Search results for "Compressive strength"

showing 10 items of 111 documents

Microwave sintering of porous Ti–Nb-HA composite with high strength and enhanced bioactivity for implant applications

2020

Abstract In the present study, high order porous Ti–Nb(50-x)-HA(x) (x = 0,10,20 wt %) composites have been fabricated for orthopedic application by using powder metallurgical route consisting temporary space alloying and rapid microwave sintering process. Structural porosity, elastic modulus, compressive strength, corrosion resistance, and in-vitro bioactivity of as-sintered Ti–Nb-HA composites were studied. Results showed that the reinforcement of the HA assists in the formation of structural porosity, which reduced the elastic modulus. Porous Ti–Nb (with HA 10–20% content) composite possessed 40–60% structural porosity with a pore size of 150–260 μm and exhibited elastic modulus in the ra…

Materials scienceMechanical EngineeringComposite numberMetals and AlloysBiomaterial02 engineering and technologyStress shielding010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesCorrosionCompressive strengthTAMechanics of MaterialsMaterials ChemistryImplantComposite material0210 nano-technologyPorosityElastic modulusJournal of Alloys and Compounds
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Reactive Element (Y,Ce) Effect on Stresses Determined In-Situ during Iron Oxidation at 800°C

2001

In-situ stress determinations by X-ray diffraction have been performed during pure iron oxidation (p(O 2 ) = 2 x 10 -3 Pa, T = 800°C). On yttrium implanted specimens the stress level is close to zero before oxidation. On CeO 2 coated specimens, the initial compressive stress due to surface polishing is not modified by the coating. During oxidation, the in-situ compressive stress value determined in the Fe (1-x) O scale, is not strongly dependent upon the reactive element nature. Nevertheless, the stress evolution during cooling and residual stresses determined after cooling to room temperature are very different. Blank and CeO 2 coated specimens show relatively high compressive stresses whe…

Materials scienceMechanical EngineeringHigh-temperature corrosionMetallurgyPolishingchemistry.chemical_elementYttriumengineering.materialCondensed Matter PhysicsStress (mechanics)Compressive strengthchemistryCoatingMechanics of MaterialsResidual stressUltimate tensile strengthengineeringGeneral Materials ScienceComposite materialMaterials Science Forum
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Simplified Model for Compressive Behavior of Concrete Columns Strengthened by Steel Angles and Strips

2010

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

Materials sciencePhysics::Instrumentation and Detectorsbusiness.industryMechanical EngineeringSTRIPSStructural engineeringPhysics::Classical PhysicsConcrete columns Strengthening Steel angles Strips Ribbons Confinement Strength BucklingSquare (algebra)law.inventionTransverse cross sectionSettore ICAR/09 - Tecnica Delle CostruzioniTransverse planeanglesCompressive strengthBucklingMechanics of MaterialslawstripComposite materialbusinessJournal of Engineering Mechanics
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Mechanical properties of rigid polyurethane foams at room and cryogenic temperatures

2011

Studies on the effect of the foams’ polymeric matrix’ properties on the tension and compression properties of pour rigid polyurethane (PUR) foams, apparent core density 65—70 kg/m3, at 296 and 77 K were carried out. PUR foams were produced by the hand mixing method from polyol systems that comprised polyether, polyester polyols, and chain extenders. To produce PUR foams, crude MDI was used, and Solkane 365 mfc/227 ea was used as a blowing agent. The molecular weight per branching unit (Mc) of the polymeric matrix of PUR foams was varied in the range 300—1150. Cohesion energy densities of the blocks forming the polymeric matrix were calculated. The effect of Mc on the formation of hydrogen …

Materials sciencePolymers and PlasticsSpray foamsYoung's modulusGeneral ChemistryPolyestersymbols.namesakechemistry.chemical_compoundCompressive strengthchemistryBlowing agentUltimate tensile strengthMaterials ChemistrysymbolsComposite materialElastic modulusPolyurethaneJournal of Cellular Plastics
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Scale effect of the tensile strength of flax-fabric-reinforced polymer composites

2011

The development of UD natural fiber composites, considered for application as structural materials, necessitates evaluation of the scale effect of their strength. Alignment of the fibers in flax bast fiber composites can be achieved by employing textile reinforcement, such as yarns and fabrics. Cutting specimens for mechanical tests out of such textile-reinforced composite plates results in a complex non-uniform reinforcement structure at their edges, which may affect the strength of specimens. Scale effect of the tensile strength in the fiber direction of flax-fabric-reinforced composites is studied in the current work. A model accounting for both volume and edge effect of the specimens o…

