Synthesis of Nanostructured WC-Co Hardmetal by Selective Laser Melting

R.S. Khmyrov, V.A. Safronov, A.V. Gusarov
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Abstract

Selective laser melting is a layer-by-layer technique to form a solid part from powder. The thermal cycle of this process can be as short as one millisecond and less. This is why it is favorable to obtain nanostructured materials with advanced properties. Metal matrix composite WC-Co is studied. Micron-sized Co powder was mixed with WC nanopowder in a planetary ball mill to prepare uniform composite powder. Single remelted beads and monolayers were obtained from the composite powder on the substrates of sintered WC-Co. No cracks and good adhesion to the substrate are observed. The high cooling rate up to 106 K/s explains the fine microstructures. Increasing the scanning velocity is favourable because of refining the microstructure and decreasing the balling-effect. The attained values of surface roughness are as low as 1-2 μm.

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选择性激光熔化法制备纳米WC-Co硬质合金
选择性激光熔化是一种从粉末中逐层形成固体部件的技术。这个过程的热循环可以短到一毫秒甚至更短。这就是为什么获得具有先进性能的纳米结构材料是有利的。研究了金属基复合材料WC-Co。将微米级Co粉与纳米WC粉在行星球磨机中混合,制备出均匀的复合粉体。复合粉末在烧结WC-Co基体上获得了单重熔微珠和单重熔层。无裂纹,与基材粘合良好。高达106 K/s的高冷却速率解释了精细的显微组织。提高扫描速度有利于细化组织,减小球化效应。表面粗糙度测量值低至1 ~ 2 μm。
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