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Numerical simulation of powder compaction processes using an inelastic finite element analysis

机译:基于非弹性有限元分析的粉末压实过程数值模拟

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摘要

In this paper, a combined experimental and numerical investigation is described for powder compaction processes. It utilises material properties derived from experimental work as input for inelastic analysis of a finite element model. Numerical modelling of the powder compaction process is performed using a large-displacement finite element method. Powder material parameters, such as cohesion, internal friction angle and Young's modulus, were experimentally established as functions of relative density. These non-linear functions are incorporated into the inelastic analysis of the finite element model in order to establish model input parameters during different stages of compaction. Finally, powder behaviour during the compaction of a 3D bush component is numerically analysed.
机译:在本文中,描述了粉末压实过程的组合实验和数值研究。它利用源自实验工作的材料特性作为有限元模型的非弹性分析的输入。粉末压实过程的数值模型是使用大位移有限元方法进行的。实验确定了粉末材料的参数,如内聚力,内摩擦角和杨氏模量,作为相对密度的函数。这些非线性函数被合并到有限元模型的非弹性分析中,以便在压实的不同阶段建立模型输入参数。最后,对3D衬套组件的压实过程中的粉末行为进行了数值分析。

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