Prevention of cyclic instability at the modeling of elasto-plastic deformation at large strains under proportional and non-proportional loading

A. Semenov, B. Melnikov, M. Gorokhov, V. Ulbricht
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引用次数: 5

Abstract

The cyclic instability phenomenon is investigated at the modeling of large elasto-plastic strains. The instability is observed at large strains for some elasto-plastic material models with a kinematic hardening in contrast to the small strain case. The cyclic instability manifests itself as a changing of shape, sizes or location of the hysteresis loop during cycling. In partial case the cyclic instability leads to the stress ratcheting. Responses of 50 various models of elasto-plastic material have been considered under proportional loading (cyclic simple shear) and non-proportional loading (combined cyclic simple shear and tension-compression). Causes of the cyclic instability are analyzed and conditions ensuring the cyclic stability of elasto-plastic models are proposed.
比例和非比例加载下大应变弹塑性变形模型的循环失稳预防
研究了大弹塑性应变模型的循环失稳现象。与小应变情况相比,在大应变情况下,一些弹塑性材料模型具有运动硬化,观察到不稳定性。循环不稳定性表现为滞回线在循环过程中形状、大小或位置的变化。在部分情况下,循环失稳导致应力棘轮。考虑了50种不同弹塑性材料模型在比例加载(循环单剪)和非比例加载(循环单剪和拉压组合)下的响应。分析了循环失稳的原因,提出了保证弹塑性模型循环稳定的条件。
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