QUANTITATIVE METALLOGRAPHY FOR THE GEOMETRY OF ROUGH SURFACES IN THREE DIMENSIONS

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摘要 Thankstothedevelopmentofmetallographicandopticaltechniques,thequantitativecharacterisationofthegeometryofroughsurfaceshasbecomeveryusefulinpracticalapplications.Today,numerousdifferentmethodsareavailablefordeterminingthreedimensionalco-ordinates,linearprofilesorheightcontourstoareasonabledegreeofaccuracyandwithinanacceptabletimeframe,andforevaluatingsuchdata.Inthisarticle,theuseofsuchtechniquesinthefieldoffractographyisdemonstratedwithreferencetoanumberofcasestudiesdealtwithbytheauthor'sownteam,supplementedbyseveralexamplesfromotherresearchgroups.Thefollowingexamplesarediscussed:Inaceramicmaterialdifferentfracturepathswerediscernedcorrespondingtodifferenttesttemperatures.Inhardmetals,itwasshownthathoththesub-criticalandsupercriticalpropagationofcracksoccurreddalongthesamepath.Frommeasurementsoftheproportionoffracturesurfacesoccurringalongandinthevariousdifferentphasespresentandthedepthofdimplesoccurringduringductilefractureinthebinderphase,thefractureenergyofEC-Co-hardalloyswithdifferentcobaltcontentsandtungstencarbidegrainsizeswascalculatedandfoundtobeinexcellentagreementwithactualexperimentalresults.Inthecaseofceramicfibre-aluminiummatrixcpmpositematerials,bymeasuringthebeightdistributionofthepositionsoffractureofthefibres,theloadtransferintheregionofthefracturesurfacewasdetermined.withthisinformationamodelwasdevelopedwhichexplainsthesignificantvariationinstrengthofthesematerialsFinally,amodelwasdevelopedformetallicmaterialsusingwhich,fromtheexperimentallydetermineddistributionsoftheheightandinclinationofthefracturefacets,thestressintensityofroughnessinducedcrackclosingcouldheaccuratelypredicted.
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出版日期 2002年02月12日(中国期刊网平台首次上网日期,不代表论文的发表时间)