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Hot isostatic pressing of ultrafine tungsten carbide-cobalt hardmetals

机译:超细碳化钨-钴硬质合金的热等静压

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摘要

Hot Isostatic Pressing (HIP) has been successfully used to consolidate tungsten carbide-10 weight% cobalt (WC-10 wt% Co) powders mixtures with WC powder particle sizes in the range of 100 nanometers. Fully dense specimens of this composition have been obtained by HIP at 1000°C, a temperature well below those usually required for reaching the closed porosity stage in the WC-Co system. Conventional processing by vacuum sintering has also been carried out to study the individual effects of high isostatic pressure and vanadium carbide additions on densification and WC grain growth control of these hardmetals. The finest WC mean grain size after sintering has been obtained for the combined action of applied isostatic pressure and vanadium carbide (VC) additions. These results show that VC additions are effective in controlling WC grain growth even at temperatures as low as 1000°C.
机译:热等静压(HIP)已成功用于固结WC粉末粒度在100纳米范围内的碳化钨10重量%钴(WC-10重量%Co)粉末混合物。该组合物的完全致密样品已通过HIP在1000°C下获得,该温度远低于在WC-Co系统中达到封闭孔隙度阶段通常所需的温度。还已经进行了真空烧结的常规工艺,以研究高等静压和碳化钒添加对这些硬质合金的致密化和WC晶粒生长控制的个别影响。通过施加等静压和添加碳化钒(VC)的联合作用,已经获得了烧结后最佳的WC平均晶粒度。这些结果表明,即使在低至1000℃的温度下,VC的添加也能有效地控制WC晶粒的生长。

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  • 来源
    《Journal of Materials Science》 |2002年第19期|4189-4195|共7页
  • 作者单位

    CEIT—Centro de Estudios e Investigaciones Técnicas de GuipúzcoaTECNUN Campus Tecnológico de la Universidad de Navarra Escuela Superior de Ingenieros;

    CEIT—Centro de Estudios e Investigaciones Técnicas de GuipúzcoaTECNUN Campus Tecnológico de la Universidad de Navarra Escuela Superior de Ingenieros;

    CEIT—Centro de Estudios e Investigaciones Técnicas de GuipúzcoaTECNUN Campus Tecnológico de la Universidad de Navarra Escuela Superior de Ingenieros;

    CEIT—Centro de Estudios e Investigaciones Técnicas de GuipúzcoaTECNUN Campus Tecnológico de la Universidad de Navarra Escuela Superior de Ingenieros;

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