonic testCarbon fibersFiberComposite materialCarbon fiber reinforced polymerCyclic testsBasalt fiberbusiness.industryMechanical EngineeringStructural engineeringEpoxyCompression (physics)Basalt fibersSettore ICAR/09 - Tecnica Delle CostruzioniSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiCompressive strengthMechanics of Materialsvisual_artBasalt fiberCeramics and Compositesvisual_art.visual_art_mediumCarbon fiberConcrete cylinderbusinessMonotonic testsComposites Part B: Engineering
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Shear strength of High-strength concrete beams: modeling and design recommendations

2014

Abstract In the present paper, the flexural and the shear resistance of high strength reinforced concrete (HSC) beams with longitudinal bars, in the presence of transverse stirrups is analyzed both theoretically and experimentally. The experimental researches here presented are parts of previous researches carried out by the author. Researches refer to HSC beams with high percentages of steel bars failing in shear and in flexure. From the analytical point of view, a model based on the evaluation of the resistance contribution due to beam and arch actions including bond splitting and concrete crushing failure modes is developed and presented. The model was verified against available experime…

EngineeringShear–moment interaction; High-strength concrete; Shear resistance; Flexural resistance; Analytical modelingShear–moment interactionbusiness.industryShear resistanceStructural engineeringTransverse planeAnalytical modelingSettore ICAR/09 - Tecnica Delle CostruzioniShear resistanceShear (geology)Flexural strengthHigh-strength concreteGeotechnical engineeringFlexural resistanceModeling and designArchbusinessBeam (structure)Civil and Structural EngineeringHigh strength concrete
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Failure Load and Collapse Mode of an RC Beam in a Large Collapsed Roof

2021

The present work focused on the determination of the collapse load and of the failure mode of a collapsed framed structure constructed in the South of Italy and failed in 2004 under its self-weight. Information available was the results on extensive experimental test campaign, for the determination of mechanical properties of concrete and steel bars of beams, floors and columns involved in the failure. Moreover, draws of original design with construction details and design rules valid in Italy at the time of construction were found. A simple monodimensional beam model for prediction of load-deflection curve, able to include degradation of constituent materials (concrete, steel and bond) was…

material degradationbusiness.industryCollapse (topology)analytical modelBuilding and ConstructionStructural engineeringReinforced concreteCollapse modefailureSettore ICAR/09 - Tecnica Delle CostruzioniArts and Humanities (miscellaneous)Material DegradationBuildingnumerical modelbusinessRoofFailure mode and effects analysisGeologyBeam (structure)RCCivil and Structural EngineeringPractice Periodical on Structural Design and Construction
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Engineering failure analysis of corroded R.C. beams in flexure and shear

2018

Abstract In the present paper, a simple model to reproduce the load-deflection response of corroded beams failing in flexure and shear is presented and discussed. Effects of diffused and pitting corrosion on steel bars, compressive concrete strength degradation and concrete bond strength degradation due to rust formation are included in the model. Engineering approach based on limit state theory was here adopted to predict the peak and the residual flexural and shear strength of corroded beams with corresponding deflections and ductility estimation. Calculation of deflection at cracking taking into account of rust formation and deflection at yielding and the ultimate state taking into accou…

Materials scienceShear-moment interactionBond strength0211 other engineering and technologiesGeneral Engineering020101 civil engineeringPitting02 engineering and technology0201 civil engineeringCorrosionCorrosionCrackingEngineering (all)Flexural strengthDeflection (engineering)021105 building & constructionLoad-deflection responsePitting corrosionGeneral Materials ScienceLimit state designMaterials Science (all)SlippageComposite materialBondEngineering Failure Analysis
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Brick Masonry Columns Externally Wrapped with Steel Wires under Concentric and Eccentric Loads

2017

This paper discusses an experimental investigation of clay brick columns that are externally strengthened by steel wire collars wrapping the horizontal mortar joints. The study aims to prove the effectiveness of the proposed strengthening technique and detect the efficiency of different numbers of steel collars. Additionally, the effect of eccentric loading is investigated. This paper proves that an analytical expression available in the previous literature can be modified to provide the strength of the equivalent homogeneous cross section in simple compression. To this aim, the biaxial strength domain of the bricks is modified to account for the lateral pressure exerted by the steel collar…

Materials science0211 other engineering and technologiesMasonry veneer020101 civil engineeringExternal reinforcement02 engineering and technologyConcentric0201 civil engineering021105 building & constructionGeneral Materials ScienceGeotechnical engineeringCivil and Structural Engineeringbusiness.industryBuilding and ConstructionStructural engineeringMasonryStrength of materialsSteel collarStrength domainMechanics of MaterialsBrick masonryBrick masonryClay brickMaterials Science (all)MortarbusinessJournal of Materials in Civil Engineering
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Structural behaviour of hybrid glass beams with T cross-sections

2018

Abstract An experimental investigation regarding the flexural and the shear behaviour of glass beams with length 900, 1300, 1700 mm and T cross-section is presented and discussed. T cross-sections were obtained by assembling glass web and glass flange. Some specimens were also reinforced internally in the web with steel plates of thickness 6 mm and depth 25 and 50 mm placed at the bottom portion of the beams for the entire length of the beams themselves. Three specimens for each investigated series were tested in flexure focusing on the flexural and shear response through the determination of the load-deflection curves and the crack patterns at rupture identifying the effects of steel plate…

Ultimate loadMaterials scienceMechanical EngineeringComposite numberAssembly0211 other engineering and technologiesMechanical testing020101 civil engineeringCeramics and Composite02 engineering and technologyFlangeStrength of materialsGlasseIndustrial and Manufacturing Engineering0201 civil engineeringCrackingFlexural strengthShear (geology)Mechanics of Materials021105 building & constructionCeramics and CompositesAdhesionMechanics of MaterialComposite materialBeam (structure)
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Flexural behavior of hybrid glass beams with rectangular cross-sections

2018

Abstract An experimental investigation regarding the flexural and the shear behavior of glass beams with length 900, 1300, 1700 mm and rectangular cross-section is presented and discussed. Rectangular cross-sections were obtained by assembling three float glass panels of depth 200 mm and thickness 6 mm through an acrylic adhesive with an effective depth of 19.52 mm (6 + 0.76 + 6 + 0.76 + 6 mm). Some specimens were also reinforced internally with steel plates of thickness 6 mm and depth 25 mm and thickness 6 mm and plates of thickness 6 mm and depth 50 mm placed at the bottom portion of the beams for the entire length of the beams themselves. Three specimens for each investigated series were…

Ultimate loadMaterials scienceComposite numberDiagonalAssembly0211 other engineering and technologiesFloat glass020101 civil engineering02 engineering and technologyGlasse0201 civil engineeringlaw.inventionFlexural strengthlaw021105 building & constructionGeneral Materials ScienceComposite materialCivil and Structural EngineeringMechanical testingBuilding and ConstructionCrackingSettore ICAR/09 - Tecnica Delle CostruzioniShear (geology)AdhesionMaterials Science (all)Beam (structure)
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Shear strength of steel fiber reinforced concrete beams with stirrups

2006

The present paper proposes a semi-empirical analytical expression that is capable of determining the shear strength of reinforced concrete beams with longitudinal bars, in the presence of reinforcing fibers and transverse stirrups. The expression is based on an evaluation of the strength contribution of beam and arch actions and it makes it possible to take their interaction with the fibers into account. For the strength contribution of stirrups, the effective stress reached at beam failure was considered by introducing an effectiveness function. This function shows the share of beam action strength contribution on the global strength of the beam calculated including the effect of fibers. T…

Materials scienceEffective stressFiber-reinforced concretelaw.inventionlawFiberArchComposite materialStirrupCivil and Structural EngineeringShear-moment interactionbusiness.industryMechanical EngineeringBuilding and ConstructionStructural engineeringStrength of materialsTransverse planeSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthShear (geology)Shear strengthMechanics of MaterialsPhysics::Accelerator PhysicsbusinessBeam (structure)Concrete
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Mechanical properties of steel fibre reinforced lightweight concrete with pumice stone or expanded clay aggregates

