Search results for "Steel"

showing 10 items of 338 documents

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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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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Influence of secondary torsion on curved steel girder bridges with box and I-girder cross-sections

2015

Steel curved girder bridges are largely used today in motorways and railways. They are often composed of thin-walled crosssections, entirely made of steel or with an upper concrete slab. The deck may have I-girders or box cross-sections: in any case curved girders are subjected to twisting moment, associated with bending, even for dead loads. Moreover, in thin-walled sections the influence of non-uniform torsion becomes sizable with respect to Saint Venant torsion, modifying the state of tangential stresses in the section and introducing axial stresses due to warping being prevented. Open sections of I-girder bridges are especially subject to these phenomena and warping can be significant n…

EngineeringHamiltonian Structural Analysisbusiness.industrybox sectionnon-uniform torsionBox girderTorsion (mechanics)warpingStructural engineeringCurvatureFinite element methodDeckcurved bridgeI-girderSettore ICAR/09 - Tecnica Delle CostruzioniStructural loadcurved bridge steel non-uniform torsion I-girder box section Hamiltonian Structural Analysis transfer matricesGirdertransfer matricesPhysics::Accelerator PhysicssteelImage warpingbusinessCivil and Structural Engineering
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Ground-Fault Current Transfer at the Transition Station of a Combined Overhead-Cable Line. A Parametric Analysis

2007

When a substation is fed by a combined overhead-cable transmission line, a significant part of the ground fault current flows through the grounded cable sheaths and discharges into the earth at the transition station, where cables are connected to the overhead line. If the transition station is a dead-end steel pole structure, the local ground electrode, small and of high resistance, could be inadequate to maintain the ground potential rise within safety limits in case of a fault to ground at the receiving end substation. Based on a circuit model approach, the paper presents a parametric analysis of the fault current distribution between the faulted substation and the transition station, ta…

EngineeringParametric analysisbusiness.industryElectrical engineeringFault (power engineering)Line (electrical engineering)law.inventionSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaTransmission linelawTransfer (computing)Overhead cableSubstations Fault currents Circuit faults Power overhead lines Power cables Cable shielding Satellite ground stations Steel Electrodes SafetyCurrent (fluid)businessComputer Science::Operating SystemsOverhead line
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Steel based retrofitting interventions for existing masonry walls: a comparative numerical investigation

2021

Masonry buildings constitute a significant portion of the architectural heritage all over the world, also in regions affected by a high seismic hazard. Since this constructional material is character-ized by lack of tensile strength, as well as small deformation capacity, masonry structures could result hugely damaged if shaken by seismic forces. In order to avoid collapses and reduce struc-tural damage, innovative retrofitting interventions are necessary to improve the seismic behavior of masonry structures. In this context, steel-based techniques could be considered among the most suitable solutions. In fact, by using such a high-performant material, additional strength and ductility may …

EngineeringSettore ICAR/09 - Tecnica Delle CostruzioniSteel-based Retrofittingbusiness.industryFEM analysesExisting masonry structuresForensic engineeringRetrofittingSeismic capacity improvementGeneral MedicineMasonrybusinessSteel-based Retrofitting Seismic capacity improvement Existing masonry structures FEM analyses.
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Numerical prediction of the shear response of semi-prefabricated steel-concrete trussed beams

2016

Abstract In this study, the shear behavior of hybrid steel-trussed-concrete beams (HSTCBs) realized with prefabricated steel trusses embedded into a concrete core cast in situ, is investigated by means of Finite Element (FE) numerical simulations. HSTCBs do not behave as classical RC elements nor composite beams. Up to now, there are not specific design criteria in the building codes and the calculation of this type of beams is conducted by means of design-by-testing procedures. The knowledge of the material behavior as well as the understanding of the interaction between materials in contact is the first requirement for the definition of proper design procedures and calculation methods for…

EngineeringWork (thermodynamics)0211 other engineering and technologiesTruss020101 civil engineering02 engineering and technologyBendingConcrete damaged plasticity model0201 civil engineering021105 building & constructionGeneral Materials ScienceHybrid steel trussed-concrete beamShear behaviorVariable (mathematics)Civil and Structural EngineeringComputer simulationbusiness.industryCohesive steel-concrete interface; Concrete damaged plasticity model; Finite element model; Hybrid steel trussed-concrete beams; Shear behavior; Civil and Structural Engineering; Building and Construction; Materials Science (all)Structural engineeringBuilding and ConstructionFinite element methodShear (sheet metal)Settore ICAR/09 - Tecnica Delle CostruzioniHybrid steel trussed-concrete beamsCohesive steel-concrete interfaceMaterials Science (all)businessBeam (structure)Finite element model
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Effects of corrosion on a steel bowstring bridge in marine environment: A case-study of assessment and retrofit

2021

The case-study of a steel bowstring bridge set in a marine environment and highly damaged by corrosion is presented. The bridge was built in 2004 and was repainted for corrosion protection in 2010. Despite the recent construction and the maintenance interventions, many structural elements like hangers are highly damaged by corrosion with decreasing performance in terms of serviceability and ultimate limit states. A deep investigation was carried out in order to assess the bridge and to establish the necessary retrofit actions to be carried out in the near future. In-situ tests reveal the reduced performance of the original steel in terms of strength and corrosion protection, together with t…

Engineeringbusiness.industryBowstring020101 civil engineering02 engineering and technologyBuilding and Construction021001 nanoscience & nanotechnologyBridge (interpersonal)0201 civil engineeringCorrosionTruss bridgeForensic engineeringArch tie bowstring bridge corrosion steel bridge hangersRetrofitting0210 nano-technologybusinessBridge Structures
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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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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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Generalization of Shear Truss Model to the Case of SFRC Beams with Stirrups

2012

A theoretical model for shear strength evaluation of fibrous concrete beams reinforced with stirrups is proposed. The formulation is founded on the theory of plasticity and the stress field concepts, generalizing a known plastic model for calculating the bearing capacity of reinforced concrete beams, to the case of fibrous concrete. The beneficial effect of steel fibres is estimated taking into account the residual tensile strength of fibrous concrete, by modifying an analytical constitutive law which presents a plastic plateau as a post-peak branch. Around fifty results of experimental tests carried out on steel fibrous concrete beams available in the literature were collected, and a compa…

Engineeringbusiness.industryeurocode 2Constitutive equationdesign.Computational MechanicsTrussStructural engineeringPlasticityshearsteel fibre reinforced concreteStirrupStress fieldSettore ICAR/09 - Tecnica Delle Costruzionistirrup designeurocode 2; shear; steel fibre reinforced concrete; stirrup designstirrupReinforced solidUltimate tensile strengthGeotechnical engineeringBearing capacitybusiness
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