0000000001166674

AUTHOR

Giovanni Minafò

showing 74 related works from this author

Comparative experimental analysis on the compressive behaviour of masonry columns strengthened by FRP, BFRCM or steel wires

2017

Abstract In the last decade, several studies have investigated the application of Fibre Reinforced Polymer (FRP) wraps to masonry piers in order to provide a confinement effect and enhance compressive strength and ductility. Although this technique has proved to be quite effective, various drawbacks arise when organic resins are used to bind fibres. To solve these problems, different techniques have been developed to be used as alternative methods for enhancing the structural performances of weak masonry columns. Among these, the use of Basalt Fibre Reinforced Cementitious Matrix (BFRCM) wrapping, or the application of steel wires at mortar joints. This paper presents the results of an expe…

Materials science0211 other engineering and technologiesCeramics and Composite02 engineering and technologyIndustrial and Manufacturing EngineeringRetrofit021105 building & constructionMechanics of MaterialMasonry columnComposite materialSteel wireDuctilityAlternative methodsExperimental investigationbusiness.industryMechanical EngineeringStructural engineeringMasonryFibre-reinforced plastic021001 nanoscience & nanotechnologySettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthMechanics of MaterialsCeramics and CompositesClay brickMortar0210 nano-technologybusinessCementitious matrixBasalt fibreFRPComposites Part B: Engineering
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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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A Theoretical Model to Evaluate the Compressive Behaviour of RС Jacketed Columns

2016

Reinforced concrete (RC) jacketing is becoming increasingly common among the different retrofit techniques for poor RC members, due to its economical and practical advantages. Experimental investigations in the literature have shown that the actual axial capacity of RC jacketed members can be substantially lower than that analytically evaluated by adapting the most common theoretical models for confined concrete. This fact can be explained by taking into account the presence of tensile stresses developing in the concrete, due to a mutual interaction between the inner core and the external jacket. This phenomenon is relevant especially in members where the concrete properties of the jacket a…

Core (optical fiber)Engineeringbusiness.industryLinear elasticityUltimate tensile strengthConstitutive equationInner coreRange (statistics)General MedicineStructural engineeringbusinessSofteningPlane stressApplied Mechanics and Materials
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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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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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An experimental study on the compressive behaviour of calcarenite masonry columns wrapped by fiber reinforced mortar wraps

2018

The use of Fiber Reinforced Cementitious Mortar (FRCM) systems for structural retrofitting of masonry structures has become increasingly popular in the last years, due to the capability of this technique in overcoming some of the drawbacks related to the adoption of resin-based composites. In fact, FRCM systems ensure good compatibility between the reinforcing layers and the substrate, achieving also the removability requirement, which is of fundamental importance for historical constructions. Recent research studies focused on the mechanical performance of FRCM materials, by studying its tensile behaviour and bond between the strengthening layer and masonry, pointing out as failure is alwa…

Settore ICAR/09 - Tecnica Delle CostruzioniStrengthening and repairExperimental studyStrengthening and repair; Experimental study; FRCM systems; Masonry; ConfinementStrengthening and repair Experimental study FRCM systems Masonry ConfinementMasonryFRCM systemsConfinement
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Effectiveness of BFRP confinement on the compressive behaviour of clay brick masonry cylinders

2020

Abstract This paper presents the results of an experimental and analytical study on the compressive behaviour of small clay brick masonry cylinders reinforced with a basalt fibre reinforced polymer (BFRP) composite. Fourteen cylinders, manufactured using two assembling schemes and confined using either one or two layers of BFRP grids, were tested under monotonic compression loading. Traditional strain measuring systems were integrated with digital image correlation (DIC) technique. The BFRP confined masonry cylinders showed a ductile behaviour characterised by a softening branch of the stress–strain curve. The experimental strains, strength, and full stress–strain curves were modelled using…

CylindersDigital image correlationMaterials sciencebusiness.industryComposite numberDigital image correlation02 engineering and technologyMasonry021001 nanoscience & nanotechnologyCompression (physics)Settore ICAR/09 - Tecnica Delle Costruzioni020303 mechanical engineering & transports0203 mechanical engineeringCeramics and CompositesClay brickBFRPComposite materialMasonry0210 nano-technologybusinessSofteningConfinementCivil and Structural EngineeringComposite Structures
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Effect of steel collars on the seismic behaviour of axially-cracked historical stone columns

2014

Granite and heavy stone circular columns could often be found in the cultural heritage among ancient churches and historical buildings in all the Mediterranean area. Their good strength properties allow them to carry big load values, while their bright colours and aesthetical characteristics were used by a lot of architects in the past to achieve structural solutions with great visual impact.Though such materials have great compressive strength values, environmental effects, especially long term effects, can damage the structural members, by cracking them. In this way the slenderness of the column increases, and the presence of an imposed ground motion can be very dangerous, since the colum…

Ground motionEngineeringCrackbusiness.industryStiffnessStructural engineeringCrackingRetrofittingRocking motionStone columnCompressive strengthColumn (typography)StiffnemedicineGeotechnical engineeringmedicine.symptombusinessGround shakingAxial symmetryCivil and Structural EngineeringStress concentrationEngineering Structures
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Evaluation of Flat Jack Test Method Effectiveness for Masonry Structural Investigations

2019

Flat jack testing method is one of the most commonly used techniques for the structural assessment of existing masonry structures. Single and double flat jack are commonly adopted to evaluate the acting normal stress, or the compressive behaviour of masonry material. Test procedures are codified by international standards (e.g. A.S.T.M D4729-87; C1196-04; C1197-04, R.I.L.E.M TC 177–MDT D.4; R.I.L.E.M. TC 177–MDT D.5), which provide the preliminary calibration of an experimental coefficient (km), which determination influences significantly the reliability of the test. This paper presents the result of an experimental study on the calibration of km coefficient for flat jacks. The problem is …

Settore ICAR/09 - Tecnica Delle Costruzioniflat-jack masonry testing
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Compressive behaviour of eccentrically loaded slender masonry columns confined by FRP

2018

Abstract Fibre Reinforced Polymer (FRP) confinement represents an effective tool for retrofitting masonry piers or columns enhancing their structural performance. This technique has been widely studied in the literature mainly with reference to short columns, while no extensive information is available on the influence of second order effects on its efficacy in case of slender members. Within this framework, the presented study concerns a simplified method able to assess the effects of FRP confinement on the compressive behaviour of slender masonry columns. A proper constitutive law of FRP confined masonry in compression is adopted for performing a sectional analysis, in which also consider…

Materials sciencebusiness.industryConstitutive equation0211 other engineering and technologies020101 civil engineering02 engineering and technologyStructural engineeringFibre-reinforced plasticMasonryCompression (physics)CurvatureFinite element method0201 civil engineeringSettore ICAR/09 - Tecnica Delle CostruzioniConfinement; Eccentric load; FRP; Masonry; Stability; Civil and Structural EngineeringColumn (typography)Eccentric load021105 building & constructionRetrofittingbusinessMasonryStabilityConfinementFRPCivil and Structural Engineering
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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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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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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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Genetic Optimization for the design of seismic retrofitting of plane RC frames with Buckling Restrained Braces (BRBs)

