The Incorporation of Texture-Based Yield Loci Into Elasto-Plastic Finite Element Programs

P. Houtte, A. Bael, J. Winters
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引用次数: 45

Abstract

Elasto-plastic finite elements (FE) methods are nowadays widely used to simulate complex metal forming processes. It is then useful to generate an anisotropic yield criterion from the crystallographic texture and incorporate it into such model. The theory of dual plastic potentials (one in strain rate space and one in stress space) helps to achieve this. There is however a certain danger of losing the convexity of the yield locus during this procedure. Examples of this phenomenon are given and discussed. It is furthermore explained how the yield locus can be used to generate an elasto-plastic modulus for implementation in the FE code. Finally several examples of successful applications of the anisotropic FE code to metal forming problems are given.
基于纹理的屈服轨迹在弹塑性有限元程序中的应用
弹塑性有限元方法目前被广泛用于模拟复杂的金属成形过程。然后,从晶体织构中生成各向异性屈服准则并将其纳入该模型是有用的。双塑性势理论(一个在应变率空间,一个在应力空间)有助于实现这一点。然而,在这一过程中,存在着失去屈服轨迹的凸性的危险。文中给出了这种现象的实例并进行了讨论。进一步解释了如何使用屈服轨迹来生成弹塑性模量,以便在有限元代码中实现。最后给出了各向异性有限元程序在金属成形问题中的成功应用实例。
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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