2001

This paper presents basic information on the mechanical properties of steel fibre-reinforced light-weight concrete, manufactured using pumice stone or expanded clay aggregates. Results are presented for standard compressive tests and indirect tensile tests (splitting tests on cylinder specimens and flexure tests on prismatic beams using a three-point loading arrangement) under monotonically increasing or cyclically varying loads. The influence of steel fibres and aggregate types on modulus of elasticity, compressive and tensile strength and post-peak behaviour is evaluated. Test results show that compressive strength does not change for pumice stone aggregates, while an increase is observed…

Materials scienceAggregate (composite)Young's modulusBuilding and ConstructionCylinder (engine)law.inventionsymbols.namesakeSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthFracture toughnessMechanics of MaterialslawPumiceSolid mechanicsUltimate tensile strengthsymbolsGeneral Materials ScienceGeotechnical engineeringMaterials Science (all)Composite materialCivil and Structural Engineering
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Size Effect in Compression of High Strength Fibre Reinforced Concrete Cylinders Subjected to Concentric and Eccentric Loads

2005

Materials sciencebusiness.industryEccentricStructural engineeringConcentricComposite materialReinforced concretebusinessCompression (physics)
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Testing of “Global Young's Modulus E” on a rehabilitated masonry bell tower in Venice

2017

Abstract This paper shows the effectiveness of the techniques chosen for the rehabilitation of the historic “Sant'Andrea” masonry bell-tower in Venice. The achieved rehabilitation projects based on the indenting technique consisting in removing and replacing bricks in bad conditions, and on the isolation of the bells at the belfry quote, respect all the constraints represented by the aesthetic and structural features of the building. Moreover, the experimental analyses used to define the existing state of the structure are described in detail. The tower is also an interesting case study for the validation of the proposed method to determine the global young's modulus in a rehabilitated maso…

Engineering0211 other engineering and technologiesModulusRayleigh's method020101 civil engineeringYoung's modulus02 engineering and technologyCivil engineeringBell tower0201 civil engineeringsymbols.namesakeEngineering (all)021105 building & constructionGeneral Materials ScienceMasonryExperimental analysisbusiness.industryExperimental analysiRehabilitationGeneral EngineeringNatural frequencyBell towerStructural engineeringBell tower; Experimental analysis; Masonry; Rayleigh's method; Rehabilitation; Venice; Materials Science (all); Engineering (all)MasonryVenicesymbolsMaterials Science (all)businessTower
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Risk of failure for the salso river railroad steel bridge

2020

Abstract The degradation state of railroad steel bridges is one of the most important and difficult aspects to be interpreted. The use of steel bridges started from 1900, and they are still in service today as railroad bridges. The case study examined was that of a bridge railroad steel bridge having a total length of 112 m and constituted by three isostatic, reticular beams having a Pratt type composition. The substructures (two shoulders and two intermediate piles) are in masonry with a reinforced concrete beam in the upper portion. The structure (steel bridge and piers) is in a degraded state. To determine the degradation level, non-destructive and partially destructive tests were carrie…

Pierbusiness.industryGeneral Engineering020101 civil engineering02 engineering and technologyStructural engineeringMasonryBridge (interpersonal)0201 civil engineering020303 mechanical engineering & transports0203 mechanical engineeringBuilding codeUltimate tensile strengthRetrofittingGeneral Materials ScienceMortarbusinessBeam (structure)GeologyEngineering Failure Analysis
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Analytical model for high-strength concrete columns with square cross-section

2008

In the present paper a mechanical model to predict the compressive response of high strength short concrete columns with square cross-section confined by transverse steel is presented. The model allows one to estimate the equivalent confinement pressures exercised by transverse steel during the loading process taking into account of the interaction of the stirrups with the inner core both in the plane of the stirrups and in the space between two successive stirrups. The lateral pressure distributions at hoop levels are obtained by using a simple model of elastic beam on elastic medium simulating the interaction between stirrups and concrete core, including yielding of steel stirrups and dam…

EngineeringPlane (geometry)business.industryMechanical EngineeringBuilding and ConstructionStructural engineeringCompression (physics)Stirrupcompression high-strength concreteStress (mechanics)Core (optical fiber)Transverse planeSettore ICAR/09 - Tecnica Delle CostruzioniBrittlenessMechanics of MaterialsbusinessElastic modulusCivil and Structural Engineering
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Practical Calculation Models for Column Footing and Comparison with Experimental Data

2017

In this paper, a simplified calculation model for the prediction of the load-carrying capacity of an RC column footing with a square cross section is presented. A detailed background of available experimental data and existing models for the prediction of the load-carrying capacity of slender and deep footings is presented. Cases of flexural failure and punching shear failures for slender footing and concrete strut crushing and tie yielding in deep members are analyzed. The aim of the paper is to propose a simple design formula for slender and deep footing verified by available experimental data and in agreement with other existing expressions. Expressions of the maximum mechanical ratio of…

0211 other engineering and technologiesExperimental dataFooting020101 civil engineeringPunching shear02 engineering and technologyBuilding and ConstructionMechanicsColumn (database)0201 civil engineeringBeam modelElastic soilArts and Humanities (miscellaneous)Concrete crushingStrut-and-tie model021105 building & constructionGeologyCivil and Structural EngineeringPractice Periodical on Structural Design and Construction
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Flexural Behavior of Glass Beams with T and I Shape Cross Sections

2017

AbstractGlass beams having T or I cross sections can be obtained as glass panels or laminated glass (LG) panels assembled with polymer adhesives of different types, such as semirigid (silicones, mo...

chemistry.chemical_classificationMaterials sciencebusiness.industryMechanical Engineering0211 other engineering and technologies020101 civil engineering02 engineering and technologyBuilding and ConstructionStructural engineeringPolymerAdhesion0201 civil engineeringchemistryFlexural strengthMechanics of Materials021105 building & constructionGeneral Materials ScienceAdhesiveComposite materialbusinessLaminated glassCivil and Structural EngineeringJournal of Structural Engineering
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Effect of progressive collapse of central column on the push-down response of two-span beam-column substructures

2021

Abstract In this paper, a simplified model is proposed for hand calculation of the push-down curve of reinforced two-span beam-column substructures with the mid-span column subjected to a vertical load inducing progressive collapse response. The model takes into account the flexural, arch and catenary strength mechanisms and the axial stiffness of RC compressed columns. The model was validated against experimental data available in the literature. The expressions derived, in a closed form, were useful for hand calculation of push-down responses and robustness evaluation of RC framed structures. The derived explicit expressions can be applied in a step-by-step manner for tracing nonlinear be…

business.industryStiffnessProgressive collapseStructural engineeringSpan (engineering)Nonlinear systemFlexural strengthRobustness (computer science)CatenarymedicineArchmedicine.symptombusinessCivil and Structural EngineeringMathematicsEngineering Structures
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Strength and Ductility of Hollow Circular Steel Columns Filled with Fibre Reinforced Concrete

1999

Publisher Summary This chapter investigates the behavior of hollow circular steel cross-sections filled with Fiber Reinforced Concrete (FRC), subjected to monotonic loads. The casting of different types of composite members—steel columns, steel columns filled with Normal Strength Concrete (NSC), and steel columns filled with Fiber Reinforced Concrete (FRC) was employed. The columns were tested in uniaxial compression utilizing a universal testing machine operating in displacement control. The maximum strength of composite members filled with FRC was 20% higher than that recorded for steel pipes filled with FRC. After the peak load was reached, failure was due to the crushing of concrete and…

Universal testing machineMaterials sciencebusiness.industryComposite numberStructural engineeringFiber-reinforced concreteCastinglaw.inventionCore (optical fiber)BucklinglawBearing capacityComposite materialbusinessDuctility
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Degraded Gerber Saddles in RC Bridges

2023

Sudden failure of reinforced concrete (RC) or prestressed concrete (PC) Gerber saddles of bridges and viaducts has occurred all around in the word in the last few years due to corrosion of steel bars. The danger of sudden and brittle failure is often due to general and pitting corrosion of steel bars, concrete crushing, and loss of bond in steel bars. In this paper, the flexural response of reinforced concrete Gerber supports under their self-weight with or without service loads was investigated through determination of the load-deflection response of beams, with the focus on the consequences of pitting corrosion and loss of bond in steel bars. A simplified strut-and-tie model was developed…

Corrosion Gerber saddle Steel bars Strut-and-tie model ViaductSettore ICAR/09 - Tecnica Delle CostruzioniBuilding and ConstructionSafety Risk Reliability and QualityCivil and Structural EngineeringJournal of Performance of Constructed Facilities
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Strength and strain capacities of concrete compression members reinforced with FRP

