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Grain refinement in the equal channel angular pressing process: simulations using the crystal plasticity finite element method

机译:等沟角压制过程中的晶粒细化:使用晶体塑性有限元法的模拟

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摘要

Grain refinement due to severe plastic deformation is simulated using the crystal plasticity finite element method in the total Lagrangian setting. A rate-independent model with the regularized Schmid law is applied. As an example, a single pass of the equal channel angular pressing process is considered. Texture evolution, misorientation angle distributions and maps of new grains are presented. A special algorithm for tracking the creation of new grains in finite element simulations is developed. The results are analysed with respect to experimental data available in the literature. The possible mechanisms leading to the fragmentation of grains in a face centred cubic material are discussed. The influence of the quality of the microstructure representation on the simulation results is assessed.
机译:使用总拉格朗日设置中的晶体塑性有限元法模拟由于严重的塑性变形引起的晶粒细化。 采用与正则化席克法的速率无关模型。 作为示例,考虑了等于频道角度按压过程的单个通过。 提出了纹理演化,误导性角度分布和新谷物的地图。 开发了一种用于跟踪有限元模拟中的新谷物创建的特殊算法。 关于文献中可用的实验数据分析结果。 讨论了导致面部中心立方体材料中晶粒碎片的可能机制。 评估了微观结构表示对模拟结果的影响。

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