Analysis of Micro/mesoscale Sheet Stamping Processes Based on Crystalline Plasticity Model

K. Liao, C. Chen
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Abstract

A Taylor-type crystalline plasticity model, implemented into the commercial finite element analysis software, is coded as a subroutine to investigate the behavior of a stainless steel sheet with a body centered cubic (BCC) structure in the current study. Thickness variations of the sheet are examined under the micro-groove formation procedures. Effects of the spatial distribution of crystallographic orientations on the thickness distribution over the sheet are also demonstrated. Numerical results, based on the sheet with textured orientations, are in good agreement with the associated experimental measurements reported in the literature.
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基于结晶塑性模型的微/中尺度板料冲压工艺分析
本文将taylor型结晶塑性模型编码为子程序,应用于商业有限元分析软件中,用于研究体心立方(BCC)结构不锈钢薄板的行为。在微槽形成过程中,考察了薄板的厚度变化。晶体取向的空间分布对薄片厚度分布的影响也得到了证明。基于具有纹理取向的薄片的数值结果与文献中报道的相关实验测量结果很好地一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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