2021

The increasing development of computational power in modern digital devices has spread the use of structural optimization in design applications of different fields of engineering problems. This approach exposes engineers to challenging design procedures aimed to optimize all variables to satisfy the imposed requirements, finding the “optimal” solution. Despite this wide use, the application of optimization algorithms for the design of seismic retrofitting strategies becomes tougher, due to the difficulties in finding a mathematical expression which includes and combines all the key variables (i.e., cost, safety, sustainability, design) and the nonlinearity of the analysis. In this paper, t…

Settore ICAR/09 - Tecnica Delle CostruzioniBucklingPlane (geometry)business.industrySeismic retrofitStructural engineeringRc framesStructural optimiziation Genetic Algorithm Retrofitting BRBbusinessGeology
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Strength and ductility of RC jacketed columns: A simplified analytical method

2016

Abstract Reinforced concrete (RC) jacketing is a common method for retrofitting existing columns with poor structural performance. It can be applied in two different ways: if the continuity of the jacket is ensured, the axial load of the column can be transferred to the jacket, which will be directly loaded; conversely, if no continuity is provided, the jacket will induce only confinement action. In both cases the strength and ductility evaluation is rather complex, due to the different physical phenomena included, such as confinement, core–jacket composite action, preload and buckling of longitudinal bars. Although different theoretical studies have been carried out to calculate the confin…

Engineering/dk/atira/pure/subjectarea/asjc/2200/22050211 other engineering and technologies020101 civil engineering02 engineering and technology0201 civil engineeringRetrofitOpenSeesFlexural strengthConfinement; Ductility; RC jacketing; Retrofit;021105 building & constructionRetrofittingDuctilityCivil and Structural EngineeringDuctilityRC jacketingbusiness.industryNumerical analysisStructural engineeringFinite element methodSettore ICAR/09 - Tecnica Delle CostruzioniBucklingBending momentRC jacketing retrofit ductility confinement.businessConfinement
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Static Performances of Timber- and Bamboo-Concrete Composite Beams: A Critical Review of Experimental Results

2021

The use of composite beams made with traditional concrete and bio-based materials (such as timber and bamboo) is a valuable solution to reduce the environmental impact of the building sector. Timber-Concrete Composite (TCC) beams have been used for decades in structural applications such as new buildings, refurbishment of old timber structures, and bridges. Recently, different researchers suggested composite beams based on engineered bamboo, commonly named Bamboo-Concrete Composite (BCC) beams. This study presents a systematic comparison of structural performances and connection behavior of TCC and BCC beams under short-term static load. TCCs beams are compared to BCC ones using similar she…

BambooMaterials sciencebusiness.industry0211 other engineering and technologiesFailure modeMechanical properties020101 civil engineering02 engineering and technologyBuilding and ConstructionStructural engineeringShear connectorBending performancesFailure modesShear connectorsComposite beams0201 civil engineeringBamboo-concreteSettore ICAR/09 - Tecnica Delle Costruzioni021105 building & constructionbusinessBending performanceMechanical propertieTimber-concreteThe Open Construction & Building Technology Journal
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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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Mechanical Characterization of a Basalt Fabric for TRM Composites: Role of the Test Variables

2021

Textile reinforced mortar (TRM) materials are currently receiving great attention for the strengthening of reinforced concrete and masonry structural elements. Mortars with different strength classes have been coupled with different kind of synthetic fabrics, such as carbon, glass, steel, PBO. Recently natural fibres and, in particular, basalt fibres are receiving increasing interest since they proved to be a promising alternative to the most common synthetic fabrics, thanks to the reduced production costs and the consequent benefits in terms of environmental impact. This paper presents an experimental investigation comprising forty-one monotonic tensile tests on textile strips made with a …

BasaltMaterials scienceDigital image correlation (DIC)Experimental investigationTRM compositesBasalt textileComposite materialTensile testsCharacterization (materials science)
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A numerical study on the effect of the interface material model on the tensile behaviour of FRCM strips

2019

Fibre Reinforced Cementitious Matrix (FRCM) composites are becoming increasingly popular for strengthening masonry structures for which the compatibility of the inorganic matrix with the chemical and physical properties of the support makes it advantageous to adopt such systems. However, despite the large use of FRCMs for strengthening applications, the characterization and modelling of the mechanical response in tension of these systems is an open issue. In fact, the constitutive tensile law of the composite shows to be affected by different variables, such as the clamping system adopted during tensile test, the gauge length used for recording strains, the monitoring of the number of yarns…

Settore ICAR/09 - Tecnica Delle Costruzioniinterfacenumerical modellingfinite elementsFRCM interface tensile behaviour numerical modelling finite elementsFRCMtensile behaviour
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Numerical modelling of the tensile behaviour of BFRCM strips

2019

This paper aims at investigating the tensile behaviour of basalt fibres on cementitious matrix for the strengthening of masonry structures. The use of Basalt Fibre Reinforced Cementitious Matrix (BFRCM) is favourably considered by the scientific community because it represents a natural composite material with high compatibility with stone and masonry substrate. The study is developed through the generation of Finite Element (FE) models capable of reproducing the tensile behaviour of BFRCM strips with different number of layers of grid. For the scope, the micro-modelling approach is adopted assuming different levels of detail for the simulation of the interface constitutive behaviour. Fibre…

Basalt GridFinite Element ModellingBasalt Grid Damage Finite Element Modelling FRCM Interface Tensile behaviourTensile behaviourMaterials scienceInterface (Java)Mechanical EngineeringBasalt Grid; Damage; Finite Element Modelling; FRCM; Interface; Tensile behaviour02 engineering and technologySTRIPSInterface021001 nanoscience & nanotechnologyFRCMlaw.invention020303 mechanical engineering & transportsDamage0203 mechanical engineeringMechanics of MaterialslawUltimate tensile strengthGeneral Materials ScienceComposite material0210 nano-technology
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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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Effect of corner over-reinforcing strips on the compressive behaviour of TRM confined masonry columns

2020

Several recent works studied the efficiency of inorganic matrix composites, namely Textile Reinforced Mortar (TRM) or Fabric Reinforced Cementitious Matrix, for enhancing the strength and shortening capacity of masonry columns subjected to axial load. Literature studies were addressed to study the great number of variables involved in the problem, such as the nature and the grade of mortar, the strength of the fabric, the number of reinforcing layers, the type, the arrangement and the strength of the masonry, and helped to draw the first technical guidelines for practitioners and designers. All the experimental works highlighted that the actual performance of TRM confinement in masonry memb…

