首页> 外文期刊>International Journal of Fracture >An incremental stress state dependent damage model for ductile failure prediction
【24h】

An incremental stress state dependent damage model for ductile failure prediction

机译:基于增量应力状态的损伤模型用于延性失效预测

获取原文
获取原文并翻译 | 示例
           

摘要

The goal of this contribution is to formally present an incremental damage model conceived to predict failure of ductile materials in forming and crash applications. Denoted henceforth by the acronym Generalized Incremental Stress State Dependent Damage Model (GISSMO), the present model's framework is based on an incremental damage accumulation which is dependent on a failure curve which, in turn, is a function of the current stress state. The damage variable is of scalar nature and inherently takes into account the effects of non-proportional loadings. Furthermore, GISSMO includes the evolution of an instability measure based on a critical strain. When this variable reaches unity, the coupling between the stress tensor and the damage variable is considered. This allows capturing the effects in post-critical regime macroscopically, from strain localization to final element erosion and crack formation. Since spurious mesh dependence is a concern when simulating material behavior up to fracture, a regularization strategy is proposed to compensate for the effects of mesh dependence in a global fashion. The aforementioned aspects of GISSMO are presented and discussed in detail in the present contribution as well as the calibration of the model based on experimental data of a dual-phase steel. It is shown that GISSMO is able to reproduce the fracture behavior of the calibrated material for several load paths.
机译:该贡献的目的是正式提出一个增量损伤模型,该模型旨在预测塑性材料在成形和碰撞应用中的失效。此后由缩写“广义增量应力状态相关损坏模型”(GISSMO)表示,本模型的框架基于增量损坏累积,该累积损坏取决于失效曲线,而失效曲线又是当前应力状态的函数。损伤变量具有标量性质,并固有地考虑了非比例载荷的影响。此外,GISSMO还包括基于临界应变的不稳定性度量的演变。当此变量达到单位时,将考虑应力张量和损伤变量之间的耦合。这允许宏观地捕获后临界状态下的影响,从应变局部化到最终元素腐蚀和裂纹形成。由于在模拟直至断裂的材料行为时,虚假网格相关性是一个问题,因此提出了一种正则化策略以全局方式补偿网格相关性的影响。在本文稿中以及基于双相钢的实验数据对模型进行校准的过程中,将对GISSMO的上述方面进行详细介绍和讨论。结果表明,GISSMO能够针对几种载荷路径再现校准材料的断裂行为。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号