2003

The analytical compressive behavior of concrete members reinforced with fiber-reinforced polymer (FRP) was examined. The variation in the shape of the transverse cross-section was analyzed. The bearing capacity and the increase in the maximum strain for members having a cross-section which was circular, square or square with round corners reinforced with FRP were determined. The proposed analytical model allows one to evaluate the confining pressure in ultimate conditions considering the effective confined cross-section and also allows one to determine the ultimate strain corresponding to FRP failure through a simplified energetic approach. Analytical results are then compared to experiment…

Materials sciencebusiness.industryBuilding and ConstructionStructural engineeringFibre-reinforced plasticOverburden pressureCompression (physics)Strength of materialsSquare (algebra)Transverse planeCompressive strengthGeneral Materials ScienceBearing capacityComposite materialbusinessCement and Concrete Composites
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Analytical prediction of load deflection curves of external steel fibers R/C beam–column joints under monotonic loading

2015

Abstract In this paper a simplified analytical model able to reproduce the flexural behavior of external beam–column joints under monotonic loading is presented, to be used for pushover analysis. The subassemblage (beam, column and joint) is subjected to a constant vertical load acting on the column and to a monotonically increasing lateral force applied at the tip of the beam. The model is specific for hooked steel fiber-reinforced concrete (FRC) and is designed to calculate the flexural response in the form of a load–deflection curve, of beam–column subassemblages. No bond failure and shear deformations are considered in the present paper. The model includes shear-to-moment interaction fo…

EngineeringColumnbusiness.industryShearBeamMonotonic functionStructural engineeringShear (sheet metal)Moment (mathematics)Column (typography)Flexural strengthJointFiberbusinessConstant (mathematics)Joint (geology)Beam (structure)FlexureCivil and Structural EngineeringEngineering Structures
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Some comments on the experimental behavior of FRC beams in flexure

2008

In the present paper the experimental results, recently obtained by the authors, regarding the monotonic and the cyclic flexural response of normal and high-strength concrete beams reinforced with steel bars and discontinuous fibers, are shown. From the experimental results, all referred to low values of shear-to-depth ratios, it emerges clearly that the shear failure is brittle especially under cyclic actions highlighting the role of the fibers in the flexural behavior of the beams. The cyclic action produces a significant decay in the stiffness and in the strength capacity of the beams, and the addition of fibers reduces these negative effects. Form theoretical point of view good agreemen…

Concrete beamsMaterials scienceDeformation (mechanics)business.industrydesignStiffnessStructural engineeringshear and flexural strengthshearPhysics and Astronomy (all)Settore ICAR/09 - Tecnica Delle CostruzioniBrittlenessShear (geology)Flexural strengthCreepsteel fibermedicinebeammedicine.symptombusinesscyclic action
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Risk of failure in existing RC balcony and strength verification under degradation phenomena

2020

Abstract In the present paper, the safety conditions of reinforced concrete (RC) balconies subject to degradation phenomena caused by carbonation, presence of chlorides or water infiltration were examined. After a brief review of the typical damages of balconies occurring with detachments of plaster and bricks expulsion, some cases of collapses of balconies recently occurred were presented. Therefore, a calculation model was proposed for a hand verification of the flexural and shear strength of existing corroded T beams cast in place of lightened RC orthotropic slabs forming the balcony and for the calculus of deflection including slippage of steel bars. Diffused and pitting corrosion on st…

Materials scienceBond strengthbusiness.industryCarbonationRC balconyGeneral EngineeringPittingStructural engineeringOrthotropic materialCorrosionCorrosionFlexural strengthSettore ICAR/09 - Tecnica Delle CostruzioniFlexural strengthDeflection (engineering)Pitting corrosionGeneral Materials ScienceSlippageT beambusinessBondEngineering Failure Analysis
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Structural Analysis, Retrofitting Design, and In Situ Control of Permanently Damaged Long-Span Timber Beams of a Historical Building in the South of …

2020

AbstractIn 2018, under service conditions, excessive deflections were observed in the long-span timber beams of the first floor of the former Saint Elisabeth Monastery in Palermo (Italy). The build...

Long spanService (business)EngineeringArts and Humanities (miscellaneous)business.industryForensic engineeringRetrofittingBuilding and ConstructionbusinessCivil and Structural EngineeringPractice Periodical on Structural Design and Construction
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Compressive behavior of short high-strength concrete columns

2010

Abstract The focus of the present paper is the compressive response of short high strength reinforced concrete members. Members have square transverse cross-sections and they are reinforced with longitudinal steel bars and transverse stirrups. A preliminary analysis to check the stability condition of longitudinal bars was made to verify that buckling occurs after yielding in compression. Prescriptions on required diameter and spacing of stirrups are given. In the following, a model is presented which allows us to evaluate the confinement pressures exercised by transverse steel and by longitudinal bars during the loading process taking into account the interaction of the stirrups with the i…

High strength concreteEngineeringbusiness.industryStress–strain curveCompressionStructural engineeringCompression (physics)StirrupCore (optical fiber)Stress-strain curvesTransverse planeCompressive strengthBucklingconfinementbucklingbusinessElastic modulusCivil and Structural EngineeringEngineering Structures
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In-situ NDT testing procedure as an integral part of failure analysis of historical masonry arch bridges

2015

Abstract A nineteenth-century masonry arch bridge was analyzed as an illustrative example to explain the role of in-situ test campaigns in failure analysis and retrofit design. Test results were studied to find out the advantages of each technique, with the aim of proposing an optimized in-situ testing procedure. Standard static penetrometer, flat jack, thermographic and georadar in-situ tests were conducted. Traffic effects were analyzed by means of vibrational tests. The experimental analysis performed to investigate damage on the bridge structures shows the degree of reliability offered by each technique in evaluating specific information and reproducing the global behavior of the struct…

Failure analysisEngineeringFinite element methodDrawingBridge (nautical)law.inventionHistorical arch bridgeEngineering (all)lawNondestructive testingDiagnosisForensic engineeringGeneral Materials ScienceFailure analysiMasonryMasonry; Historical arch bridges; Failure analysis; Diagnosis; Drawing; Finite element methodReliability (statistics)business.industryGeneral EngineeringStructural engineeringMasonryHistorical arch bridgesPenetrometerFinite element methodMaterials Science (all)businessMasonry archDiagnosi
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Simplified Model for Compressive Behavior of Concrete Columns Strengthened by Steel Angles and Strips

2010

This paper presents an analytical model to determine the compressive response of concrete members, having a square transverse cross section and reinforced with steel angles at the corners and steel strips connecting the steel angles. The model evaluates the effects of transverse strips and steel angles on confinement pressures, including strength and buckling phenomena. Compressive response was evaluated in cases of directly and indirectly loaded elements. The data produced correlate well with available experimental data.

Materials sciencePhysics::Instrumentation and Detectorsbusiness.industryMechanical EngineeringSTRIPSStructural engineeringPhysics::Classical PhysicsConcrete columns Strengthening Steel angles Strips Ribbons Confinement Strength BucklingSquare (algebra)law.inventionTransverse cross sectionSettore ICAR/09 - Tecnica Delle CostruzioniTransverse planeanglesCompressive strengthBucklingMechanics of MaterialslawstripComposite materialbusinessJournal of Engineering Mechanics
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Effects of circular openings on the compressive behaviour of R.C. columns

2014

Core-drilling technique is nowadays always more frequently performed in existing reinforced concrete (RC) structures in order to investigate on the mechanical properties of concrete and for structural health monitoring purposes. Even if the engineering practice discourages to drill columns, this can be often unavoidable. In this last case the presence of the circular opening influences the compressive behavior of the column in terms of load-carrying capacity and axial deformability. The goal of this investigation was the experimental evaluation of the effects induced by circular openings on the behavior of RC columns. Twenty-four reinforced and plain concrete prisms in presence of circular …

EngineeringDrillbusiness.industryBuilding and ConstructionStructural engineeringReinforced concreteCompression (physics)Rc columnsProperties of concreteColumn (typography)Mechanics of MaterialsSolid mechanicsGeneral Materials ScienceGeotechnical engineeringStructural health monitoringbusinesscore drilling concrete testingCivil and Structural Engineering
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Hand verification for flexural strength of existing R.C. floors subject to degradation phenomena