Materials scienceTextilebusiness.industryComposite number0211 other engineering and technologies02 engineering and technologyBuilding and ConstructionStructural engineeringSTRIPSMasonrylaw.inventionSettore ICAR/09 - Tecnica Delle CostruzioniMechanics of Materialslaw021105 building & constructionSolid mechanicsAxial loadConfinement Experimental study Masonry Strengthening TRM systemsGeneral Materials ScienceMortarbusinessCivil and Structural EngineeringStress concentrationMaterials and Structures
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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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Effects of Different Test Setups on the Experimental Tensile Behaviour of Basalt Fibre Bidirectional Grids for FRCM Composites

2020

Fibre-reinforced cementitious matrix (FRCM) composites have been effectively used during the last ten years for the strengthening of existing concrete and masonry structures. These composite materials are made of medium- and high-strength fibre meshes embedded in inorganic matrices. Synthetic fibres are the ones that are currently the most used

Materials scienceTRMDigital image correlation (DIC)0211 other engineering and technologies02 engineering and technologySTRIPSFRCMcompositeslaw.inventionBiomaterialslcsh:TP890-933lawlcsh:TP200-248021105 building & constructionUltimate tensile strengthTensile characterisationComposite materiallcsh:QH301-705.5Civil and Structural Engineeringbusiness.industrySystem of measurementbasalt gridlcsh:Chemicals: Manufacture use etc.Masonry021001 nanoscience & nanotechnologyGridlcsh:QC1-999ClampingSettore ICAR/09 - Tecnica Delle CostruzioniSynthetic fiberlcsh:Biology (General)Mechanics of MaterialsCeramics and Compositeslcsh:Textile bleaching dyeing printing etc.Slippage0210 nano-technologybusinesslcsh:PhysicsBasalt grid
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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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Experimental calibration of flat jacks for in-situ testing of masonry

2018

Flat-jack testing method is one of the most commonly used techniques for the structural assessment of existing masonry structures. Single and double flat jacks are usually adopted to evaluate the acting normal stress, or the compressive behaviour of masonry material. Test procedures are codified by international standards (e.g., A.S.T.M D4729-87; C1196-04; C1197-04, R.I.L.E.M TC 177–MDT D.4; R.I.L.E.M. TC 177–MDT D.5), which provide the preliminary calibration of an experimental coefficient (km) and of the effective area (Aeff), which determination influences significantly the reliability of the test. This article presents the result of an experimental study on the calibration of flat jacks…

In situconversion factorVisual Arts and Performing Artsbusiness.industrycompressive stre0211 other engineering and technologies020101 civil engineering02 engineering and technologyConservationStructural engineeringMasonry0201 civil engineeringCompressive strengthmasonry021105 building & constructionArchitectureCalibrationflat-jack methodbusinessGeologyInternational Journal of Architectural Heritage
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Experimental Investigation on the Compressive Behaviour of Clay Brick Masonry Columns Confined by BFRP or Steel Wires

2016

This paper presents the results of an experimental research aiming to investigate on the compressive behavior of full size clay brick masonry columns reinforced with Basalt Fiber Reinforced Cementitious Matrix (BFRCM) or with steel wires collaring. Uniaxial compressive tests were performed on eight retrofitted columns and four control specimens. Two masonry strength were considered by varying the mortar grade. Results are presented and discussed in terms of axial stress-strain relationships, failure modes and crack patterns of the specimens tested up to failure. For the limit of investigated variables, comparisons with unreinforced specimens show the ability of these alternative techniques …

Materials sciencebusiness.industry0211 other engineering and technologies020101 civil engineering02 engineering and technologyGeneral MedicineMasonryExperimental research0201 civil engineeringBasalt fiber021105 building & constructionClay brickGeotechnical engineeringMortarDuctilityCementitious matrixbusinessScale effectApplied Mechanics and Materials
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Experimental investigation on the effect of mortar grade on the compressive behaviour of FRCM confined masonry columns

2018

Abstract The use of Fiber Reinforced Cementitious Mortar (FRCM) systems for structural retrofitting of masonry structures has become increasingly popular in the last years, due to the capability of this technique in overcoming some of the drawbacks related to the adoption of resin-based composites. Recent studies investigated on the effect of FRCM wraps on the compressive behaviour of concrete members and demonstrated as the application of mortar-based composites allows increasing the strength and, above all, the ductility of the column. The main difference with FRP confined columns is related to the different post-peak behaviour, characterized by a softening branch. Differently, few studie…

Materials science0211 other engineering and technologiesCeramics and Composite02 engineering and technologyIndustrial and Manufacturing Engineering021105 building & constructionUltimate tensile strengthMechanics of MaterialComposite materialDuctilityMasonryExperimental studybusiness.industryMechanical EngineeringFibre-reinforced plasticMasonry021001 nanoscience & nanotechnologyCompression (physics)Strength of materialsSettore ICAR/09 - Tecnica Delle CostruzioniMechanics of MaterialsCeramics and CompositesStrengtheningCementitiousMortar0210 nano-technologybusinessFRCM systemConfinement
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Stability analysis of clay brick masonry columns: numerical aspects and modelling strategies

2014

Stability analysis of masonry piers and columns is one of the most frequently treated subjects in the field of structural engineering. This attention is probably due to the challenge to solving the problem including different effects, which play an important role in evaluating the response of eccentrically-loaded columns. In this connection, accurate stability analysis of masonry piers and columns has to take into account the non-linear stress–strain law of masonry in compression, the limited tensile strength, the induced slenderness due to crack formation and geometrical non-linearity. Different theoretical models and numerical approaches were developed in the past to analyze the combined …

Engineeringbusiness.industryNumerical analysisConstitutive equationStructural engineeringBuilding and ConstructionMasonryNumerical methodCompression (physics)Strength of materialsFinite element methodSettore ICAR/09 - Tecnica Delle CostruzioniBucklingMechanics of MaterialsSolid mechanicsGeneral Materials ScienceGeotechnical engineeringMechanics of MaterialMasonry columnMaterials Science (all)businessStabilityCivil and Structural Engineering
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Effect of FRP strengthening on the flexural behaviour of calcarenite masonry walls

2017

The use of fiber-reinforced polymers (FRP) for structural strengthening has become increasingly popular in recent years. Several applications of FRP have been proposed and applied, depending on the target of the technique, kind and/or material of the structural member. In particular, because of their great tensile strength, FRP materials are commonly used to enhance the out-of-plane behaviour of masonry walls, allowing to increase their strength, ductility and improving safety against overturning. For these reasons, FRP laminates are often applied in vulnerable ancient buildings in seismic areas to reinforce façades and walls with poor structural features. However, some issues arise when a…

