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1、JournaloftheEuropeanCeramicSociety22(2002)2697–2707www.elsevier.com/locate/jeurceramsocEffectofmicrostructureonthefracturebehaviorofbiomorphoussiliconcarbideceramicsPeterGreila,*,EvelinaVoglia,TobiasFeya,AlexanderBezolda,NadjaPopovskab,HelmutGerharda,HeinoSiebe
2、raaDepartmentofMaterialsScience(GlassandCeramics),UniversityofErlangen-Nuernberg,Martensstr.5,D-91058Erlangen,GermanybDepartmentofChemicalEngineering,UniversityofErlangen-Nuernberg,Egerlandstr.3,D-91058Erlangen,GermanyReceived7October2001;receivedinrevisedform
3、22February2002;accepted8March2002AbstractHighlyporouscellularsiliconcarbidewaspreparedfromnativepinewoodtissuebyvaporinfiltrationofSi,SiO,andCH3SiCl3intothecarbonizedtemplate.b-SiCatthebiocarbonsurfacefinallyresultedinacompleteconversionofthetemplateintoacellula
4、rsiliconcarbidematerial.Duetothedifferentreactionmechanisms,differentstrutmicrostructureswereobtained.ThestrengthofthebiomorphousSiCwasmeasuredunderbiaxialtensileloadingconditionsperpendiculartothecellelongation(in-planeloading).Anon-catastrophicstress-strainbeh
5、aviorwasobservedintheSiandCH3SiCl3derivedmaterialswhichshowedahighskeletonden-sityof53g/cm3.Extendendcellwallfracture(peeling)wasobservedintheSiderivedmaterialwheretheoriginalintercellularlamellawasretainedintheceramicmaterial.FEcalculationsofthestressdistribu
6、tioninarepresentativestructuremodelshowedsignificantlylowerlevelsoftensilestressinrectangularporearrays(earlywoodtissue)comparedtoellipsoidalpores(latewoodtissue).#2002ElsevierScienceLtd.Allrightsreserved.Keywords:BiomorphousSiCceramics;Microstructureandstrengt
7、h1.Introductionsionsfromnanometers(cellulosemicrofibrils)tothecentimeterlevel(woodtissue).2TheinherentvascularWoodsarecellularsolids,composedofmixedbio-transportationsystemofwoodwhichconsistsoflargepolymers(cellulosefibers,ligninandhemicelluloseasporechannels(ve
8、ssels)withadiameterof30–45mminmatrixmaterial),andwitharelativedensityrangingsoftwoodsand10–400mminhardwoodsprovidesfromlessthan0.05toalmost1.Extendedstructurerapidaccessforgaseouso