Search results for "crack initiation"

showing 4 items of 4 documents

Strain field measurements in polycrystalline tantalum

2013

National audience; The unterstanding and the local quantification of surface strain distribution is a key element of crack initiation analysis. Experiments following up the local strain distribution have been carried out, based on the construction of several hundred micrometers wide strain maps ; and using gratings of regularly spaced micrometric markers deposited by lithography. The strain maps are computed using a specific routine, allowing to quantify the local strain distribution at the grain scale for different interrupted tensile loads.

Lithography[ SPI.MAT ] Engineering Sciences [physics]/MaterialsStrain Distribution[SPI.MAT] Engineering Sciences [physics]/MaterialsCrack Initiation[SPI.MAT]Engineering Sciences [physics]/Materials
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Fatigue Design of Cruciform Joints including V-notch Effect at the Weld Toe

2014

Abstract The present paper proposes a new and more accurate fatigue life prediction model for fillet welded joints in steel subjected to constant amplitude loading. With the traditional fracture mechanics approach, the greatest difficulty when computing the fatigue life of a welded detail is to determine the initial crack size a0. The classical way to determine the stress intensity factor K (SIF) is by using the following formula Where σ is the applied stress, a is the crack size and g(a/T) the geometrical correction factor which has been determined by Gurney function or similar solutions. This approach is not accurate for short crack because of the singular V-notch behaviour close to the c…

J-integralStrain energy release rateMaterials sciencecrack initiationbusiness.industryCrack tip opening displacementFracture mechanicsGeneral MedicineStructural engineeringCrack growth resistance curveToeSteel welded jointsCrack closureenergy release ratebusinessshort crackfatigue designStress intensity factorStress concentrationProcedia Materials Science
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Proposal for a more accurate physically based S–N curve for welded steel joints

2009

Abstract The present article proposes a more accurate S–N curve in the high cycle fatigue regime for fillet welded joints in steel subjected to constant amplitude loading. The S–N curves are constructed based on a physical model of the fatigue damage evolution. It is a two phase model where the crack initiation is treated by a local weld notch approach. The subsequent growth is based on the concept of the stress intensity factor at the crack front by applying the Paris law. According to the proposed model, the time to crack initiation becomes the dominant part of the fatigue life at low stress range levels. The resulting S–N curves are non-linear for a log–log scale and they do not predict …

Engineeringbusiness.industryMechanical EngineeringFatigue testingFracture mechanicsWeldingStructural engineeringFatigue limitIndustrial and Manufacturing Engineeringlaw.inventionAmplitudeMechanics of MaterialslawModeling and SimulationCrack initiationGeneral Materials ScienceFillet (mechanics)businessStress intensity factorInternational Journal of Fatigue
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The effect of defect location on coating fragmentation patterns under biaxial tension

2005

Fragmentation of a coating possessing orthogonal preferential crack propagation directions is modeled for equibiaxial tensile loading. Two plausible cracking scenarios are compared, caused by flaws randomly distributed over the area of the coating or along the coating fragment edges. The two fragmentation scenarios considered are shown to yield qualitatively different fragment patterns.

strength distributionMaterials scienceFissureMechanical EngineeringAerospace EngineeringOcean EngineeringStatistical and Nonlinear PhysicsFracture mechanicscoatingsengineering.materialCondensed Matter PhysicsCrackingmedicine.anatomical_structureNuclear Energy and EngineeringCoatingFragmentation (mass spectrometry)Biaxial tensionfragmentationUltimate tensile strengthCrack initiationengineeringmedicineForensic engineeringComposite materialCivil and Structural Engineering
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