2015

Abstract In the present paper, a simplified model for hand verification of the flexural and shear strength of existing corroded T beams cast in place of lightened R.C. orthotropic slabs forming floors is presented and discussed. Diffused and pitting corrosion on steel bars, compressive concrete strength degradation and concrete bond strength degradation are included in the model. The original contribution of the paper is evaluation of the flexural and shear strength considering both the cases of strain compatibility and absence of compatibility and considering the main parameters governing the corrosion process. An arch-resistant model for the calculus of the flexural and shear strength of …

T-beamMaterials scienceBond strengthbusiness.industryPittingBuilding and ConstructionStructural engineeringOrthotropic materialCorrosionCorrosionFlexural strengthCompatibility (mechanics)Pitting corrosionArch strength mechanismR.C. floorT beamComposite materialbusinessBondBeam (structure)Civil and Structural EngineeringCase Studies in Structural Engineering
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Steel-concrete bond in lightweight fiber reinforced concrete under monotonic and cyclic actions

2005

Experimental results of the local bond stress-slip relationship of reinforcing bars embedded in lightweight fiber reinforced concrete with expanded clay aggregates are presented. The effect of the following parameters were investigated: - dimension of specimens; - anchorage length; - percentages of hooked steel fibers; - geometrical ratio of transverse reinforcement; - confinement external transverse pressure. Prismatic specimens with deformed steel bars embedded for a fixed length equal to five and eight equivalent diameters were tested under both monotonic and cyclic reversal imposed displacements at the tip of the bars, in controlled displacement tests. The influence of the above mention…

Bond strengthEngineeringBond strengthbusiness.industryMonotonic functionStructural engineeringFiber-reinforced concreteSteel fiberPhysics::Classical PhysicsPaint adhesion testinglaw.inventionLightweight concreteTransverse planeSettore ICAR/09 - Tecnica Delle CostruzionilawCyclic loadComposite materialMonotonic loadMaterial propertiesbusinessDuctilityDisplacement (fluid)ConfinementCivil and Structural Engineering
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Laminated Glass Members in Compression: Experiments and Modeling

2014

It is well known that structural glass members are made by assembling thin laminated panels, which can be connected with different bonding techniques; for instance, with steel devices or with structural adhesives. The latter are very commonly used because they do not reduce the transparency of the member and make it possible to avoid stress concentrations because of the presence of holes. This technique is used to make up columns in glazing structures and different applications of the technique can be found in contemporary architecture. As evidenced by the literature, one of the most important problems in such members is caused by buckling phenomena, resulting from the slenderness of the pa…

Materials scienceCritical loadbusiness.industryMechanical EngineeringBuilding and ConstructionStructural engineeringTransparency (human–computer interaction)Compression (physics)GlazingSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthBucklingMechanics of MaterialsLaminated glass Glass members Compression Buckling Metal and composite structuresGeneral Materials SciencebusinessLaminated glassCivil and Structural EngineeringStress concentration
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Analytical Prediction of the Flexural Response of External RC Joints with Smooth Rebars

2018

Nel presente lavoro viene presentato un modello analitico in forma chiusa in grado di riprodurre la risposta flessionale monotonica di nodi esterni trave-colonna in c.a. con armature lisce. La colonna viene sottoposta a carico verti-cale costante e la trave ad una forza laterale crescente monotonicamente applicata all’estremità. Il modello si basa sul comportamen-to flessionale di trave e colonna adottando un modello di cerniera plasticità concentrata che include lo scorrimento delle armature della trave. Si assume un dominio sforzo normale-momento bilineare semplificato da cui viene derivato il momento ultimo associato alla forza assiale di progetto. Per il nodo viene adottato un modello c…

Materials sciencebusiness.industryflexureHingeVertical loadBilinear interpolationcolumnMonotonic functionStructural engineeringshearPlasticitySettore ICAR/09 - Tecnica Delle CostruzioniBeam; Column; Flexure; Joint; Shear; Smooth rebars; Civil and Structural EngineeringFlexural strengthjoint; beam; column; shear; flexure; smooth rebarssmooth rebarsjointbeamSlippageAxial forcebusinessCivil and Structural Engineering
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Flexural behaviour of glass panels under dead load and uniform lateral pressure

2013

Abstract In the present paper the experimental results relative to flexural tests on out-of-plane loaded large scale panels made of laminated structural glass are presented and discussed. Glass panels are parts of the structural facade of the Fontanarossa International Airport of Catania (Italy). Panels are mounted on a rigid testing frame and loaded with an uniformly distributed lateral pressure. Two different kinds of tests were carried-out, cyclic and monotonic, able to reproduce the serviceability and the ultimate conditions of the glass panels when subjected to the coupled effects of dead load and horizontal forces, the latter reproducing the wind action. Results obtained focused the h…

EngineeringStructural glass façadeBearing (mechanical)Serviceability (structure)business.industryWind pressureShell (structure)Laminated glaStructural engineeringFinite element methodlaw.inventionOut-of-plane loadingSettore ICAR/09 - Tecnica Delle CostruzioniFlexural strengthStructural loadlawCatenaryComposite materialLaminated glassbusinessCivil and Structural EngineeringEngineering Structures
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The use of pumice lightweight concrete for masonry applications

2011

In the last two decades, the use of pumice as lightweight aggregate for concrete in structural applications has been the object of different studies. The aim was to find out if pumice can be an alternative to ordinary lightweight aggregate. The present paper is framed in this context. Here, a study is presented showing the use of pumice for making lightweight concrete units for masonry members. Through the paper, the formulation of a mix design for lightweight concrete is proposed. Then the obtained mechanical characteristics of the masonry units are discussed and compared to the code requirements. Reinforced bearing masonry walls, made with the concrete masonry units in question, were made…

reinforced masonry walls.Aggregate (composite)Materials scienceBearing (mechanical)business.industryContext (language use)Building and ConstructionStructural engineeringlightweight concreteMasonryMix designlaw.inventionSettore ICAR/09 - Tecnica Delle CostruzioniMechanics of MaterialslawPumicepumicelightweight aggregateSolid mechanicsGeneral Materials Sciencebusinesslightweight concrete unitCivil and Structural Engineering
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Advanced Strategies and Materials for Reinforcing Normal and Disturbed Regions in Brick Masonry Columns

2016

This work presents the results of an experimental investigation on the behavior of 42 solid clay brick masonry columns internally strengthened by fiber-reinforced polymer (FRP) fabrics or stainless steel grids placed in horizontal mortar joints. In some cases, every course, and in other cases, alternate courses were reinforced with steel grids, carbon, and basalt FRP fabrics. Monotonic compressive loading tests were carried out under concentric and eccentric loads. Eccentric tests were carried out by loading the specimens on a reduced area with respect to the entire cross section, producing a disturbed region (D-region). A detailed characterization of the constituent materials was made expe…

Materials science0211 other engineering and technologies020101 civil engineeringCeramics and Composite02 engineering and technologyConcentric0201 civil engineeringCross section (physics)021105 building & constructionGeotechnical engineeringComposite materialSteel gridCivil and Structural EngineeringCourse (architecture)Brickbusiness.industryMechanical EngineeringCompressionD-regionStructural engineeringBuilding and ConstructionMasonryFibre-reinforced plasticCompression (physics)Settore ICAR/09 - Tecnica Delle CostruzioniMechanics of MaterialsBrick masonryCeramics and CompositesStrengthMortarbusinessFRP fabric
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Moment-Axial Domain of Corroded R.C. Columns

2018

In the present paper, a simplified model to determine the moment-axial force domain of the cross-section of reinforced concrete columns subjected to corrosion process is presented. The model considers members with square and rectangular cross-sections and it accounts for cover spalling, buckling of longitudinal reinforcing bars, loss of bond of bar in tension, reduction of confinement pressures (due to the reduction of the area of stirrups and cracking of concrete induced by rust formation). The analytical expressions for prediction of the area reduction of steel, bond strength and critical load of longitudinal bars utilized were verified against experimental data available literature.

