Modelling ductile damage of a textured aluminum alloy based on a non-quadratic yield function

João P. Brito
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引用次数: 0

Abstract

Abstract. The development of more sophisticated constitutive models is essential for improving the reliability of metal forming process simulations. The main objective of this work is to employ a Gurson-type [1] porous criterion to assess the ductile damage distribution of a strongly textured AA5042-H2 sheet during a single-stage cup-drawing process. The anisotropy of the dense phase is described with the non-quadratic form of the CPB06ex2 [2] criterion using two linear transformations. In line with Gurson’s homogenization theory, the plastic behavior of the porous solid is described by an approximate macroscopic strain-rate potential (SRP) using the classical Rice and Tracey trial fields. The particularity of this implementation is that the macroscopic potentials are not evaluated via analytical functions, but by numerical integration of the local fields [3]. It is shown that such approach is viable from the computational standpoint and opens the door for materials with intricate plastic behavior to be modeled within the framework of porous media.
基于非二次屈服函数的纹理铝合金韧性损伤建模
摘要要提高金属成型工艺模拟的可靠性,就必须开发更复杂的构成模型。这项工作的主要目的是采用 Gurson 型[1]多孔准则来评估单级杯拉伸过程中强纹理 AA5042-H2 板材的韧性损伤分布。致密相的各向异性是用 CPB06ex2 [2] 准则的非二次方形式描述的,使用了两个线性变换。根据 Gurson 的均质化理论,多孔固体的塑性行为由近似宏观应变速率势(SRP)使用经典的 Rice 和 Tracey 试验场来描述。这种实现方法的特殊之处在于,宏观势不是通过分析函数来评估的,而是通过局部场的数值积分来评估的[3]。研究表明,这种方法从计算角度来看是可行的,并为在多孔介质框架内模拟具有复杂塑性行为的材料打开了大门。
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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