Materials scienceStructural materialPolymers and PlasticsMechanical EngineeringComposite numberCompressive strengthMechanics of MaterialsUltimate tensile strengthMaterials ChemistryCeramics and CompositesBast fibreFiberComposite materialNatural fiberTensile testingJournal of Reinforced Plastics and Composites
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On the Elastic Behavior of a Cross-Ply Composite Pin-Joint with Clearance Fits

1999

The effect of pin/hole clearance fits on the elastic membranal behavior of a cross-ply fiber glass-reinforced epoxy laminate plate loaded in tension through a pin is examined by a finite element nonlinear contact analysis. No a priori assumption is made on the distribution of the contact pressure on the surface of the hole. Friction effects are not included. The numerical results correlate well with Hertzian theory of contact. It is demonstrated that clearance increases the peak compressive stress in the plate up to a factor of 3000% with respect to the perfect-fit case. Clearance also shifts the location of the peak tensile stress towards the pin/hole contact arc and decreases its magnitu…

Materials scienceTension (physics)Composite numberContact analysis02 engineering and technologyEpoxy021001 nanoscience & nanotechnologyCondensed Matter PhysicsFinite element methodArc (geometry)020303 mechanical engineering & transportsCompressive strength0203 mechanical engineeringvisual_artCeramics and Compositesvisual_art.visual_art_mediumFiberComposite material0210 nano-technologyJournal of Thermoplastic Composite Materials
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The influence of steel fibres on compressive and tensile strength of ultra high performance concrete : A review

2020

Abstract This review paper presents the effects of steel fibre reinforcement regarding the compressive and tensile strength of UHPC. The intention is to give an overview of the research field and supply guidance for future research. Relevant papers were identified through a systematic literature search. An accumulation of the results shows that fibres have potential for improving the tensile strength of UHPC. The effect depends on fibre content, type and hybrid combinations. The effect of fibres on compressive strength seems to be questionable. Variations in test specimen geometry and other factors might also influence the results.

Materials scienceVDP::Teknologi: 500::Bygningsfag: 5300211 other engineering and technologiesSteel fibre020101 civil engineering02 engineering and technologyBuilding and Construction0201 civil engineeringCompressive strength021105 building & constructionUltimate tensile strengthGeneral Materials ScienceUltra high performanceComposite materialReinforcementFibre contentCivil and Structural EngineeringSystematic search
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The effect of wear on the tetragonal-to-monoclinic transformation and the residual stress distribution in zirconia-toughened alumina cutting tools

1998

Abstract Zirconia-toughened alumina cutting tools have been examined after machining an AISI 1040 steel. The Raman spectrum of zirconia and the fluorescence spectrum from alumina have been used to determine the extent of the tetragonal-to-monoclinic (t-m) transformation and the residual stresses in and around the worn-out crater, respectively. Although about 15% vol. m-zirconia is present even in a brand new cutting tool, it was shown that the crater region undergoes the t-m transformation up to 40% vol. In both cases, the transformed zone is concentrated near the surface. The residual stresses in alumina are slightly compressive in the new cutting tool and away from the crater region, but …

Materials scienceZirconia Toughened AluminaAluminaFluorescence spectrometryMineralogyCompressive strengthAlumina Compressive strength Mathematical models Metal cutting Raman spectroscopy Residual stresses Steel Strengthening (metal) Stress concentration Tensile strength Wear of materials ZirconiaTensile strengthResidual stressesMachiningImpact craterResidual stressMaterials ChemistryCubic zirconiaComposite materialStress concentrationMathematical modelsCutting toolSurfaces and InterfacesCondensed Matter PhysicsSurfaces Coatings and FilmsWear of materialsMetal cuttingSteelMechanics of MaterialsRaman spectroscopyStress concentrationZirconiaStrengthening (metal)Wear
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Strength and strain capacities of concrete compression members reinforced with FRP

2003

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

Materials sciencebusiness.industryBuilding and ConstructionStructural engineeringFibre-reinforced plasticOverburden pressureCompression (physics)Strength of materialsSquare (algebra)Transverse planeCompressive strengthGeneral Materials ScienceBearing capacityComposite materialbusinessCement and Concrete Composites
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Overstrength requirements to avoid brittle shear failure in RC slender beams with stirrups

2020

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

Materials sciencebusiness.industryShear forceGeneral EngineeringTruss020101 civil engineeringYoung's modulus02 engineering and technologyStructural engineering0201 civil engineeringsymbols.namesake020303 mechanical engineering & transportsCompressive strengthBrittleness0203 mechanical engineeringShear (geology)Shear strengthsymbolsGeneral Materials SciencebusinessBeam (structure)Engineering Failure Analysis
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