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β→α Transformation of γ-Phase in Sintered WC-Co Cemented Carbides 被引量:5
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作者 Shourong LIU (Tianjin Institute of Hard Alloy Tianjin 300222, China)Yi LIU (Shandong University Jinan 250100, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1996年第5期398-400,共3页
Varying the morphology and the structure of γ-phase (Co-base Co-W-C solid solution) by means of altering the cooling rate and the preparing method of liquid sintered WC-Co cemented carbides samples, the mechanism of ... Varying the morphology and the structure of γ-phase (Co-base Co-W-C solid solution) by means of altering the cooling rate and the preparing method of liquid sintered WC-Co cemented carbides samples, the mechanism of fcc→hcp transformation of γ-phase in WC-Co alloy has been explored. The results show that, the cooling rate is an important affecting factor on fcc→hcp transformation of γ-phase and the fcc→hcp transformation is mainly a diffusive type when cooling WC-Co samples above room temperature 展开更多
关键词 WC CO phase in Sintered WC-Co Cemented carbides Transformation of
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Fabrication of solid-phase-sintered Si C-based composites with short carbon fibers 被引量:1
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作者 Xian-hui Li Qing-zhi Yan +2 位作者 Yong-jun Han Mei-qi Cao Chang-chun Ge 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2014年第11期1141-1145,共5页
Solid-phase-sintered Si C-based composites with short carbon fibers(Csf/SSi C) in concentrations ranging from 0 to 10wt% were prepared by pressureless sintering at 2100°C. The phase composition, microstructure,... Solid-phase-sintered Si C-based composites with short carbon fibers(Csf/SSi C) in concentrations ranging from 0 to 10wt% were prepared by pressureless sintering at 2100°C. The phase composition, microstructure, density, and flexural strength of the composites with different Csf contents were investigated. SEM micrographs showed that the Csf distributed in the SSi C matrix homogeneously with some gaps at the fiber/matrix interfaces. The densities of the composites decreased with increasing Csf content. However, the bending strength first increased and then decreased with increasing Csf content, reaching a maximum value of 390 MPa at a Csf content of 5wt%, which was 60 MPa higher than that of SSi C because of the pull-out strengthening mechanism. Notably, Csf was graphitized and damaged during the sintering process because of the high temperature and reaction with boron derived from the sintering additive B4C; this graphitization degraded the fiber strengthening effect. 展开更多
关键词 fiber-reinforced composites silicon carbide carbon fibers solid phase sintering microstructure
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STUDY OF THE MECHANISM TO IMPROVE PERFORMANCE OF CARBIDE BLADE BY LASER
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作者 Xu Zhengming Zhang Shichang ( Tianjin University) Zhang Baozheng(Nankai University ) 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 1996年第3期216-220,233,共1页
The expermental research on the change of chemical composition and structure of car- bide blade surface treated by laser is carried out, and the relation between their structure and per- formance is studied. The resu... The expermental research on the change of chemical composition and structure of car- bide blade surface treated by laser is carried out, and the relation between their structure and per- formance is studied. The result shows that the element Co exists as a simple substance phase in prim- itive sintering structure. while in new melt-sintering structure it forms a fine alloy phase with origi- nal carbide, and this is the main factor which improves the performance of carbide blade treated by laser. 展开更多
关键词 Laser carbide blade Simple substance phase Alloy phase
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