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Crystal plasticity investigation of friction effect on texture evolution of Al single crystal during ECAP

机译:ECAP过程中摩擦对Al单晶织构演变的晶体可塑性研究

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摘要

A crystal plasticity finite element model has been developed to study the effect of friction between the die wall and the billet on texture evolution during equal channel angular pressing of an aluminum single crystal. Four cases with different coefficients of friction μ = 0, 0.05, 0.1, and 0.15 have been simulated. It has been found that the friction of μ = 0.05 and 0.1 can capture the major texture features shown in the experimental results, and μ = 0.05 predicts a slightly better texture than μ = 0.1. The frictional condition significantly affects texture evolution in the region between 1/2 and 3/4 of the billet thickness from the top surface. It can be attributed to the effect of friction on the corner gap and the distribution of stresses in the die corner.
机译:已经开发了晶体可塑性有限元模型,以研究铝单晶在等通道角挤压过程中模具壁和坯料之间的摩擦对织构演变的影响。模拟了四种摩擦系数μ= 0、0.05、0.1和0.15的情况。已经发现,μ= 0.05和0.1的摩擦可以捕获实验结果中显示的主要纹理特征,而μ= 0.05则预示了比μ= 0.1更好的纹理。摩擦条件严重影响了从顶表面开始的坯料厚度的1/2至3/4之间的区域中的织构演变。这可以归因于摩擦对角部间隙的影响以及模具角部中应力的分布。

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