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Effect of VC addition on the microstructure and properties of Ti(C,N)-based nano cermets 被引量:7

Effect of VC addition on the microstructure and properties of Ti(C,N)-based nano cermets
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摘要 In this paper, Ti(C,N)-based nano cermets were prepared by nano particles, and the effect of VC addition on the micmstructure and properties of Ti(C,N)-based nano cermets was investigated. The results showed that there existed black-core grayish-rim strucmre as well as gray-core grayish-rim structure in VC-doped Ti(C,N)-based nano cermets. With the increase of VC addition, the number of gray cores in- creased, the lattice parameter of Ti(C,N) phase increased, the grain size decreased, the hardness and fracture toughness of Ti(C,N)-based nano cermets were enhanced, and nearly full densification could be achieved. However, excessive addition of VC to 1 wt% resulted in slight decrease in hardness and fracture toughness. Some deep dimples were found in the fracture surface of cermets with VC addition, which corresponded to ductile fracture. In this paper, Ti(C,N)-based nano cermets were prepared by nano particles, and the effect of VC addition on the micmstructure and properties of Ti(C,N)-based nano cermets was investigated. The results showed that there existed black-core grayish-rim strucmre as well as gray-core grayish-rim structure in VC-doped Ti(C,N)-based nano cermets. With the increase of VC addition, the number of gray cores in- creased, the lattice parameter of Ti(C,N) phase increased, the grain size decreased, the hardness and fracture toughness of Ti(C,N)-based nano cermets were enhanced, and nearly full densification could be achieved. However, excessive addition of VC to 1 wt% resulted in slight decrease in hardness and fracture toughness. Some deep dimples were found in the fracture surface of cermets with VC addition, which corresponded to ductile fracture.
出处 《Rare Metals》 SCIE EI CAS CSCD 2011年第6期583-588,共6页 稀有金属(英文版)
基金 financially supported by National Natural Science Foundation of China (No.50874076 and No.51074110) the Scientist Serving Enterprise Action Plan from Ministry of Science and Technology (No.2009GJF00030)
关键词 powder metallurgy Ti(C N)-based nano cermets VC addition microstructure properties powder metallurgy Ti(C,N)-based nano cermets VC addition microstructure properties
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