FRP strengthening; Masonry walls; Out-of-plane loading; Civil and Structural Engineering; Building and ConstructionCantileverComputer science0211 other engineering and technologies020101 civil engineering02 engineering and technology0201 civil engineeringFlexural strengthFRP strengthening021105 building & constructionUltimate tensile strengthReinforcementCivil and Structural EngineeringMasonry wallbusiness.industryMasonry wallsStructural engineeringBuilding and ConstructionFibre-reinforced plasticMasonryGeotechnical Engineering and Engineering GeologyFinite element methodSettore ICAR/09 - Tecnica Delle CostruzioniOut-of-plane loadingGeophysicsCompatibility (mechanics)business
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Finite element analysis of the out-of-plane behavior of FRP strengthened masonry panels

2017

Abstract In the present study a numerical model is proposed for the response of out-of-plane loaded calcarenite masonry walls strengthened with vertical CFRP strips applied on the substrate by means of epoxy resin. A simplified structural scheme is considered consisting in a beam fixed at one end, subjected to constant axial load and out-of-plane lateral force monotonically increasing. Two different constraint conditions are taken into account: in the first one, the panel is assumed free to rotate at the top end while, in the second one, the rotation is restrained. Three-dimensional finite elements are used for the calcarenite parts and an equivalent constitutive law available in the litera…

Materials scienceConstitutive equationShell (structure)FRP-masonry interfaceCeramics and CompositeFinite element modeling; FRP strengthening; FRP-masonry interface; Masonry panels; Out-of-plane behavior; Ceramics and Composites; Mechanics of Materials; Mechanical Engineering; Industrial and Manufacturing Engineering02 engineering and technology010402 general chemistry01 natural sciencesIndustrial and Manufacturing EngineeringFRP strengtheningMechanics of MaterialMasonry panelsComposite materialFinite element modelingMasonry panelbusiness.industryMechanical EngineeringLinear elasticityStructural engineeringMasonryFibre-reinforced plastic021001 nanoscience & nanotechnologyStrength of materialsFinite element method0104 chemical sciencesSettore ICAR/09 - Tecnica Delle CostruzioniMechanics of MaterialsCeramics and Composites0210 nano-technologybusinessBeam (structure)Out-of-plane behavior
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Experimental investigation on BFRCM confinement of masonry cylinders and comparison with BFRP system

2021

Abstract Fabric reinforced cementitious mortar (FRCM) materials have started to be employed during the last years with the aim of overcoming the drawbacks related to the use of fibre reinforced polymer (FRP) composites, proving to be potentially suitable for strengthening masonry structures. Moreover, the will to develop materials able to guarantee a certain degree of sustainability without renouncing to adequate mechanical properties has drawn the attention to the use of basalt fibres, which appear to be a valid alternative to carbon or glass fibres. This work presents an experimental investigation on a basalt FRCM (BFRCM) system to confine circular masonry columns, aimed at evaluating the…

Strengthening and repairDigital image correlationTextileMaterials scienceDigital image correlation (DIC)0211 other engineering and technologiesUniaxial compression020101 civil engineering02 engineering and technology0201 civil engineering021105 building & constructionBasalt FRCM Confinement Digital image correlation (DIC) Masonry cylinders Strengthening and repairGeneral Materials ScienceMasonry cylindersBasalt FRCMCivil and Structural Engineeringbusiness.industryBuilding and ConstructionStructural engineeringFibre-reinforced plasticMasonrySettore ICAR/09 - Tecnica Delle CostruzioniClay brickCementitiousMortarbusinessConfinement
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Modelling load-transmission mechanisms in axially loaded RC columns retrofitted with steel jackets

2018

The use of steel jacketing technique is a common practice for retrofitting existing reinforced concrete (RC) columns, as it allows increasing load-carrying capacity and ductility of the member. When the external jacket has no-end connections – i.e. the jacket is indirectly loaded- the load sustained by the column is transferred from the inner RC core to the external jacket through shear stresses along the contact surface. The assessment of this mechanism is quite complex, due to the marked non-linear behaviour of constituent materials and to the calibration of a proper shear stress-relative slip constitutive law of the concrete-to-steel interface. In this paper, a step-by-step analytical ap…

021110 strategic defence & security studiesMaterials sciencebusiness.industryConstitutive equation0211 other engineering and technologiesCompressionSteel jacketing020101 civil engineering02 engineering and technologyStructural engineeringSlip (materials science)Indirectly loadedInterfaceCompression (physics)0201 civil engineeringCore (optical fiber)Shear (sheet metal)Settore ICAR/09 - Tecnica Delle CostruzioniRetrofittingbusinessDuctilityAxial symmetryCivil and Structural Engineering
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The reaction structure of the LEDA research centre: Development and design

2017

In the last twenty years, the field of earthquake engineering experienced a noticeable improvement. The results of experimental and theoretical researches have contributed to the development of modern technical codes, which provide innovative solutions for the structural assessment and new design approaches. Despite this large amount of improvements, several open questions are still open, and the need for large scale testing has been deeply proved and discussed. A new research facility, namely the Laboratory of Earthquake engineering and Dynamic Analysis (LEDA), has been recently completed at the University of Enna "Kore". This research centre, funded with a grant from Italian Ministry of E…

ExperimentalEarthquake engineeringLarge scale testingPseudo-dynamic testingBuilding and ConstructionSafety Risk Reliability and QualityGeotechnical Engineering and Engineering Geology
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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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Flexural behaviour of glulam timber beams reinforced with FRP cords

2015

Abstract Glued laminated timber (glulam) is widely used as a construction material to make up lightweight and large span structures. The basic principle of this material consists in bonding together a number of layers of dimensioned timber with structural adhesives, in order to increase strength and stiffness of the member, and allowing to make up sustainable structures with great visual impact. Recent applications showed the effectiveness of fibre-reinforced polymer (FRP) composites in enhancing the structural performances of glulam beams, with particular reference on their flexural and shear strength. In fact FRP reinforcements could be used to strengthen existing structures or to reduce …

Materials scienceBendingFlexural strengthFRP strengtheningGlued laminated timbermedicineShear strengthGeneral Materials ScienceComposite materialCivil and Structural EngineeringFlexural behaviourbusiness.industryStiffnessEpoxyStructural engineeringBuilding and ConstructionFibre-reinforced plasticSettore ICAR/09 - Tecnica Delle CostruzioniFRP cordvisual_artvisual_art.visual_art_mediumGlulamAdhesiveMaterials Science (all)medicine.symptombusiness
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A Mechanical Approach for Evaluating the Distribution of Confinement Pressure in FRP-Wrapped Rectangular Columns

2019

In recent decades, fiber reinforced polymer (FRP) wrapping has become a common technique to retrofit reinforced concrete (RC) columns. Numerous research works have sought to verify analytically and experimentally its effectiveness in terms of enhancement of axial load bearing capacity and ductility. These studies highlighted that in the case of sharp-cornered sections, the maximum allowable confinement pressure is limited by premature failure at corners and, consequently, stress in the FRP, as well as the distribution of the confinement pressure, is not uniform. The prediction of this phenomenon is not straightforward, and existing theoretical studies propose complex numerical simulations, …