Critical loadMaterials scienceTension (physics)business.industryBond strengthBar (music)Buckling CorrosionCover spallingStructural engineeringSpallCorrosionCrackingSettore ICAR/09 - Tecnica Delle CostruzioniBucklingMoment-axial force domainbusinessConfinement
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Moment-axial force domain of corroded R.C. columns

2016

In the present paper, a simple model to determine the moment-axial force domain of the cross-section of reinforced concrete (R.C.) columns subjected to corrosion process is presented. The model considers members with square and rectangular cross-sections and it accounts for—cover spalling; buckling of longitudinal reinforcing bars; loss of bond of bar in tension; reduction of confinement pressures (due to the reduction of the area of stirrups and cracking of concrete induced by rust formation). The analytical expressions for prediction of the area reduction of steel, bond strength and critical load of longitudinal bars utilized were verified against experimental data available in the litera…

Materials scienceBar (music)0211 other engineering and technologies020101 civil engineering02 engineering and technology0201 civil engineering021105 building & constructionGeneral Materials ScienceCivil and Structural EngineeringCritical loadTension (physics)business.industryBond strengthBucklingCover spallingStructural engineeringBuilding and ConstructionSpallStrength of materialsCorrosionCrackingBucklingMechanics of MaterialsMoment-axial forces domainMaterials Science (all)businessConfinement
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Biaxial deformation and ductility domains for engineered rectangular RC cross-sections: A parametric study highlighting the positive roles of axial l…

2016

Abstract Axial load and biaxial bending strongly influence the deformation capacity of column cross-sections, in most cases causing a non-negligible loss of curvature and ductility with respect to the case of pure bending along principal axes, commonly assumed as the basic condition to assess the inelastic capacity. In consideration of this the paper investigates the biaxial deformation performance of RC rectangular cross-sections belonging to one-dimensional elements, focusing on the influence of some parameters as the cross-section aspect ratio and the distribution of the rebars, as well as the mechanical characteristics of concrete and steel and the impact of biaxial/axial stresses. In t…

Cross-sectionMaterials science0211 other engineering and technologies020101 civil engineeringAaxial load02 engineering and technologyBendingDeformation (meteorology)CurvatureCurvature domain0201 civil engineeringCurvature capacityDuctilityParametric statisticsCivil and Structural Engineering021110 strategic defence & security studiesbusiness.industryStructural engineeringAspect ratio (image)Reinforced concreteSettore ICAR/09 - Tecnica Delle CostruzioniAaxial load; Bbiaxial bending; Cross-sections; Curvature capacity; Curvature domain; Curvature ductility; Reinforced concrete;Pure bendingBbiaxial bendingCurvature ductilityCross-sectionsbusinessPrincipal axis theorem
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Behaviour of concrete deep beams with openings and low shear span-to-depth ratio

2012

Abstract The goal of this study is to experimentally and analytically evaluate the influence of circular openings in reinforced concrete deep beams with low shear span-to-depth ratio. Twenty reinforced concrete small-scale deep beams with or without openings were tested in flexure under four-point loading. The beams had a small shear span-to-depth ratio in order to stress the shear behavior. The specimens had different reinforcement arrangements and opening positions. The load was transmitted to the specimen with bearing plates having the same side length as the beam. Two LVDT’s were arranged to record the transverse and axial strain of the theoretical struts forming in the beam. Additional…

Materials sciencebusiness.industryLinear variable differential transformerStructural engineeringLoad–deflection curveFinite element methodBottle-shaped strutDeep beam with openingTransverse planeSettore ICAR/09 - Tecnica Delle CostruzioniShear (geology)Deflection (engineering)Shear strengthPhysics::Accelerator PhysicsUltimate shear strengthComposite materialReinforcementbusinessBeam (structure)Civil and Structural Engineering
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Effects of Air Tightness Tests on Steel Thin-Wall Box Structures with Circular and Rectangular Cross Sections

2019

In this paper, the effects of air tightness tests on steel box structures with rectangular or circular cross sections typical of port cranes (legs, arms, and crosspieces) are analyzed. Legs and arms are generally made with elements with profiles having a square or rectangular cross section, while the diagonal struts are made with profiles having circular cross sections. To verify the air tightness of these elements, a necessary requirement to protect them from corrosion if they are not protected with other protection techniques, air tightness tests are performed. These tests, in the framework of durability tests, must be carried out while maintaining the structure elasticity well below the …

Air tightnessMaterials sciencebusiness.industrytechnology industry and agriculturePort (circuit theory)Building and ConstructionStructural engineeringNumerical simulationChoice of test pressurebody regionsSettore ICAR/09 - Tecnica Delle CostruzioniBox profiles with rectangular or circular sectionArts and Humanities (miscellaneous)Thin wallSeal testbusinessCivil and Structural Engineering
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Shear and flexural strength prediction of corroded R.C. beams

2017

Abstract The purpose of the work was the study of the structural safety of R.C. beams subjected to corrosion processes though the derivation of moment-curvature diagrams and moment-to-shear interaction diagrams. Normal-strength reinforced concrete beams with longitudinal bars in the presence of transverse stirrups and subjected to corrosion processed are considered. Experimental results available in the literature related to corrosion processes, for steel bars, crack openings and bond degradation due to rust formation are reviewed. Then analytical laws relating to crack opening, bond degradation with attack penetration depth, through a rearranged form of Faraday’s law, are presented. An ana…

Materials science0211 other engineering and technologies020101 civil engineering02 engineering and technologyPitting0201 civil engineeringCorrosionlaw.inventionFlexural strengthlaw021105 building & constructionGeneral Materials ScienceComposite materialFaraday cagePenetration depthBondCivil and Structural EngineeringShear-moment interactionbusiness.industryStructural engineeringBuilding and ConstructionFlexural responseCorrosionTransverse planeSettore ICAR/09 - Tecnica Delle CostruzioniShear (geology)Main effectMaterials Science (all)businessBeam (structure)
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Fibrous reinforced concrete beams in flexure: Experimental investigation, analytical modelling and design considerations

2008

Abstract The flexural behavior of plain and fibrous reinforced concrete (FRC) beams under monotonic and cyclic actions was analysed. Twelve beams were reinforced with top and bottom longitudinal deformed steel bars and transverse steel stirrups. Concrete, having 30 MPa cylindrical strength, was reinforced with hooked steel fibres at a volume percentage of 1%. Beams, 600 mm in length and with a square side cross-section of 150 mm, were tested in flexure using a three point bending test, adopting three different cover thicknesses of 5, 15 and 25 mm, respectively. The results obtained show that the addition of fibers increases the bearing capacity of the beams and ensures more ductile behaviou…

Materials sciencecyclic loadbusiness.industryThree point flexural testStructural engineeringFiber-reinforced concreteCompression (physics)short beamlaw.inventionShear (sheet metal)Settore ICAR/09 - Tecnica Delle Costruzionishear-moment interactionFlexural strengthfiber reinforced concretesteel fiberReinforced solidlawShear strengthBearing capacityComposite materialbusinessCivil and Structural EngineeringEngineering Structures
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Simplified Model of PC Concrete Beams with Corroded Strands in Highway Viaduct: Case Study and Analytical Modeling

2021

AbstractIn this paper, several cases of failure of prestressed reinforced concrete (PC) beams of a viaduct in Italy due to cable corrosion are presented. Therefore, a simplified model to determine ...

Concrete beamsMaterials sciencebusiness.industryBuilding and ConstructionStructural engineeringSafety Risk Reliability and QualitybusinessReinforced concreteCivil and Structural EngineeringCorrosionJournal of Performance of Constructed Facilities
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Performance of Steel Fibrous Reinforced Concrete Corbels Subjected to Vertical and Horizontal Loads

2009

A softened strut-and-tie macromodel able to reproduce the flexural behavior of corbels in plain and fibrous concrete and with the presence of steel bars, including softening of compressed struts and yielding of main and secondary steel bars, is presented in this paper. The main focus of the proposed model is the determination of the load-deflection curves of corbels subjected to the coupled effects of vertical and horizontal forces bearing in mind the influence of the type of concrete (normal or high strength), of the fiber percentage and of the arrangement and percentage of the main and secondary (horizontal stirrup) steel bars. A validation of the proposed model is made therefore with ref…

Bearing (mechanical)Materials scienceHorizontal and verticalbusiness.industryMechanical EngineeringBuilding and ConstructionStructural engineeringFiber-reinforced concretereinforced concreteStirruplaw.inventionFlexural strengthsteel fiberMechanics of MaterialslawCorbelShear strengthGeneral Materials ScienceGeotechnical engineeringshear strengthSettore ICAR/08 - Scienza Delle CostruzionibusinessSofteningCivil and Structural EngineeringJournal of Structural Engineering
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Excessive Deflection in Long-Span Timber Beams of a Historical Building in the South of Italy: Analysis and Retrofitting Design

2020

AbstractIn 2018, under service conditions, excessive deflections were observed in the long-span timber beams of the first floor of the former Sant’Elisabetta Monastery in Palermo (Italy). The build...

