Search results for " reinforced concrete"

showing 10 items of 42 documents

Pumice concrete for structural wall panels

2003

Some properties of lightweight pumice stone concrete (LWPSC) are discussed, on account of a possible structural use of this material. Then the results of an experimental investigation are described, in order to show that pumice can really be considered an alternative to common artificial lightweight aggregates, taking into account the performance pointed out by loading tests carried out on structural systems made of LWPSC. Three different kinds of reinforced wall panels were made using LWPSC, lightweight expanded clay concrete and normal weight concrete; then their structural responses under horizontal cyclic and constant vertical forces were compared, above all with reference to lateral st…

Materials scienceAggregate (composite)business.industryStructural systemPumice aggregateStructural engineeringStructural lightweight concreteStructural elementSettore ICAR/09 - Tecnica Delle CostruzioniCrackingStructural loadPumiceShear wallGeotechnical engineeringSquat reinforced concrete wallbusinessMaterial propertiesCivil and Structural EngineeringEngineering Structures
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Effectiveness of stirrups and steel fibres as shear reinforcement

2004

This paper presents the results of experimental tests carried out on rectangular simply supported beams made of hooked steel fibre reinforced concrete with and without stirrups, subjected to two-point symmetrically placed vertical loads. The tests, carried out with controlled displacements, allow one to record complete load-deflection curves by means of which it is possible to deduce information on dissipative capacity and ductile behaviour up to failure. Depending on the amount of transverse reinforcement, volume fraction of fibres added in the mix and shear span, the collapse mechanism is due to predominant shear or flexure, thus showing the influence of the aforementioned structural para…

Materials scienceTestbusiness.industryBuilding and ConstructionStructural engineeringSpan (engineering)Ultimate strengthIndustrial and Manufacturing EngineeringShear (sheet metal)Steel fibreFibre reinforced concrete beamSettore ICAR/09 - Tecnica Delle CostruzioniBrittlenessFlexural strengthVolume fractionDissipative systemShear strengthCeramics and CompositesGeneral Materials ScienceComposite materialbusinessStirrupBeam (structure)
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Simple Plastic Model for Shear Critical SFRC Beams

2010

A simple physical model, for prediction of ultimate shear strength of steel fiber reinforced concrete (SFRC) beams is developed on the basis of a plastic approach originally proposed for reinforced concrete (RC) beams without stirrups. It is founded on the hypothesis that cracks can be transformed into yield lines, and thus is know as Crack Sliding Model (CSM). First, the CSM is improved in order to take into account the shear strength increase for deep beams, due to the arch effect. Then, the effectiveness factors for fibrous concrete under biaxial stresses are evaluated, taking into account the post-cracking tensile strength of SFRC and its ability to control slippage along shear cracks. …

Materials sciencebusiness.industryMechanical EngineeringBuilding and ConstructionStructural engineeringFiber-reinforced concreteReinforced concreteSteel fibre reinforced concrete plastic theory design shear critical beamSteel fiber-reinforced concrete; Plastic theory; Shear critical beamslaw.inventionSettore ICAR/09 - Tecnica Delle CostruzioniCrackingShear (geology)Mechanics of MaterialslawUltimate tensile strengthShear strengthGeneral Materials ScienceGeotechnical engineeringSlippageArchbusinessCivil and Structural EngineeringJournal of Structural Engineering
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Steel fiber-reinforced concrete corbels:experimental behavior and shear strength prediction

2007

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

Materials sciencebusiness.industrycorbels reinforced concrete shear strength steel fibers stirrupsBuilding and ConstructionStructural engineeringFiber-reinforced concretelaw.inventionTypes of concreteCrackingFlexural strengthCorbellawDeflection (engineering)Reinforced solidBearing capacityComposite materialbusinessCivil and Structural Engineering
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Fibrous reinforced concrete beams in flexure: Experimental investigation, analytical modelling and design considerations

2008

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

Materials sciencecyclic loadbusiness.industryThree point flexural testStructural engineeringFiber-reinforced concreteCompression (physics)short beamlaw.inventionShear (sheet metal)Settore ICAR/09 - Tecnica Delle Costruzionishear-moment interactionFlexural strengthfiber reinforced concretesteel fiberReinforced solidlawShear strengthBearing capacityComposite materialbusinessCivil and Structural EngineeringEngineering Structures
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Modelling of the fracture toughness anisotropy in fiber reinforced concrete

2015

Steel fiber reinforced concrete is potentially very promising material with unique properties, which currently is widely used in some applications, such as floors and concrete pavements. However, lack of robust and reliable models of fiber reinforced concrete fracture limits its application as structural material. In this work a numerical model is proposed for predicting the crack growth in fiber reinforced concrete. The mixing of the steel fibers with the concrete usually creates nonuniform fibers distribution with more fibers oriented in horizontal direction, than in vertical. Simple numerical models of fiber reinforced concrete require a priori knowledge of the crack growth direction in …

Materials sciencelcsh:Mechanical engineering and machinerylcsh:TA630-695Fiber-reinforced concreteFiber reinforced concretelaw.inventionFracture toughnessCohesive elementslawmedicinelcsh:TJ1-1570FiberComposite materialStructural materialbusiness.industryMechanical EngineeringStiffnessFracture mechanicsStructural engineeringlcsh:Structural engineering (General)Cohesive zone modelFractureMechanics of MaterialsReinforced solidmedicine.symptombusinessFrattura ed Integrità Strutturale
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Ultimate Shear of RC Beams with Corroded Stirrups and Strengthened with FRP

