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Discrete element simulation of powder compaction in cold uniaxial pressing with low pressure

机译:低压冷单轴压制过程中粉末压实的离散元模拟

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This paper presents numerical studies of powder compaction in cold uniaxial pressing. The powder compaction in this work is considered as an initial stage of a hot pressing process so it is realized with relatively low pressure (up to 50 MPa). Hence the attention has been focused on the densification mechanisms at this range of pressure and models suitable for these conditions. The discrete element method employing spherical particles has been used in the numerical studies. Numerical simulations have been performed for two different contact models - the elastic Hertz-Mindlin-Deresiewicz model and the plastic Storakers model. Numerical results have been compared with the results of laboratory tests of the die compaction of the NiAl powder. Comparisons have shown that the discrete element method is capable to represent properly the densification mechanisms by the particle rearrangement and particle deformation.
机译:本文介绍了冷单轴压制过程中粉末压实的数值研究。这项工作中的粉末压实被认为是热压工艺的初始阶段,因此可以在相对较低的压力(最高50 MPa)下实现。因此,注意力集中在此压力范围内的致密化机理和适用于这些条件的模型上。在数值研究中已经使用了采用球形颗粒的离散元方法。已经针对两种不同的接触模型进行了数值模拟-弹性Hertz-Mindlin-Deresiewicz模型和塑料Storakers模型。将数值结果与NiAl粉末压模的实验室测试结果进行了比较。比较表明,离散元素法能够通过粒子重排和粒子变形正确地表示致密化机理。

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