Long spanEngineeringbusiness.industryDeflection (engineering)RetrofittingBuilding and ConstructionStructural engineeringSafety Risk Reliability and QualitybusinessCivil and Structural EngineeringJournal of Performance of Constructed Facilities
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Temporary Strengthening Technique of Marble Columns with Steel Wires and Wood Spars

2014

Granite, marble and heavy stone columns have been used in the architects from all the ages to answer to both aesthetical and structural requirements in ancient churches and historical buildings. Such materials offer great visual impact and have mechanical properties that allow their use in construction and to obtain bright and slender structures. Marble is a very high strength but brittle material. It often occur that marble or granite columns of historical building are cracked along their height due to external actions and the risk of buckling occurs. Because this kind of failure is sudden and very brittle in stone and rocks, an immediate strengthening of the columns is needed. Among e tem…

Settore ICAR/09 - Tecnica Delle CostruzioniSteel CollarCompressionStrengtheningMarble ColumnCracked Column
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Influenza del confinamento del calcestruzzo con FRP sulla stabilità delle barre compresse

2009

FRP instabilità confinamento compressioneSettore ICAR/08 - Scienza Delle Costruzioni
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Comportamento in compressione di elementi in calcestruzzo rinforzati con angolari e piatti metallici

2007

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A case study of the structural behavior of a catalan bricks masonry vault

2014

Settore ICAR/09 - Tecnica Delle CostruzioniCatalan vault thin vault experimental analysisSettore ICAR/08 - Scienza Delle Costruzioni
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Colonne in C.A. rinforzate con FRP con diverso livello di confinamento

2004

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COMPRESSIVE BEHAVIOR OF LAMINATED GLASS COLUMNS

2014

This paper examines the behavior in compression of glass columns having tee (T) transverse cross-sections. The work highlights the issues recurring in the design of glass columns in rapid diffusion in the transparent architecture such as: - flexural and torsional buckling; - long-term effects and effects related to the temperature; - glued connections between single panels. In the work expressions are given for the calculation of the loadcarrying capacity of columns. The cases of full connection and absence of connection between the panels are analyzed and discussed. The comparison between the analytical and the experimental results highlights that in the case of glass columns with T cross-…

Settore ICAR/09 - Tecnica Delle CostruzioniLaminated glass Glass columns Compression Buckling
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R/C columns strengthened by means of steel angles and battens: testing, modeling and design

2010

columns angles battens confinement
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Load Carrying Capacity of Glass Columns with Rectangular, T and X Transverse Cross-sections

2014

In this study, the load carrying capacities of glass columns with rectangular, T and X cross-sections having different lengths were calculated. The proposed analytical procedure allows to calculate the load carrying capacity associated with strength of transverse cross-section including local and global flexural and/or torsional buckling phenomenon. Moreover, initial imperfections and time dependant effects, the latter associated with the viscoelastic behaviour of interlayer (PVB), were included in the model as suggested in the literature. Those effects were calculated by introducing the equivalent thickness of glass panels, which takes into account the shear modulus of PVB and the viscolea…

Settore ICAR/09 - Tecnica Delle CostruzioniTheoretical ModelLaminated GlaGlass Member
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Flexural response of ordinary and fibrous reinforced concrete deep beams

2009

deep beamSettore ICAR/09 - Tecnica Delle Costruzioniflexureconcrete
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Ingfluenza delle fibre sul comportamento delle zone diffusive

2008

Settore ICAR/09 - Tecnica Delle Costruzionizone diffusivecolonne c.a.fibvre acciaio
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UNA PROCEDURA PER IL DIMENSIONAMENTO ASSISTITO DI ALBERI DI TRASMISSIONE

2008

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Alcune considerazioni sulla tecnica di rinforzo con angolari e piatti metallici di elementi compressi in calcestruzzo

2008

angolari piatti confinamentoSettore ICAR/08 - Scienza Delle Costruzioni
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Influenza del confinamento del calcestruzzo con FRP sulla stabilità delle barre di elementi in c.a.

2009

Settore ICAR/09 - Tecnica Delle Costruzionifrp barre
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Adventages in using fibers in reinforced concrete members under compression

2007

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Analisi teorico-sperimentale del comportamento flessionale di colonne in calcestruzzo fibrorinforzato

2009

Settore ICAR/09 - Tecnica Delle CostruzioniCalcestruzzo fibrorinforzato fibre di acciaio compressione centrata ed eccentrica sperimentazione modellazione
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Compressive behaviour of laminated glass columns with T cross-sections

2014

Settore ICAR/09 - Tecnica Delle CostruzioniLaminated glass Glass columns Compression Buckling
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Strength and strain capacity of fiber reinforced polymer confined concrete in elliptical columns

2007

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Case Study of the Structural Behavior of a Catalan Bricks Masonry Vault

2015

Catalan vaults are a peculiar type of low thickness vaulted brick masonry structure. Knowledge of load-deflection response and load bearing capacity are important aspects to consider with the aim of preserving these structural members as part of the cultural heritage. In order to investigate these aspects, complete knowledge of the constituent materials and geometry (dimension, thickness, constructive section) is necessary in such a way as to predict the load-deflection response and the effective load-carrying capacity; the latter can be determined utilizing simplified models (limit analysis) or by means of a numerical analysis (finite element method). With this aim, the structural behaviou…

Settore ICAR/09 - Tecnica Delle CostruzioniCatalan VaultCatalan Vaults; Experimental Analysis; Constitutive Model; Numerical Analysis; Structural BehaviourConstitutive ModelStructural BehaviourSettore ICAR/08 - Scienza Delle CostruzioniNumerical AnalysiExperimental Analysi
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Load-deflection response of concrete corbels containing steel fibers or wrapped with FRP sheets

2005

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Compressive behaviour of short fibrous reinforced concrete members with square cross-section

2011

square cross-section
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Travi in calcestruzzo fibroso in zona sismica: sperimentazione e progetto

2009

Settore ICAR/09 - Tecnica Delle CostruzioniCalcestruzzo fibroso Travi indagine sperimentale
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Capacità portante di mensole tozze in calcestruzzo fibroso o rinforzate con FRP

2004

cemento armato mensole tozze matrice fibrorinforzata placcaggio con FRPSettore ICAR/09 - Tecnica Delle Costruzioni
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Palo telescopico per produzione eolica con ridotto impatto ambientale

2017

Tra il 2015 e il 2016 un consorzio costituito da differenti partner ha sviluppato un progetto di ricerca per la realizzazione di un prototipo di un palo telescopico per produzione eolica con ridotto impatto ambientale ed il relativo sistema di sollevamento per una turbina di potenza da 60 a 250 kW e un’altezza di 30 m. Un palo eolico telescopico, che si solleva e si abbassa mediante automatismi o mediante controllo remoto, consente di differenziare nel tempo la presenza dell’aerogeneratore all’interno del paesaggio. La tecnologia attualmente disponibile per la movimentazione assiale dei pali eolici è applicabile a infrastrutture con altezze inferiori ai 10 metri e a pali ribaltabili di alte…

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di Macchinefinite element methodTelescopic tower wind turbine tower
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Flexural behaviour of RC columns strengthened with steel angles and strips

2011

Settore ICAR/09 - Tecnica Delle CostruzioniRC columns strengthening confinement steel angles
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La pomice per il confezionamento di calcestruzzi leggeri strutturali

2011

The possibility of using pumice aggregates for concrete in structural applications is discussed. In particular, the mix design of lightweight concrete for the manufacturing masonry units having proper strength, is discussed. Moreover, the design of the unit shape according to the technical code requirements and making it possible to arrange reinforcing steel bars is described. Reinforced bearing masonry walls, made with the concrete units in question, were manufactured and tests on the panels and on the designed units were carried out. For comparison, tests on concrete units and structural elements were carried out after the substitution of pumice aggregates with ordinary lightweight aggreg…

