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Efficient pseudo-inverse approach for damage prediction in cold forging process simulation

机译:一种有效的伪逆方法在冷锻过程仿真中的损伤预测

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摘要

This article presents an efficient pseudo-inverse approach for the damage prediction in cold forging process simulation. Pseudo-inverse approach combines the advantages of the fast inverse approach and accurate incremental approaches. Some intermediate configurations are created geometrically and corrected mechanically to well describe the deformation path. The formulation of an axi-symmetrical element based on pseudo-inverse approach is presented. A strain-based damage model is introduced in the flow theory of plasticity. A direct scalar integration algorithm of plasticity-damage is developed, leading to a fast and robust algorithm for large strain increments. The cold forging processes of two axi-symmetrical parts are simulated to validate pseudo-inverse approach by the incremental approach ABAQUS/Explicit. Pseudo-inverse approach gives very good results, but uses much less CPU time.
机译:本文提出了一种有效的伪逆方法,用于冷锻过程仿真中的损伤预测。伪逆方法结合了快速逆方法和精确增量方法的优点。一些中间构造在几何上创建并进行了机械校正,以很好地描述变形路径。提出了基于伪逆方法的轴对称单元的提法。在塑性流动理论中引入了基于应变的损伤模型。开发了一种可塑性损伤的直接标量积分算法,从而为大的应变增量提供了一种快速而强大的算法。模拟了两个轴对称零件的冷锻过程,以通过渐进方法ABAQUS / Explicit验证伪逆方法。伪逆方法给出了很好的结果,但是使用的CPU时间却少得多。

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