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Study of particle rearrangement during powder compaction by the Discrete Element Method

机译:离散元法研究粉末压实过程中的颗粒重排

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This paper presents simulations of cold isostatic and closed die compaction of powders based on the Discrete Element Method. Due to the particulate nature of powders, densification of the compact proceeds both through the plastic deformation at the particle contact and the mutual rearrangement of particles. The relative weight of each mechanism on the macroscopic deformation process depends on the contact law, the relative density, and the type of stress exerted on the particles (shear or pressure). 3D computer simulations have been carried out to investigate the role of these parameters on the deformation mechanisms of powder compacts. The effect of rearrangement is studied by comparing simulations that use a homogeneous strain field solution for which local rearrangement is omitted and simulations that include local rearrangement. It is shown that local rearrangement has some effect on average quantities such as the average coordination number, the average contact area and the macroscopic stress. The effect on averaged quantities is much stronger for closed die compaction than for isostatic compaction. However the main effect of local rearrangement is to widen the distribution of the parameters that define the contact (contact area in particular). The results of these simulations are compared to available experimental data and to statistical models that use a homogeneous strain field assumption.
机译:本文介绍了基于离散元方法的粉末冷等静压和闭模压实的模拟。由于粉末的颗粒性质,压坯的致密化通过颗粒接触时的塑性变形和颗粒的相互重排进行。宏观变形过程中每种机制的相对权重取决于接触定律,相对密度和施加在颗粒上的应力类型(剪切或压力)。已经进行了3D计算机模拟,以研究这些参数对粉末成形体变形机理的作用。通过比较使用均质应变场解决方案的模拟(其中省略了局部重排)和包含局部重排的模拟,来研究重排的效果。结果表明,局部重排对平均量有一定影响,例如平均配位数,平均接触面积和宏观应力。闭模压实比等静压实对平均数量的影响要大得多。但是,局部重排的主要效果是扩大了定义接触点(尤其是接触区域)的参数的分布。将这些模拟的结果与可用的实验数据以及使用均质应变场假设的统计模型进行比较。

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