Settore ICAR/09 - Tecnica Delle CostruzioniCALCESTRUZZI LEGGERI STRUTTURALI.POMICE
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Progetto ed analisi del comportamento di nodi esterni in calcestruzzo fibrorinforzato

2010

Settore ICAR/09 - Tecnica Delle Costruzioninodo esterno trave colonna cemento armato
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Simplified Analytical Model for Compressed High-Strength Columns Confined by Transverse Steel and Longitudinal Bars

2006

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Analisi sperimentale del comportamento flessionale di colonne in calcestruzzo fibrorinforzato

2006

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Behavior of beam-column concrete filled steel tubes with square and rectangular cross-section

2004

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Behavior in compression of lightweight fiber reinforced concrete with hooked steel fibers and transverse steel reinforcement

2010

Settore ICAR/09 - Tecnica Delle CostruzioniLightweight fiber reinforced concretetheoretical modelingtransverse steel reinforcementconstitutive law in compression
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D-Regions

2007

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Flexural behavior of fibrous reinforced concrete corbels

2006

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Strength and ductility of fiber reinforced concrete corbels subjected to vertical loads

2004

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Travetti e solai

2005

L'articolo illustra le diverse tecniche di intervento per il recupero dei solai più diffusi nell'edilizia corrente, evidenziate da un'indagine comparativa sperimentale. Modelli, materiali ed esiti della ricerca.

travetti solai recupero sfondellamentoSettore ICAR/10 - Architettura Tecnica
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One-dimensional members

2007

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Modelling steel jacketed RC columns: Remarks by experimental-numerical comparisons

2015

The recent large use of nonlinear seismic assessment techniques requires the definition of highly reliable computational models. The retrofitting or strengthening of RC columns by steel angles and battens is a commonly adopted technique, used to improve strength and deformation capacity of existing RC buildings. In the case of steel angles not directly loaded, the numerical definition of the cross-section model has to be handled carefully since it is affected by more uncertainties. The vertical load carried by the angles is a function of the lateral confinement pressure, the cohesion and the friction coefficient between the materials, parameters which are not always easy to predict. The pap…

Settore ICAR/09 - Tecnica Delle CostruzionicohesionconfinementOpenseesfrictionnumerical modellingOpensees confinement cohesion friction numerical modelling steel anglesCohesion friction numerical modelling steel angles opensees confinementsteel angles
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Gli infissi in ferro - finestra: una proposta di restauro

2004

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Simplified analytical model for bearing capacity of FRC corbels

2007

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Comportamento flessionale di colonne in calcestruzzo fibrorinforzato

2007

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Tecnica del sovracarotaggio per pilastri compressi in c.a.

2010

The paper shows the results of an experimental investigation on the behaviour of compressed concrete columns subjected to the overcoring technique. Extraction of cylindrical concrete cores in perpendicular direction to the column surface, was achieved by rotary drilling using a diamond tipped hollow barrel. Core is gradually isolated from the stress field in the surrounding concrete and at every advancing step the re-equilibrium deformation response is measured by means of four strain-gauges, placed on its external surface and near the hole. Finally the original stress state is computed in the elastic phase on the basis of recorded strains, knowing the elastic properties of concrete and by …

Sovracarotaggiocompressionecolonne in c.a.
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Comportamento flessionale di mensole tozze in calcestruzzo fibrorinforzato ad alta resistenza

2006

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Experimental behavior of concrete filled-columns in compression

2004

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Comportamento flessionale di nodi esterni in calcestruzzo fibrorinforzato

2010

A softened strut-and-tie macro model able to reproduce the flexural behavior of external beam-tocolumn joints with the presence of horizontal and vertical steel bars, including softening of compressed struts and yielding of main and secondary steel bars, is presented, to be used for the pushover analysis. The model proposed is able to calculate also the flexural response of fibrous reinforced concrete (FRC) beam-to-column sub-assemblages in term of a multilinear load-deflection curves. The model is able to take into account of the tensile behavior of main bars embedded in the surrounding concrete and of the softening of the compressed strut, the arrangement and percentage of the steel bars,…

Settore ICAR/09 - Tecnica Delle CostruzioniBeam-to column joints Fibrous reinforced concrete Load-deflection curves
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Influenza delle fibre sul comportamento delle zone diffusive

2008

calcestruzzi fibrorinforzatiSettore ICAR/09 - Tecnica Delle Costruzioni
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Coperture in vetro stratificato: criteri di progettazione

2014

This paper concerns the design activity about laminated glass structures for the evaluation of criteria to optimize the design. This target is reached by using a preliminary study of the normative frame in national and international field. Forward by studying the bibliography on laminated glass structure. Application is on canopy designed by authors. Here are reported the step design procedures starting by definition of load, the restraints condition for structure element and a 3d model is produced by using a FEM method.

Settore ICAR/09 - Tecnica Delle CostruzioniVetro stratificato Analisi FEM
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INDAGINE SPERIMENTALE SU ELEMENTI IN VETRO STRUTTURALE COMPRESSI

2011

Several experimental investigations in the past few years have highlighted the fact that the compressive strength of glass was significantly higher than its tensile strength, allowing new applications of glass in compression members. However, due to the high slenderness of structural glass elements made of thin glass panels, they tend to fail in a brittle manner. A substantial amount of fundamental research has been carried out in the past few years to investigate the stability behaviour of structural glass elements. However, although buckling of glass panels has been quite well studied, a very poor amount of research has been addressed to glass columns, which by contrast represent the most…

Vetro strutturale Lastre Colonne Compressione Instabilità
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Flexural behavior of R.C. columns externally wrapped with FRP sheets

2012

In the present paper the compressive and flexural behavior of R.C. columns externally wrapped with FRP layers is examined. The investigation refers to a short compressed R.C. member having circular transverse cross-section and reinforced with longitudinal bars and transverse hoops or spirals. A first phase of the investigation was addressed to describing the constitutive laws of constituent materials (confined concrete core, steel bars in compression and in tension, FRP in tension). The second phase of the research was addressed to deriving the compressive and flexural responses in terms of load-axial shortening curves and momentaxial force interaction domain, to be compared with experiment…

Settore ICAR/09 - Tecnica Delle CostruzioniCircular columnPolymers and PlasticReinforcement bucklingFlexural responseConfinementFRP wrapCivil and Structural Engineering
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Influenza delle armature sul comportamento in compressione di colonne in calcestruzzo ad alta resistenza

2010

Settore ICAR/09 - Tecnica Delle CostruzioniCemento armato compressione alta resistenza confinamento modellazione sperimentazione
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Experimental investigation on mansory panels manufactured with pumice lightweight concrete

2010

The possibility of using pumice aggregates for concrete in structural applications is discussed. In particular, the mix design of lightweight concrete for the manufacturing masonry units having proper strength, is discussed. Moreover, the design of the unit shape according to the technical code requirements and making it possible to arrange reinforcing steel bars is described. Reinforced bearing masonry walls, made with the concrete units in question, were manufactured and tests on the panels and on the designed units were carried out. For comparison, tests on concrete units and structural elements were carried out after the substitution of pumice aggregates with ordinary lightweight aggreg…

Settore ICAR/09 - Tecnica Delle Costruzionipumice lightweight aggregates lightweight concrete reinforced masonry walls
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Closure to Experimental Investigation on Compressive Behavior of Bottle-Shaped Struts

2012

bottle shapes
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Experimental investigation of the flexural behaviour of short fiber reinforced concrete beams

2005

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Influenza del carotaggio sullo stato tensionale e deformativo di elementi compressi

2008

Settore ICAR/09 - Tecnica Delle Costruzionicarotaggiopilastrifori
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Strengthening of Solid Brick Masonry Columns with Joints Collared by Steel Wires

2013

This work presents the results of an experimental investigation on the behavior of columns made of solid clay bricks strengthened by stainless steel wires placed in the joints. The characterization of each constituent property (bricks, mortar, and steel wires) and the compression tests on columns show the effectiveness of the proposed strengthening technique with the result of increased ductility of brick columns. From the analytical point of view a model is proposed which gives the response in terms of the stress-strain curve, by taking into account the presence of steel wires placed in the joints, and the consequences on the effective confinement pressure with the following resulting enha…

Settore ICAR/09 - Tecnica Delle CostruzioniSteel WireCompressionStrengthMasonryConfinementDuctility
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Simplified analytical model for flexural response of external R.C. frames with smooth rebars

