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Simulation of composite particle growth in dispersion and compounding process of alloy particle and ceramic powder

机译:合金颗粒与陶瓷粉末分散复合过程中复合颗粒生长的模拟

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摘要

In this paper, a compounding process in which fine WC powder was dispersed in particulate Ag-Ni alloy using a high-speed elliptical-rotor-type mill was investigated. In the process, the growth of the composite particle was observed as theprocessing time proceeds. A model for the growth phenomenon of the particle was constructed by means of theory of powder grinding using bail mill and dynamics of the plastic deformation of metal particle. In the model, the probability that the compositeparticle grew was adopted. It was expressed as the product of the probability that the particle was caught between a pair of media (zirconia beads), that it occurred the plastic deformation and the number of the rotor caught them, which included theexperimental conditions as parameters. Temporal change in size distribution of the composite particles has been calculated using this method. Comparing calculated value with experimental data of particle median diameter, they were in good agreement.Consequently, it has been indicated that the model is valid and accurate estimation and control of particle size were possible.
机译:在本文中,研究了使用高速椭圆转子式磨机将细小的WC粉末分散在颗粒状的Ag-Ni合金中的复合工艺。在该过程中,随着处理时间的延长,观察到复合颗粒的生长。利用球磨机粉磨理论和金属颗粒塑性变形动力学,建立了颗粒生长现象的模型。在模型中,采用了复合颗粒生长的概率。它表示为颗粒被夹在一对介质(氧化锆珠)之间,发生塑性变形和转子被其捕获的数量(包括实验条件作为参数)之间的概率乘积。使用这种方法已经计算出复合颗粒的尺寸分布的时间变化。将计算值与粒径中值实验数据进行比较,结果吻合良好。因此,表明该模型是有效的,可以对粒径进行精确估计和控制。

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