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Comparison of Cohesive Models in EDEM and LIGGGHTS for Simulating Powder Compaction

机译:EDEM和LIGGGHTS中模拟粉末压实的内聚模型比较

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摘要

The purpose of this work was to analyse the compaction of a cohesive material using different Discrete Element Method (DEM) simulators to determine the equivalent contact models and to identify how some simulation parameters affect the compaction results (maximum force and compact appearance) and computational costs. For this purpose, three cohesion contact models were tested: linear cohesion in EDEM, and simplified Johnson-Kendall-Roberts (SJKR) and modified SJKR (SJKR2) in LIGGGHTS. The influence of the particle size distribution (PSD) on the results was also investigated. Further assessments were performed on the effect of (1) selecting different timesteps, (2) using distinct conversion tolerances to export the three-dimensional models to standard triangle language (STL) files, and (3) moving the punch with different speeds. Consequently, we determined that a timestep equal to a 10% Rayleigh timestep, a conversion tolerance of 0.01 mm, and a punch speed of 0.1 m/s is adequate for simulating the compaction process using the materials and the contact models in this work. The results showed that the maximum force was influenced by the PSD due to the rearrangement of the particles. The PSD was also related to the computational cost because of the number of simulated particles and their sizes. Finally, an equivalence was found between the linear cohesion and SJKR2 contact models.
机译:这项工作的目的是使用不同的离散元方法(DEM)仿真器来分析粘性材料的压实,以确定等效的接触模型,并确定一些仿真参数如何影响压实结果(最大力和压实外观)以及计算成本。为此,测试了三种内聚接触模型:EDEM中的线性内聚,以及LIGGGHTS中的简化Johnson-Kendall-Roberts(SJKR)和改良SJKR(SJKR2)。还研究了粒度分布(PSD)对结果的影响。对以下效果进行了进一步评估:(1)选择不同的时间步长;(2)使用不同的转换公差将三维模型导出到标准三角语言(STL)文件;以及(3)以不同的速度移动打孔器。因此,我们确定一个时间步长等于10%瑞利时间步长,0.01毫米的转换公差和0.1 m / s的打孔速度,足以在本工作中使用材料和接触模型来模拟压实过程。结果表明,由于颗粒的重排,最大力受PSD的影响。由于模拟粒子的数量及其大小,PSD也与计算成本有关。最后,在线性内聚力和SJKR2接触模型之间发现了对等关系。

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