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Relation between microstructure, properties and spark plasma sintering (SPS) parameters of pure ultrafine WC powder

机译:纯超细WC粉的组织,性能与火花等离子体烧结(SPS)参数之间的关系

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A combined experimentalumerical methodology is developed to fully consolidate pure ultrafine WC powder under a current-control mode. Three applied currents, 1900, 2100 and 2700?A, and a constant pressure of 20?MPa were employed as process conditions. The developed spark plasma sintering (SPS) finite-element model includes a moving-mesh technique to account for the contact resistance change due to sintering shrinkage and punch sliding. The effects of the heating rate on the microstructure and hardness were investigated in detail along the sample radius from both experimental and modeling points of view. The maximum hardness (2700 HV10) was achieved for a current of 1900?A at the core sample, while the maximum densification was achieved for 2100 and 2700?A. A direct relationship between the compact microstructure and both the sintering temperature and the heating rate was established.
机译:开发了一种组合的实验/数值方法,以在电流控制模式下完全固结纯超细WC粉。使用三个施加电流1900、2100和2700?A,以及20?MPa的恒定压力作为处理条件。开发的火花等离子体烧结(SPS)有限元模型包括移动网格技术,以解决由于烧结收缩和冲头滑动引起的接触电阻变化。从实验和建模的角度,沿着样品半径详细研究了加热速率对显微组织和硬度的影响。核心样品在电流1900A时达到最大硬度(2700 HV10),而在2100和2700A时达到最大致密化。建立了致密的微观结构与烧结温度和加热速率之间的直接关系。

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