021110 strategic defence & security studiesCorner radiusMaterials scienceFiber reinforced polymer (FRP) wrappingDistribution (number theory)business.industryMechanical Engineering0211 other engineering and technologies02 engineering and technologyStructural engineeringFibre-reinforced plasticReinforced concreteConfinement pressureBrittle failureMechanics of Materials021105 building & constructionbusinessCorner radiu
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Effect of FRP Wraps on the Compressive Behaviour of Slender Masonry Columns

2017

In the last decade, Fibre Reinforced Polymer (FRP) wrapping technique has become a common method to retrofit masonry piers or columns with poor structural performances. The passive confinement effect induced by the external wrap allows increasing the compressive strength and ductility of the member. Several studies highlighted as the efficacy of this technique is affected by several key parameters, including the shape of the transverse cross section, stress intensification at the strength corner of sharp sections, amount and mechanical properties of adopted composite. Despite this technique has been widely studied from both theoretical and experimental point of view, most of studies focused…

Engineeringbusiness.industryMechanical Engineering0211 other engineering and technologies02 engineering and technologyStructural engineeringMasonryFibre-reinforced plastic021001 nanoscience & nanotechnologyStrength of materialsConfinement; FRP; Masonry; Stability; Materials Science (all); Mechanics of Materials; Mechanical EngineeringMechanics of Materials021105 building & constructionMechanics of MaterialGeneral Materials ScienceGeotechnical engineeringMaterials Science (all)Masonry0210 nano-technologybusinessStabilityStability Confinement Masonry Fiber Reinforced Polymer (FRP)ConfinementFRPKey Engineering Materials
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STATE OF THE ART ON BOND BETWEEN FRCM SYSTEMS AND MASONRY/CONCRETE SUBSTRATE: DATABASE ANALYSIS AND IMPROVED MODELS

2023

The use of the Fabric Reinforced Cementitious Mortars (FRCMs) is nowadays a promising solution for the strengthening of both reinforced concrete and masonry structural elements. The application consists of a bond-dependent face-to-face plastering of an open grid or mesh by means of an inorganic-based matrix, i.e. a cement-based mortar. The main advantage of such a strengthening technique is the good compatibility with different types of substrates since the most suitable matrix can be selected focusing on the most similar breathability and stiffness. On the other side, the strengthening efficiency could be over-estimated if the potential bond failure is neglected. The FRCM-bond behaviour de…

Design-oriented modelFRCMMasonryBondEarth-Surface ProcessesConcrete
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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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Theoretical approaches for modelling buckling effects in rebars of RC members

2017

Buckling of longitudinal bars in reinforced concrete (RC) members is definitely a critical issue in framed structures subjected to seismic loads. Second order effects can affect the compressive stress–strain law of steel bars, influencing ductility calculations of RC structures. Moreover, literature studies show that buckling can occur over a length wider than stirrups’ pitch (global buckling mode), involving more stirrups and inducing large deflections in the bar. If the critical length is not carefully estimated, stirrups’ failure can occur, causing also the sudden loss of confining effects in concrete. This paper presents the results of different approaches for calculating the crit…

Engineeringbusiness.industryBar (music)BucklingLongitudinal barConstitutive equationSeismic loading0211 other engineering and technologies020101 civil engineering02 engineering and technologyStructural engineeringBuilding and ConstructionStrain hardening exponentGeotechnical Engineering and Engineering GeologyFinite element method0201 civil engineeringRC structureGeophysicsBucklingFinite element021105 building & constructionbusinessDuctilityParametric statisticsCivil and Structural 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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Strengthening of Masonry Columns with BFRCM or with Steel Wires: An Experimental Study

2016

Nowadays, innovative materials are more frequently adopted for strengthening historical constructions and masonry structures. The target of these techniques is to improve the structural efficiency with retrofitting methods while having a reduced aesthetical impact. In particular, the use of basalt fiber together with a cementitious matrix emerges as a new technique. This kind of fiber is obtained by basalt rock without other components, and consequently it could be considered a natural material, compatible with masonry. Another innovative technique for strengthening masonry columns consists of applying steel wires in the correspondence of mortar joints. Both techniques have been recently pr…

basalt fibers; steel wires; compression; confinement; experimental investigationMaterials science0211 other engineering and technologies02 engineering and technologyBiomaterialsexperimental investigation: basalt fiberlcsh:TP890-933lcsh:TP200-248021105 building & constructionRetrofittingGeotechnical engineeringFibersteel wiresDuctilitylcsh:QH301-705.5Civil and Structural Engineeringbusiness.industrylcsh:Chemicals: Manufacture use etc.Structural engineeringMasonry021001 nanoscience & nanotechnologyCompression (physics)compressionsteel wirelcsh:QC1-999basalt fibersSettore ICAR/09 - Tecnica Delle Costruzionilcsh:Biology (General)Mechanics of MaterialsBasalt fiberconfinementCeramics and Compositeslcsh:Textile bleaching dyeing printing etc.Mortar0210 nano-technologyCementitious matrixbusinesslcsh:PhysicsFibers
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On the use of Digital Image Correlation (DIC) for evaluating the tensile behaviour of BFRCM strips

2019

Abstract. Fibre Reinforced Cementitious Matrix (FRCM) composites are becoming largely adopted for retrofitting masonry structures. These materials offer several advantages in comparison to Fibre Reinforced Polymer (FRP) composites, such as good resistance to fire and high temperatures, vapour permeability, possibility to be applied on wet surfaces, higher compatibility with the masonry substrate. However, the tensile behavior of FRCM materials is more complex compared to FRP composites, due to the limited tensile strength of the cement-based matrix. For this reason, FRCM materials require appropriate tensile characterization and, in this context, the use of non-conventional measurement syst…

Digital image correlationMaterials science/dk/atira/pure/subjectarea/asjc/2200/2205Mechanical Engineering0211 other engineering and technologies02 engineering and technologySTRIPS021001 nanoscience & nanotechnologylaw.inventionReinforcement ratioDigital Image Correlation (DIC)Mechanics of Materialslaw021105 building & constructionUltimate tensile strengthGeneral Materials ScienceBasalt textile gridComposite material0210 nano-technologyBFRCMCivil and Structural Engineering
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Masonry columns confined with fabric reinforced cementitious matrix (FRCM) systems: A round robin test

2021

Abstract The conservation and the preservation of existing masonry buildings, most of them recognized as cultural heritage, require retrofitting techniques that should reduce the invasiveness and assure reversibility and compatibility with the substrate. In this perspective, the strengthening system should be able to improve the bearing capacity of the structural member and, at the same time, to assure mechanical and material compatibility. The use of Fabric Reinforced Cementitious Matrix (FRCM) composites is now recognized to be suitable for these purposes. Indeed, the inorganic matrix has comparable properties with respect to the existing historical mortars while the fabric has relevant t…

