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首页> 外文期刊>International Journal of Damage Mechanics >Damage Evolution in Elasto-plastic Materials-Material Response Due to Different Concepts
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Damage Evolution in Elasto-plastic Materials-Material Response Due to Different Concepts

机译:不同概念对弹塑性材料损伤响应的影响

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摘要

The purpose of this paper is to show that shortcomings exist in the plasticity induced damage theories. Existing phenomenological thermodynamic approaches used for describing elasto-plasticity coupled with damage are therefore evaluated. Within the concept of effective stress both the postulate of strain equivalence and the postulate of (complementary) energy equivalence, as well as extensions of the postulates, are considered. As a prototype model the von Mises plasticity model coupled with isotropic damage is considered. Simulations of a strain-controlled uniaxial model are also performed. The results reveal that a mapping, similar to that of the stress, of both the kinematic and isotropic hardening variables is to be preferred. More interesting is that, irrespective of the postulate employed, the elastic strain will not equal zero when failure takes place, i.e. the interpretation of elastic strain is lost. From the results it is also concluded that (complementary) energy equivalence have some undesirable properties.
机译:本文的目的是证明可塑性引起的损伤理论存在缺陷。因此,评估了用于描述弹塑性和损伤的现有现象热力学方法。在有效应力的概念中,既考虑了应变当量的假设和(互补)能量当量的假设,又假设了这些假设的扩展。作为原型模型,考虑了von Mises塑性模型以及各向同性损伤。还执行了应变控制单轴模型的仿真。结果表明,运动和各向同性的硬化变量都应与应力相似地进行映射。更有趣的是,不管采用哪种假设,当发生故障时,弹性应变将不等于零,即失去了弹性应变的解释。从结果还可以得出结论,(互补)能量当量具有某些不良特性。

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