首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Analysis of Three Dimensional Equal Chanel Angular Pressing by Using the Finite Element Method in Conjunction with the Dislocation Cell Based Constitutive Model
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Analysis of Three Dimensional Equal Chanel Angular Pressing by Using the Finite Element Method in Conjunction with the Dislocation Cell Based Constitutive Model

机译:基于位错单元本构模型的有限元法三维等距香奈儿角按分析

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摘要

Deformation behavior of pure aluminum during equal channel angular pressing (ECAP) was simulated using a three-dimensional version of the finite element method in conjunction with a constitutive model based on the dislocation density and cell evolution. The three-dimensional finite element analyses for the prediction of microstructural features, such as the variation of the dislocation density and the cell size with the number of ECAP, are reported. The calculated stress and strain and their distributions are also investigated for the route Bc ECAP processed pure aluminum. The results of finite element analyses are found to be in good agreement with experimental results for the dislocation cell size. Due to the accumulation of strain throughout the workpiece and an overall trend to saturation in cell size, a decrease of the difference in cell size with the number of passes (1-4) was predicted.
机译:使用三维版本的有限元方法,结合基于位错密度和细胞演化的本构模型,模拟了纯铝在等通道转角挤压(ECAP)期间的变形行为。报道了用于预测微结构特征的三维有限元分析,例如位错密度和单元尺寸随ECAP数量的变化。还研究了路线Bc ECAP处理的纯铝的计算应力和应变及其分布。发现有限元分析的结果与位错晶胞尺寸的实验结果非常吻合。由于整个工件上的应变积累以及孔尺寸趋于饱和的总体趋势,因此可以预测孔尺寸的差异随通过次数的增加而减少(1-4)。

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