Materials scienceColumnTesting0211 other engineering and technologies020101 civil engineering02 engineering and technologyengineering.materialDesign-oriented modelFRCM0201 civil engineering021105 building & constructionUltimate tensile strengthRetrofittingGeneral Materials ScienceBearing capacityMasonryCivil and Structural Engineeringbusiness.industryGroutColumns Confinement Design-oriented model FRCM Masonry TestingBuilding and ConstructionStructural engineeringMasonrySubstrate (building)Settore ICAR/09 - Tecnica Delle CostruzioniColumnsCompatibility (mechanics)engineeringMortarbusinessMasonry FRCM Confinement Design-oriented model Testing ColumnsConfinement
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Load-carrying capacity of axially-loaded RC members with circular openings

2012

Abstract Core drilling is today one of the most used technique among the group of partially destructive testing methods in reinforced concrete (RC) members. Even if the engineering practice provided to extract cores only in beams, taking samples from columns could be often necessary. In this case, the presence of the hole introduced a geometrical discontinuity in the member, creating a disturbed region. Consequently, compressive stresses will disperse in lateral direction as they have to avoid the drilled area. A bursting tensile force will develop, in orthogonal direction to the column axis, and if no sufficient reinforcement was arranged, a vertical crack will form, leading to the concret…

Engineeringbusiness.industryCircular openingCompressionDrillingStructural engineeringLoad carryingDrilled memberDiscontinuity (geotechnical engineering)Destructive testingUltimate tensile strengthCore-drillingAxial symmetrybusinessReinforcementFailure mode and effects analysisD-regionsCivil and Structural EngineeringEngineering Structures
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Constitutive Numerical Model of FRCM Strips Under Traction

2020

In this paper, the tensile behavior of Fiber Reinforced Cementitious Matrix (FRCM) strips is investigated through Finite Element (FE) models. The most adopted numerical modeling approaches for the simulation of the fiber-matrix interface law are described. Among them, the cohesive model is then used for the generation of FE models which are able to simulate the response under traction of FRCM strips tested in laboratory whose results are available in the technical literature. Tests on basalt, PBO and carbon coated FRCM specimens are taken into account also considering different mechanical ratios of the textile reinforcement. The comparison between FE results and experimental data allows val…

Materials scienceGeography Planning and DevelopmentTraction (engineering)0211 other engineering and technologiesNumerical modelingFRCM tensile behavior numerical modeling experimental tests interface modeling020101 civil engineering02 engineering and technologySTRIPSFRCM0201 civil engineeringlaw.inventionlcsh:HT165.5-169.9lawUltimate tensile strengthmedicinetensile behaviorComposite material021110 strategic defence & security studiesStiffnessexperimental testsBuilding and Constructionlcsh:City planningFinite element methodUrban StudiesTensile behaviornumerical modelinglcsh:TA1-2040experimental tests; FRCM; interface modeling; numerical modeling; tensile behaviorFe modelmedicine.symptominterface modelinglcsh:Engineering (General). Civil engineering (General)Frontiers in Built Environment
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Numerical Calibration of a Simplified Model for FRP Confinement of Columns

2018

This paper presents the calibration of a simplified analytical model for concrete columns confined by fiber reinforced polymer (FRP) jackets. The model allows evaluating the increase of strength, ductility and dissipated energy without defining the lateral confinement pressure and it can be easily extended for the assessment of FRP confinement in design applications. This model was obtained by a simplified procedure based on the best fit of experimental data available in the literature and the coefficient of determination (R2) was evaluated in order to estimate the accuracy of the regression analysis. A numerical database resulting from finite element (FE) analyses was compiled and reported…

Simplified analytical modelCoefficient of determinationbusiness.industryCalibration (statistics)Experimental dataRegression analysisNon-linear FE modelStructural engineeringFibre-reinforced plasticDissipationFinite element methodSettore ICAR/09 - Tecnica Delle CostruzioniFRP jacketbusinessDuctilityConcrete columnCivil and Structural EngineeringMathematics
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A practical approach for the strength evaluation of RC columns reinforced with RC jackets

2015

Abstract Reinforced concrete (RC) jacketing is nowadays one of the most common techniques adopted for seismic retrofitting of existing RC columns. It is used to increase load-carrying capacity and ductility of weak existing members by means of a simple and cheap method. The structural efficiency is related to two main effects: – the enlargement of the transverse cross section; – the confinement action provided by the external jacket to the inner core. Several theoretical and experimental studies were addressed in the past to investigate on how it is possible to calculate the strength enhancement due to these effects and to highlight the main key parameters influencing the structural behavio…

EngineeringCommercial softwareRC jacketingbusiness.industryRC columnStructural engineeringCompression (physics)Finite element methodRetrofitSettore ICAR/09 - Tecnica Delle CostruzioniBucklingBending momentSeismic retrofitbusinessDuctilityParametric statisticsConfinementCivil and Structural Engineering
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An open-source GA framework for optimizing the seismic upgrading design of RC frames through BRBs

2022

Abstract Optimizing seismic upgrading interventions in reinforced concrete (RC) structures is a difficult task, due to the inner non-linearity of the analyses usually performed. Additionally, it is well known that the displacement demand to the structure depends from the mass and stiffness of the system, and consequently its definition cannot be made a-priori. This paper presents the application of a soft-computing method -i.e. Genetic Algorithm (GA)- for the shaping optimization of code-compliant seismic upgrading interventions on plane RC frames through Buckling-Restrained Braces (BRB). The metaheuristic procedure allows to minimize the cost while ensuring the required safety level, witho…

Mathematical optimizationComputer scienceMonte Carlo methodCrossoverStability (learning theory)StiffnessPython (programming language)Settore ICAR/09 - Tecnica Delle CostruzioniGenetic algorithmMutation (genetic algorithm)medicineBRB Genetic algorithm Optimization Seismic upgradingmedicine.symptomcomputerMetaheuristicCivil and Structural Engineeringcomputer.programming_languageEngineering Structures
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EXPERIMENTAL ANALYSIS OF SMALL CLAY BRICK CYLINDERS CONFINED BY BFRP GRID UNDER AXIAL COMPRESSION

2019

Many investigations have shown that fibre reinforced polymer (FRP) composites can be effectively used to induce a passive confinement action on masonry columns and improve their axial capacity and ductility. This paper presents the results of an experimental study on the compressive behaviour of clay brick masonry cylinders externally wrapped with basalt fiber reinforced polymer (BFRP) grids. The circular section shape was chosen to assess the pure confinement effect on the masonry material. Fourteen clay brick masonry cylinders, cored from two different masonry assembly types, were confined with one or two layers of BFRP grids. The two assemblies were used to investigate the effect of vert…

Settore ICAR/09 - Tecnica Delle CostruzioniBFRPMasonry columnBasalt Fibre Reinforced PolymerStrengthening and Repair.
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A simplified method for ductility calculation in RC jacketed columns

