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Influences of Carbon Content on the Properties and Microstructure of Ultrafine WC-10Co Cemented Carbide

Influences of Carbon Content on the Properties and Microstructure of Ultrafine WC-10Co Cemented Carbide
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摘要 WC-10Co nanocrystalline composite powders prepared by spray pyrogenation-continuous reduction and carburization technology were consolidated by vacuum sintering plus hot isostatic pressing (HIP). Influences of carbon content on properties and microstructure of ultrafine WC-10Co cemented carbide were investigated. The results show that the relative density of the ultrafine WC-10Co cemented carbides can reach 99.72%, and the transverse rupture strength (TRS) was higher than 3 890 MPa, Rockwell A hardness (HRA) was higher than 92.5, the average grain size was less than 460 nm, when carbon content in nanocrystalline composite powder was 5.54wt% and the ball-milled time was 48 hours, ultrafine WC-10Co cemented carbide with excellent properties and homogeneous microstructure was obtained. WC-10Co nanocrystalline composite powders prepared by spray pyrogenation-continuous reduction and carburization technology were consolidated by vacuum sintering plus hot isostatic pressing (HIP). Influences of carbon content on properties and microstructure of ultrafine WC-10Co cemented carbide were investigated. The results show that the relative density of the ultrafine WC-10Co cemented carbides can reach 99.72%, and the transverse rupture strength (TRS) was higher than 3 890 MPa, Rockwell A hardness (HRA) was higher than 92.5, the average grain size was less than 460 nm, when carbon content in nanocrystalline composite powder was 5.54wt% and the ball-milled time was 48 hours, ultrafine WC-10Co cemented carbide with excellent properties and homogeneous microstructure was obtained.
作者 史晓亮
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2007年第3期473-477,共5页 武汉理工大学学报(材料科学英文版)
基金 the National Natural Science Foundation of China (No.50502026) the Youth Science Plan for Light of the Morning Sun of Wuhan City(No.200750731270) Key Project for the Science & Technology Research Department,Chinese Ministry of Education (No.105123)
关键词 WC-10Co nanocrystalline composite powder carbon content mechanical properties MICROSTRUCTURE WC-10Co nanocrystalline composite powder carbon content mechanical properties microstructure
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参考文献10

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