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Numerical Simulation of the Mechanical Properties and Failure of Heterogeneous Elasto-Plastic Materials

机译:非均质弹塑性材料力学性能和破坏的数值模拟

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摘要

A general numerical approach was developed to simulate the mechanical properties and the failure of heterogeneous elasto-plastic materials using statistical distributions of the material properties. An appropriate elastic-plastic constitutive relation is used to describe the material behavior and failure in each element, with a two-parameter Weibull distribution used to produce the initial heterogeneous material property variations. An adaptive incremental load-step is applied so that only one or a few elements (or integration points) change their status (i.e., from elastic to plastic, or from plastic to strain failure) within one load step. A failed element is then assigned a very small modulus to simulate the failure rather than removing it from the model, which keeps the continuity of the geometric mesh. The numerical results show that the model is suitable for simulating the effective mechanical properties and failure of heterogeneous materials with local elasto-plastic constitutive relations.
机译:开发了一种通用的数值方法,以利用材料特性的统计分布来模拟非均质弹塑性材料的机械特性和破坏。适当的弹塑性本构关系用于描述每个单元中的材料行为和破坏,并使用两参数的威布尔分布来产生初始的异质材料特性变化。应用了自适应增量载荷阶跃,以便在一个载荷阶跃内只有一个或几个元素(或积分点)改变其状态(即,从弹性到塑料,或从塑性到应变破坏)。然后,为失败的元素分配一个非常小的模量,以模拟失败,而不是将其从模型中移除,从而保持了几何网格的连续性。数值结果表明,该模型适用于模拟具有局部弹塑性本构关系的异质材料的有效力学性能和失效。

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