2015

Reinforced concrete (RC) jacketing is a common method to retrofit existing columns with poor structural performance. It can be applied in two different ways: if the continuity of the jacket is ensured, the axial load of the column can be transferred to the jacket, which will be directly loaded; conversely, if no continuity is provided, the jacket induces only confinement action. In both cases the strength and ductility evaluation is rather complex, due to the different physical phenomena included, such as confinement, composite action core-jacket, preload, buckling of longitudinal bars. Although different theoretical studies have been carried out to calculate the confinement effects, a prac…

Settore ICAR/09 - Tecnica Delle CostruzioniRC jacketingretrofitconfinementRC jacketing retrofit ductility confinement.ductilityconfinement.
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Formulation of a truss element for modelling the tensile response of FRCM strips

2022

Modelling the tensile behaviour of Fabric Reinforced Cementitious Matrix (FRCM) is not a straightforward task due to the inner complexity of the mechanics of this kind of composite materials. In fact, after that the matrix is cracked, the compatibility between the fibre and the surrounding mortar is lost and the system behaves as two separate elements connected by a brittle interface. For this reason, several research studies proposed computational approaches for evaluating the tensile behaviour of FRCM composites, usually referring to brick-based 3D Finite Element Models (FEM) or to complex numerical procedures. This paper shows the formulation of a simplified coupled truss element for mod…

Materials scienceCracking FRCM Interface Tensile behaviourbusiness.industryTrussBuilding and ConstructionSTRIPSStructural engineeringlaw.inventionSettore ICAR/09 - Tecnica Delle CostruzionilawGeneral Materials ScienceTensile responsebusinessCivil and Structural Engineering
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Constitutive Models for the Tensile Behaviour of TRM Materials: Literature Review and Experimental Verification

2021

In recent years, the scientific community has focused its interest on innovative inorganic matrix composite materials, namely TRM (Textile Reinforced Mortar). This class of materials satisfies the need of retrofitting existing masonry buildings, by keeping the compatibility with the substrate. Different recent studies were addressed to improve the knowledge on their mechanical behaviour and some theoretical models were proposed for predicting the tensile response of TRM strips. However, this task is complex due to the heterogeneity of the constituent materials and the stress transfer mechanism developed between matrix and fabric through the interface in the cracked stage. This paper present…

Computer science0211 other engineering and technologies02 engineering and technologylcsh:TechnologyArticleTextile Reinforced Mortar (TRM)Strengthening Tensile behaviour Textile Reinforced Mortar (TRM)Stress (mechanics)021105 building & constructionUltimate tensile strengthRetrofittingGeneral Materials Sciencelcsh:Microscopytensile behaviourReliability (statistics)lcsh:QC120-168.85lcsh:QH201-278.5business.industrylcsh:TStructural engineeringMasonry021001 nanoscience & nanotechnologySettore ICAR/09 - Tecnica Delle CostruzioniTensile behaviorlcsh:TA1-2040Compatibility (mechanics)strengtheninglcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringMortar0210 nano-technologybusinesslcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Materials
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Use of fiber-section beam elements for modelling the monotonic flexural response of RC jacketed columns

2021

Abstract The use of reinforced concrete (RC) jacketing is a common technique for retrofitting existing RC columns with poor structural performances. Literature studies highlighted that the relative slip occurring at the interface between the new and the old concrete can affect substantially the flexibility and the strength of the retrofitted member. For this reason, several interface treatments are usually applied, aiming to induce a monolithic behaviour to the column. However, despite the commonness of RC jacketing, a limited number of studies investigated numerical modelling strategies for including these phenomena, especially with reference to the development of numerical models for desi…

BrickRC jacketingInterface (Java)Computer sciencebusiness.industryOpenSees0211 other engineering and technologies020101 civil engineering02 engineering and technologyStructural engineeringInterfaceFinite element method0201 civil engineeringNumerical modelSettore ICAR/09 - Tecnica Delle CostruzioniFlexural strength021105 building & constructionRetrofittingReduction (mathematics)businessReliability (statistics)Beam (structure)Civil and Structural Engineering
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Dynamic behaviour of cracked granite and marble columns retrofitted with steel collars

2014

Marble and heavy stone columns are widely diffused in ancient churches and historical buildings in all the Mediterranean area. Their good mechanical properties allowed carrying great load values, while their bright colours and aesthetical characteristics have been used by a lot of ancient architects to achieve structural solutions with great visual impact. Despite their good compressive strength, marble columns could be damaged from environmental effects (e.g. longterm effects or thermal loads), which could crack the structural members. In this way, the slenderness of the column increases drastically and the presence of an imposed ground shaking could be critical, since the column will be m…

Steel collarRocking motionMarble columnBuilding and ConstructionGeotechnical Engineering and Engineering GeologySafety Risk Reliability and Quality
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Rocking behaviour of multi-block columns subjected to pulse-typeground motion accelerations

2016

Ancient columns, made with a variety of materials such as marble, granite, stone or masonry are an important part of theEuropean cultural heritage. In particular columns of ancient temples in Greece and Sicily which support only the architrave arecharacterized by small axial load values. This feature together with the slenderness typical of these structural members clearlyhighlights as the evaluation of the rocking behaviour is a key aspect of their safety assessment and maintenance. It has to be notedthat the rocking response of rectangular cross-sectional columns modelled as monolithic rigid elements, has been widely investigatedsince the first theoretical study carried out by Housner (19…

rocking multiple blocksFeature (archaeology)business.industryColumnNumerical analysiNumerical analysisEquations of motion020101 civil engineering02 engineering and technologyStructural engineeringBuilding and ConstructionType (model theory)MasonryDiscrete element method0201 civil engineeringAcceleration020303 mechanical engineering & transports0203 mechanical engineeringBlock (programming)RockingOverturningbusinessGeologyEquation of motion
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Numerical Modelling of the Constitutive Behaviour of FRCM Composites through the Use of Truss Elements

2023

The modeling of the mechanical behavior of Fabric Reinforced Cementitious Matrix (FRCM) composites is a difficult task due to the complex mechanisms established at the fibre-matrix and composite-support interface level. Recently, several modeling approaches have been proposed to simulate the mechanical response of FRCM strengthening systems, however a simple and reliable procedure is still missing. In this paper, two simplified numerical models are proposed to simulate the tensile and shear bond behavior of FRCM composites. Both models take advantage of truss and non-linear spring elements to simulate the material components and the interface. The proposed approach enables us to deduce the …

Settore ICAR/09 - Tecnica Delle Costruzionishear bond behaviormasonryGeneral Materials ScienceFRCM masonry modeling shear bond behavior tensile behaviormodelingtensile behaviorFRCMMaterials
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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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Analytical modelling of force transmission in axially loaded RC columns with indirectly loaded jackets

