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首页> 外文期刊>International Journal of Damage Mechanics >A Physically Motivated Modification of the Strain Equivalence Approach
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A Physically Motivated Modification of the Strain Equivalence Approach

机译:物理等效的应变等效方法的修改

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摘要

A phenomenological thermodynamic approach used for describing elasto-plasticity coupled with isotropic damage is considered. Using this approach it was recently shown by the authors that certain unwanted features exist in the plasticity-induced damage theories. This paper gives a suggestion on how to solve these issues. Based on physical arguments a simple modification of the postulate of strain equivalence is suggested. To show the effects of the modification, the von Mises plasticity model coupled with isotropic damage is used as a prototype model in the derivations. Both analytical considerations and simulations of a strain-controlled uniaxial model are performed. The results reveal that the modification of the postulate of strain equivalence gives promising results. In contrast to the postulates of strain equivalence and (complementary) energy equivalence, the present formulation predicts the elastic strain to vanish when failure takes place.
机译:考虑了一种用于描述弹塑性和各向同性损伤的现象学热力学方法。作者最近证明了使用这种方法,在可塑性引起的损伤理论中存在某些不需要的特征。本文对如何解决这些问题提出了建议。基于物理论点,提出了对应变当量假设的简单修改。为了显示修改的效果,将冯·米塞斯(von Mises)塑性模型与各向同性损伤相结合,用作推导中的原型模型。进行了分析控制和应变控制单轴模型的仿真。结果表明,应变等价假设的修改给出了有希望的结果。与应变当量和(互补)能量当量的假设相反,本公式预测发生破坏时弹性应变将消失。

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