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VC/Cr_3C_2添加剂对超细硬质合金组织及性能的影响(英文)
引用本文:雷贻文,孙荣禄,吴恩熙,唐英.VC/Cr_3C_2添加剂对超细硬质合金组织及性能的影响(英文)[J].稀有金属材料与工程,2009,38(Z1).
作者姓名:雷贻文  孙荣禄  吴恩熙  唐英
作者单位:1. 天津工业大学,天津,300160
2. 中南大学粉末冶金国家重点实验室,湖南,长沙,3410083
基金项目:Supported by the University Science and Technique Development Foundation of Tianjin (20060912)
摘    要:研究了VC/Cr3C2添加剂对WC-12Co超细硬质合金的显微组织、硬度和抗弯强度(TRS)的影响.结果表明,舍一定比例VC/Cr3C2添加剂的合金具有更均匀的微观组织和优异的力学性能.当添加剂含量(质量分数)为0.5%VC/0.2%Cr3C2时,1430℃烧结制备的WC-12Co超细硬质合金的抗弯强度达3786 MPa,硬度达91.7 HRA.VC添加剂对WC晶粒的连续长大和非连续长大的抑制作用比Cr3C2添加剂更有效.此外,当烧结温度较高时,VC/Cr3C2添加剂对WC晶粒长大的抑制效果更显著.VC和Cr3C2添加剂抑制WC晶粒长大的作用机理为:VC和Cr3C2添加剂降低了WC相在粘结相中的过饱和度,从而降低烧结温度下粘结相中WC相溶解-析出过程的驱动力,起到阻碍WC晶粒长大的作用.

关 键 词:硬质合金  微观组织  晶粒长大  抑制机理

Effects of Codoped VC/Cr_3C_2 on Microstructure and Properties of Ultrafine Cemented Carbides
Lei Yiwen,Sun Ronglu,Wu Enxi,Tang Ying.Effects of Codoped VC/Cr_3C_2 on Microstructure and Properties of Ultrafine Cemented Carbides[J].Rare Metal Materials and Engineering,2009,38(Z1).
Authors:Lei Yiwen  Sun Ronglu  Wu Enxi  Tang Ying
Affiliation:Lei Yiwen1,Sun Ronglu1,Wu Enxi2,Tang Ying1 (1. Tianjin Polytechnic University,Tianjin 300160,China) (2. State Key Laboratory of Powder Metallurgy,Central South University,Changsha 410083,China)
Abstract:Hardness, transverse rupture strength (TRS) and microstructures of VC, Cr3C2 codoped ultrafine WC-12Co were investigated. The results show that alloys with homogeneous microstructure and excellent properties were obtained when optimal proportion of additions was added. The TRS and hardness reach 3786 MPa and 91.7 HRA for the alloy with 0.5% Cr3C2/0.2%VC and sintered at 1430 ℃. VC is more effective at controlling continuous and discontinuous grain growth than Cr3C2, and the effectiveness of additions is more significant at higher sintering temperature. The mechanism of WC grain growth inhibition is that VC and Cr3C2 reduce the supersaturation of WC in the binder phase, decrease the driving force for WC grain growth firm reprecipitation process and retard WC gram growth.
Keywords:cemented carbides  microstmcture  grain growth  mechanism
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