2019

Abstract Concrete and steel jacketing are common strengthening techniques for reinforced concrete (RC) columns subjected to axial loads. In the most of cases the external jacket is made leaving gaps between the strengthening layer and the slabs, avoiding to carry directly a portion of the load. In this way, the external jacket induces a confinement pressure on the inner column, and its beneficial effect is due to the increase of strength and ductility. However, shear stresses develop on the interface between the column and consequently, the external jacket can be considered indirectly loaded. It sustains a portion of the axial load, which depends by the value of the axial shortening, relati…

Materials sciencebusiness.industryLinear elasticityCompression0211 other engineering and technologiesStiffness020101 civil engineeringIndirectly loaded02 engineering and technologyStructural engineeringInterfaceCompression (physics)Finite element methodRetrofit0201 civil engineeringShear (sheet metal)021105 building & constructionmedicineJacketingSlippagemedicine.symptombusinessDuctilityAxial symmetryCivil and Structural EngineeringEngineering Structures
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Analytical stress-strain law of FRP confined masonry in compression: Literature review and design provisions

2017

Abstract The use of Fibre Reinforced Polymer (FRP) wraps has become common in practical applications to retrofit existing columns with poor structural features. Wrapping the member with one or more FRP sheets makes it possible to induce confinement action and enhance strength and ductility. This application has been widely studied and adopted in reinforced concrete members for about twenty years, while its suitability to masonry columns and piers has been investigated during the last decade. The results of several studies were summarized in different design expressions for calculating effective confinement pressure, ultimate compressive stress and strain, and the overall trend of the stress…

Materials scienceConstitutive equation0211 other engineering and technologiesCeramics and Composite02 engineering and technologyIndustrial and Manufacturing EngineeringRetrofit021105 building & constructionMechanics of MaterialComposite materialDuctilityCompression; FRP confinement; Masonry; Retrofit; Ceramics and Composites; Mechanics of Materials; Mechanical Engineering; Industrial and Manufacturing EngineeringMasonrybusiness.industryMechanical EngineeringStress–strain curveCompressionStructural engineeringFibre-reinforced plasticMasonry021001 nanoscience & nanotechnologyCompression (physics)Strength of materialsSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthMechanics of MaterialsCeramics and CompositesFRP confinement0210 nano-technologybusiness
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A closed form procedure for the design of longitudinal bars in RC sections subjected to axial load and biaxial bending

2020

This paper presents an analytical procedure for the design of the longitudinal reinforcement in reinforced concrete rectangular sections subjected to axial load and biaxial bending moment. The integration of the equilibrium equations is performed in analytical form for the case of uniaxial moment, including the effect of the reinforcement placed on the sides of the section and adopting code-based constitutive laws for steel and concrete. The strength domain of the section is calculated in closed form for the case of only main steel and in simplified form when including the reinforcement disposed on the side. Additionally, a formulation is proposed for the interaction domain of the two compo…

Settore ICAR/09 - Tecnica Delle CostruzioniMaterials sciencebiaxial bending design ductility RC columns strength domainMechanics of Materialsbusiness.industryAxial loadGeneral Materials ScienceBuilding and ConstructionBendingStructural engineeringbusinessCivil and Structural EngineeringStructural Concrete
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Concrete softening effects on the axial capacity of RC jacketed circular columns

2016

Abstract Among the different strengthening techniques to repair RC structures, reinforced concrete (RC) jacketing is one of the most commonly adopted, especially for columns. Its wide application is due to its easy application and relatively reduced cost with respect to other methods (e.g. FRP wrapping, Shape Memory Alloy active confinement). The target of RC jacketing is to increase axial, flexural capacity and ductility of weak existing members by means of two main effects: confinement action provided by the jacket and composite action between external jacket and inner concrete. Different theoretical studies have been carried out to calculate the strength enhancement due to confinement ac…

EngineeringRC jacketingbusiness.industryConstitutive equationLinear elasticity0211 other engineering and technologies020101 civil engineering02 engineering and technologyStructural engineeringShape-memory alloyFibre-reinforced plastic0201 civil engineeringRetrofitSofteningSettore ICAR/09 - Tecnica Delle CostruzioniFlexural strength021105 building & constructionUltimate tensile strengthComposite materialbusinessDuctilityPlane stressConfinementCivil and Structural Engineering
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Experimental application of digital image correlation for the tensile characterization of basalt FRCM composites

2021

Abstract Composites made with inorganic matrix, namely fabric reinforced cementitious mortar (FRCM) composites are becoming widespread as strengthening materials for existing masonry structures. These composites are made of a dry grid of fibres embedded in an inorganic matrix. FRCMs can be considered a valid alternative to traditional organic composites such as fibre reinforced polymers (FRPs) because of their better compatibility with the masonry support. This work presents an experimental study for the tensile characterization of a basalt fabric reinforced cementitious mortar (BFRCM) composite. Tensile tests were carried out on coupons reinforced with one, two or three layers of grid to i…

Digital image correlationMaterials scienceDigital image correlation (DIC)Composite number0211 other engineering and technologies020101 civil engineering02 engineering and technologyBendingFRCMTensile tests0201 civil engineering021105 building & constructionUltimate tensile strengthGeneral Materials ScienceComposite materialCivil and Structural Engineeringbusiness.industryBuilding and ConstructionMasonryCrack patternCharacterization (materials science)Settore ICAR/09 - Tecnica Delle CostruzioniReinforcement ratioBasalt grid Crack pattern Digital image correlation (DIC) FRCM Reinforcement ratio Tensile testsCementitiousMortarbusinessBasalt grid
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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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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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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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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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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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Development of a software package with GUI for the evaluation of monolithicity factors of RC jacketed columns

2023

The design of reinforced concrete (RC) jacketing for retrofitting substandard columns is a common practice when approaching the structural rehabilitation design of existing structures. In this framework, international technical codes suggest to assume the hypothesis of monolithic section and finally affecting the deduced performances by some empirical factors, known in the literature as monolithicity factors. The assessment of these coefficients is a difficult task, and only some rough assumptions can be found in the modern codes. This paper presents the development of a software package able to perform the static non-linear analysis of RC jacketed columns and evaluating the actual value of…

Settore ICAR/09 - Tecnica Delle CostruzioniRC jacketingArchitectureMonolithicity factorsGraphical User Interface Monolithicity factors RC jacketingGraphical User InterfaceBuilding and ConstructionSafety Risk Reliability and QualityCivil and Structural EngineeringStructures
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Local Buckling of reinforcing steel bars in RC members under compression forces

2018

Buckling of longitudinal bars is a brittle failure mechanism, often recorded in reinforced concrete (RC) structures after an earthquake. Studies in the literature highlights that it often occurs when steel is in the post elastic range, by inducing a modification of the engineered stress-strain law of steel in compression. A proper evaluation of this effect is of fundamental importance for correctly evaluating capacity and ductility of structures. Significant errors can be obtained in terms of ultimate bending moment and curvature ductility of an RC section if these effects are not accounted, as well as incorrect evaluations are achieved by non-linear static analyses. This paper presents a n…

Finite elementBucklingSteelComputational MechanicsStress-strain lawReinforcement
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