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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Liquid phase sintering of functionally graded WC-Co composites
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Liquid phase sintering of functionally graded WC-Co composites

机译:功能梯度WC-Co复合材料的液相烧结

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Functionally graded cemented tungsten carbide (WC-Co) is an example of functionally graded materials (FGM) in which mechanical properties are optimized by the presence of microstructural gradients such as cobalt gradient and grain size differences within the microstructure. In particular, a cobalt gradient is preferred. However, the manufacture of FGM WC-Co with a cobalt gradient is difficult because the flow of the liquid phase during liquid phase sintering (LPS) would eliminate any initial cobalt gradient built into the powder compacts. In this paper, different factors, which can be used to influence the migration of liquid during sintering, are investigated. These factors include gradients in grain size, carbon and cobalt content, and sintering time. It is shown that a difference in particle size may induce a step-wise profile of cobalt concentration. Initial carbon content differences, however, can be used to obtain a gradient of cobalt during sintering. The effects of these factors are explained based on the roles of capillary force and phase reactions.
机译:功能梯度硬质合金(WC-Co)是功能梯度材料(FGM)的示例,其中,通过微结构梯度(例如钴梯度和微结构内的晶粒尺寸差异)的存在来优化机械性能。特别地,钴梯度是优选的。然而,制造具有钴梯度的FGM WC-Co是困难的,因为在液相烧结(LPS)过程中液相的流动会消除粉末压块中任何初始的钴梯度。在本文中,研究了可用于影响烧结过程中液体迁移的不同因素。这些因素包括晶粒尺寸,碳和钴含量的梯度以及烧结时间。结果表明,粒径的不同可能会引起钴浓度的逐步变化。但是,初始碳含量差异可用于在烧结过程中获得钴的梯度。基于毛细作用力和相反应的作用来解释这些因素的影响。

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