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The Influence of Cr3C2 and VC as Alloying Additives on the Microstructure and Properties of Reactive Sintered WC-Co Cermets

机译:Cr3C2和VC作为合金添加剂对反应烧结WC-Co金属陶瓷的组织和性能的影响

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Investigated WC-Co cermets were produced via reactive sintering. In case of reactive sintering the elemental powders of tungsten, carbon black as graphite source and cobalt at first activated throw high energy milling and then the carbide synthesis is taking place in the same cycle with liquid phase sintering of the cermets. Because there is a lack of information about the influence of alloying additives on the reactive sintered WC-Co cermets, small amount of chromium carbide or vanadium carbide was added to the powders. To investigate the influence of carbon content in initial powder mixture on the microstructure and properties of reactive sintered WC-Co cermets alloyed with Cr3C2 and VC cermets with different carbon content were produced. The hardness, transverse rupture strength and erosion resistance of alloyed WC-Co cermets depending on carbon content in initial powder mixture is exhibited.
机译:通过反应烧结生产了调查的WC-Co金属陶瓷。在反应性烧结钨,碳黑作为石墨源和钴的元素粉末的情况下,首先进行活化抛掷高能研磨,然后在金属陶瓷的液相烧结的同一循环中进行碳化物合成。由于缺乏有关合金添加剂对反应性烧结WC-Co金属陶瓷的影响的信息,因此将少量的碳化铬或碳化钒添加到粉末中。为了研究初始粉末混合物中的碳含量对与Cr3C2合金化的活性烧结WC-Co金属陶瓷和VC含量不同的VC金属陶瓷的组织和性能的影响。显示出合金WC-Co金属陶瓷的硬度,横向断裂强度和耐蚀性,取决于初始粉末混合物中的碳含量。

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