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Modeling strain and density distributions during high-pressure torsion of pre-compacted powder materials

机译:在预压粉料的高压扭转过程中模拟应变和密度分布

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It is shown by finite element modeling that under high-pressure torsion of water-atomized pure iron powder a zone with high shear strain and high density develops first in a layer adjacent to the moving anvil. The finite element simulation results and an analytical calculation using the minimum plastic energy extremum principle both show that with further deformation the compacted zone extends progressively in the radial and axial directions throughout the specimen.
机译:通过有限元模型表明,在水雾化的纯铁粉的高压扭转作用下,高剪切应变和高密度区域首先在与运动砧座相邻的层中形成。有限元模拟结果和使用最小塑性能极值原理的分析计算均表明,随着进一步变形,压实区在整个样本中沿径向和轴向方向逐渐延伸。

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