2018

In this paper an analytical model in a closed form able to reproduce the monotonic flexural response of external RC beam-column joints with smooth rebars is presented. The column is subjected to a constant vertical load and the beam to a monotonically increasing lateral force applied at the tip. The model is based on the flexural behavior of the beam and the column determined adopting a concentrated plasticity hinge model including slippage of the main reinforcing bars of the beam. A simplified bilinear moment-axial force domain is assumed to derive the ultimate moment associated with the design axial force. For the joint, a simple truss model is adopted to predict shear strength and panel …

ColumnMechanical EngineeringSmooth rebarShearBeamBuilding and ConstructionBeam; Column; Flexure; Joint; Shear; Smooth rebars; Civil and Structural Engineering; Building and Construction; Mechanics of Materials; Mechanical EngineeringSettore ICAR/09 - Tecnica Delle CostruzioniJointSmooth rebarsMechanics of MaterialsMechanics of MaterialFlexureCivil and Structural Engineering
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Flexural behavior of laminated glass beams with T cross-sections

2014

Flexural behavior laminated glass T-beams
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Influence of concrete cover on the compressive strength of fiber reinforced concrete columns

2004

The paper focuses on the influence of the concrete cover on the strength of confined compressed columns made of fiber reinforced concrete. A mechanical model has been developed based on the ultimate state conditions of concrete core, concrete cover and transverse steel. The cases of plain concrete and fiber reinforced concrete are analysed and focus on the beneficial effects due to the presence of fibers. The model has been verified against data obtained from concentric compressive tests on concrete specimens reinforced with transverse steel and fibers.

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Upgrading of existing steel MR-frames by encasing the columns

2004

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Comportamento sperimentale di regioni diffusive di elementi in c.a.

2009

Nel presente lavoro si esamina il comportamento in compressione di pilastri in calcestruzzo ordinario con e senza armature e soggetti a carichi applicati su aree ridotte in assenza ed in presenza di fori praticati per l’effettuazione di indagini non distruttive. I risultati ottenuti hanno mostrato che la diminuzione dell’area di impronta del carico rispetto all’intera sezione trasversale dei pilastri o la presenza di un foro riduce la capacità potante dell’elemento ed infragilisce la risposta strutturale. Dal punto di vista teorico modelli disponibili in letteratura forniscono sulla base di adeguati schemi resistenti tirante-puntone valori del carico di rottura prossimi a quelli rilevati sp…

Settore ICAR/09 - Tecnica Delle Costruzionizone diffusivemodelli tirante-puntonecompressioneindagine sperimentale
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Indagine sperimentale su travi in calcestruzzo fibroso sottoposte a carichi monotonici e ciclici

2004

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Comportamento in pressoflessione di pilastri in c.a. rinforzati con la tecnica dell'incamiciatura leggera

2012

Pilastri in c.a. Rinforzo strutturale Incamiciatura leggera Modellazione
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Flexural and Shear Resistance of High Strength Concrete Beams

2014

In the present paper, an analytical model is proposed that is able to determine the shear resistance of high strength reinforced concrete beams with longitudinal bars, in the presence of transverse stirrups. The model is based on the evaluation of the resistance contribution due to beam and arch actions. For the resistance contribution of the main bars in tension the residual bond adherence of steel bars and the crack spacing of R.C. beams are considered. The compressive strength of the compressed arch is also verified by taking into account of the biaxial state of stresses. The model was verified on the basis of experimental data available in the literature and it is able to include the fo…

Settore ICAR/09 - Tecnica Delle CostruzioniShear ResistanceShear-Moment InteractionShear-Moment Interaction; High-Strength Concrete; Shear Resistance; Flexural ResistanceHigh-Strength ConcreteFlexural Resistance
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Shear strength of reinforced concrete beams with fibers and stirrups

2005

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L’USO DI ANGOLARI IN ACCIAIO INOX PER IL COLLEGAMENTO DI ELEMENTI STRUTTURALI IN VETRO

2007

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Influenza del coefficiente di poisson sul comportamento in compressione di colonne composte acciaio-calcestruzzo a sezione circolare

2009

In the paper an analytical model able to predict the whole compressive response of stub CFT subjected to uniaxial compression is presented and discussed. Cases examined re-ferred to member with circular cross-section having length 400 mm and diameter ranging be-tween 88.9 and 457 mm and wall thickness between 6 and 8 mm. Two steel grades of 275 and 460 MPa yielding stress were examined and four concrete grades were investigated (20, 28, 40 and 45 MPa). The proposed model take into account of the variable confined pressures exercised by steel wall on concrete core and of the biaxial state of stresses induced in steel wall. The model was verified both in term of load-shortening curves with da…

misteSettore ICAR/09 - Tecnica Delle Costruzioniacciaiocolonne
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Influence of radius of corners in concrete columns confined with FRP sheets

2006

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INFLUENZA DEL DIAMETRO DEL FORO SUL COMPORTAMENTO IN COMPRESSIONE DI COLONNE IN C.A.

2012

Core-drilling technique is nowadays always more frequently performed in existing reinforced concrete (RC) structures in order to investigate on the mechanical properties of concrete and for structural health monitoring purposes. Even if the engineering practice discourages to drill columns, this can be often unavoidable. In this last case the presence of the circular opening influences the compressive behavior of the column in terms of load-carrying capacity and axial deformability. The goal of this investigation was the experimental evaluation of the effects induced by circular openings on the behavior of RC columns. 24 reinforced and plain concrete prisms in presence of circular openings …

Settore ICAR/09 - Tecnica Delle Costruzionicolonne forate carotaggio.
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Elementi compressi in calcestruzzo rinforzati con angolari e piatti metallici:modello di calcolo e riferimenti nomrativi

2008

Settore ICAR/09 - Tecnica Delle Costruzioniconfinamentopiattangolariinstabilitàcompressione
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FRP sheets for externally wrapping of compressed concrete members

2006

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Some recent results on the compressive and flexural behaviour of composite members

2005

Experiemntal results from compression and flexural tests on steel tubulare columns having circular or rectangular transverse cross-section and infilled with plain or fiber reinforced concrete (FRC) are analysez. for composite members differenti lengths and different dimensions of transverse cross-section were considered in order to assess the influence on behavior in flexure and in compression.The fiber investigated with different percentage were syntetic, carbon and deformed steel fibers. The constituent materials were characterised through compressive and split tests on conconcrete cylinders. Load.shortning and load-delection curves were determined including the sotnening response. Simpli…

experimental tests composite columns fiber reinforced concrete
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Il festino di Palermo e le strutture del carro di S. Rosalia

2009

carro acciaio festino
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L'uso di elementi in acciaio per la messa a punto di un set-up di prova per lastre di vetro strutturale di grandi dimensioni

2007

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Comportamento ciclico di travi in calcestruzzo fibrorinforzato

2007

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Experimental investigation on local bond-slip behaviour in lightweight fiber reinforced concrete under cyclic actions

2004

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Shear and flexural strength of corroded R.C. beams

2016

Simplified equations aimed at evaluating the flexural and shear capacity of corroded R.C. beams are presented and discussed in this paper, with reference to ordinary beams reinforced both longitudinally (with same-size bars) and transversely (with stirrups). A model is developed to take care of diffused and localised corrosion (pitting corrosion), concrete decay in compression and bond-strength decay at concrete-reinforcement interface. A fairly innovative contribution of this study is the introduction into the proposed equations of the main parameters governing the corrosion processes. The proposed approach is simple and effective, and may be adopted in the assessment of many damaged struc…

pittingSettore ICAR/09 - Tecnica Delle Costruzionishear-moment interactioncorrosionshear-moment interaction; corrosion; bond; pitting; flexural responses / interazione taglio-momento; corrosione; aderenza; pitting; risposta flessionale.risposta flessionale.flexural responses / interazione taglio-momentoaderenzabond pitting flexural responses shear-moment interaction corrosionbondcorrosione
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Resistenza e duttilità di colonne compresse in calcestruzzo ad alta resistenza

2006

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Simplified analytical model for flexural response of FRC corbels

2009

Settore ICAR/09 - Tecnica Delle Costruzionicorbels
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Comportamento flessionale di mensole tozze in calcestruzzo fibrorinforzato

2006

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