2019

Transverse reinforcement plays a key role in the response behavior of reinforced concrete beams. Therefore, corrosion of steel stirrups may change the failure mode of elements from bending to shear, leading to a brittle and catastrophic crisis. It is important to strengthen reinforced concrete beams with corroded stirrups to enhance the shear resistance. This paper presents a formulation, based on the modified compression field theory, to estimate the ultimate shear of reinforced concrete beams strengthened with FRP, because of stirrup corrosion. The detrimental effect of corrosion on steel stirrup yield strength was taken into account by introducing an empirical decay law. The effective st…

Modified Compression Field TheoryBeams; Corrosion; FRP; MCFT; Parametric analysis; Reinforced concrete; Shear; Stirrups; Civil and Structural Engineering; Building and ConstructionMaterials science0211 other engineering and technologies020101 civil engineering02 engineering and technologyshearstirrupslcsh:TH1-97450201 civil engineeringCorrosioncorrosion; stirrups; shear; FRP; MCFT; reinforced concrete; beams; parametric analysisBrittleness021105 building & constructionArchitectureMCFTCivil and Structural EngineeringEnvironmental Science (all)corrosion2300Parametric analysibusiness.industryBeamStructural engineeringBuilding and ConstructionFibre-reinforced plasticBeams; Corrosion; FRP; MCFT; Parametric analysis; Reinforced concrete; Shear; Stirrups; Architecture; 2300; Environmental Science (all); Civil and Structural Engineering; Building and ConstructionReinforced concretereinforced concreteStirrupShear (geology)parametric analysisbeamsbusinessFailure mode and effects analysisFRPlcsh:Building constructionBuildings; Volume 9; Issue 2; Pages: 34
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Performance of a historical cantilever reinforced concrete bridge with half-joint degradation

2022

The lack of maintenance of roadway concrete bridges built from the Second World War until the 70 s of the 20th century has led in recent years to an ever-increasing request for safety assessments. When bridge performance in terms of Serviceability Limit State (SLS) and Ultimate Limit State (ULS) has to be evaluated, in-situ visual inspections and load tests for safety and maintenance assessment have to be coupled with structural analysis. In order to identify a sound bridge structural model and to assess the actual conservation state, more refined models than those usually considered for section and reinforcement design should be used to reproduce the results of load tests and perform globa…

PrestressingHalf-jointStrut-and-tie modelsBuilding and ConstructionServiceabilityCantilever bridgeStructural assessmentCorrosionReinforced concreteGerber saddleCantilever bridge; Corrosion; Gerber saddle; Half-joint; Prestressing; Reinforced concrete; Serviceability; Structural assessment; Strut-and-tie modelsArchitectureSafety Risk Reliability and QualityCivil and Structural EngineeringStructures
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Parameters affecting the fundamental period of infilled RC frame structures

2015

Despite the fact that the fundamental period appears to be one of the most critical parameters for the seismic design of structures according to the modal superposition method, the so far available in the literature proposals for its estimation are often conflicting with each other making their use uncertain. Furthermore, the majority of these proposals do not take into account the presence of infills walls into the structure despite the fact that infill walls increase the stiffness and mass of structure leading to significant changes in the fundamental period numerical value. Toward this end, this paper presents a detailed and in-depth analytical investigation on the parameters that affect…

Reinforced concrete buildingEngineeringInfilled framesReinforced concrete buildingsInfill wallbusiness.industryModal analysisModal analysisStructure (category theory)StiffnessStructural engineeringMasonrySpan (engineering)Modal analysiSeismic analysisFundamental periodInfillmedicineGeotechnical engineeringmedicine.symptombusinessFundamental period; Infilled frames; Masonry; Modal analysis; Reinforced concrete buildings; Civil and Structural EngineeringMasonryInfilled frameCivil and Structural Engineering
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Stress-strain models for normal and high strength confined concrete: Test and comparison of literature models reliability in reproducing experimental…

2017

SUMMARY: The adoption of proper constitutive laws for confined concrete is basic for seismic assessment of new and existing reinforced concrete civil structures. The deformation capacity of reinforced concrete (RC) columns subjected to axially centred and eccentric loads depends on the effectiveness confinement action. A proper assignment of the stressstrainlaws for concrete allows obtaining an adequate definition of the ductility of the crosssections and correctly identifying mechanical nonlinearities in computational models.Several studies concerning the behaviour of confined concrete have been carried out, highlighting the role of different geometrical and mechanical parameters to the ov…

RiskHigh strength concreteReinforced concrete (RC)Concrete constitutive modelsReliability and QualityConcrete constitutive models; Confined concrete; High strength concrete; Normal strength concrete; Reinforced concrete (RC); Building and Construction; Safety Risk Reliability and Quality; Geotechnical Engineering and Engineering GeologyHigh performance concrete Reinforced concrete Reliability Stress-strain curvesBuilding and ConstructionSafetyGeotechnical Engineering and Engineering GeologyConfined concreteNormal strength concrete
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