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Microstructures and properties of WC-20Co-1Y_2O_3 cemented carbide by hot-press and liquid phase sintering
作者姓名:张立  陈述  W.D.Schubert  黄伯云
作者单位:State Key Laboratory for Powder Metallurgy,Central South University,Changsha Mining and Metallurgy Research Institute,Institute of Chemical Technologies and Analytics,Vienna University of Technology,State Key Laboratory for Powder Metallurgy,Central South University Changsha 410083,China,Changsha 410012,China,Getreidemarkt,Changsha 410083,China
基金项目:ProjectsupportedbytheFoundationofChinaScholarshipCounci
摘    要:1 INTRODUCTIONInRef .1],averyinterestingandinexplicablefindingwasreportedthataspecialwhisker likeWCgrainstructure ,mostintherangeof 10 0 2 0 0nmindiameterand 1 2mminlength ,wasformedinWC 2 0Co 1Y2 O3cementedcarbidepreparedbyhot pressbelowtheeutectictemperature .ItwasmentionedinthepaperthatWCpowderwithFisherSubsiereSizer(FSSS)of 1μm ,ultrafineCopowder ,andY2 O3powderof 1μmwereusedastherawmaterialsofWC 8Cocementedcarbide .However ,whetherthesamerawmaterialswereusedinWC 2 0Co …


Microstructures and properties of WC-20Co-1Y2O3 cemented carbide by hot-press and liquid phase sintering
W.D.Schubert.Microstructures and properties of WC-20Co-1Y_2O_3 cemented carbide by hot-press and liquid phase sintering[J].Journal of Central South University of Technology,2004,11(2).
Authors:WDSchubert
Abstract:Ultrafine tungsten carbide and fine cobalt as well as nano yttrium oxide powders were used as the raw materials. The effects of hot-press below the eutectic temperature and conventional liquid phase sintering on the structures and properties of WC-20Co-1Y2O3 cemented carbide were studied. It is shown that hot-pressed alloy has the character of isotropic properties and microstructure with homogeneous and ultrafine WC grains. However, the ultrafine and fully-densified structure is developed at the cost of the presence of large amount of cobalt-lake (unevenly distributed binder phase), and thus lower strength. Yttrium oxide in the alloy cannot play the role of grain growth inhibitor fully when cemented carbide with high content of cobalt and ultrafine raw materials is sintered at high liquid phase sintering temperature. Peculiar platelet-enhanced bi-model structure is formed in WC-20Co-1Y2O3 cemented carbide by conventional liquid phase sintering, which points out that yttrium oxide in the alloy facilitates the formation of plate-like WC grain.
Keywords:cemented carbide  rare earth  plate-like WC grain  bi-model structure
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