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Elastoplastic Simulation of Contacts Among Particles in Granular Materials

机译:颗粒材料中颗粒间接触的弹塑性模拟

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摘要

The mechanisms governing the densification of powdered materials under compaction are highly dependent on the deformation and the state of stress in the contact among particles. Therefore, a micromechanical model can be very useful in studying the phenomena involved in the compaction process. In this work numerical simulations showing the distributions of strain and stress in models containing two and four particles are presented. The evolution of the deformation in the contact area among particles, the residual stresses appeared after releasing the compressive load and their consequences on the macroscopic mechanical behaviour of powder compacts are here analysed.
机译:压实下控制粉状材料致密化的机理高度依赖于颗粒之间接触的变形和应力状态。因此,微机械模型对于研究压实过程中涉及的现象非常有用。在这项工作中,数值模拟显示了包含两个和四个粒子的模型中的应变和应力分布。本文分析了颗粒之间接触区域变形的演变,释放压缩载荷后出现的残余应力及其对粉末压块宏观力学行为的影响。

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