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A coupled elastoplastic-damage constitutive model with Lode angle dependent failure criterion

机译:洛德角相关破坏准则的耦合弹塑性-损伤本构模型

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摘要

A coupled elastoplastic-damage constitutive model with Lode angle dependent failure criterion for high strain and ballistic applications is presented. A Lode angle dependent function is added to the equivalent plastic strain to failure definition of the Johnson-Cook failure criterion. The weakening in the elastic law and in the Johnson-Cook-like constitutive relation implicitly introduces the Lode angle dependency in the elastoplastic behaviour. The material model is calibrated for precipitation hardened Inconel 718 nickel-base superalloy. The combination of a Lode angle dependent failure criterion with weakened constitutive equations is proven to predict fracture patterns of the mechanical tests performed and provide reliable results. Additionally, the mesh size dependency on the prediction of the fracture patterns was studied, showing that was crucial to predict such patterns.
机译:提出了一种针对高应变和弹道应用的,基于洛德角相关破坏准则的弹塑性-损伤本构模型。依赖于Lode角的函数被添加到等效塑性应变中,以定义Johnson-Cook破坏准则的破坏。弹性定律和类似于Johnson-Cook的本构关系的减弱隐含地将Lode角相关性引入了弹塑性行为中。该材料模型已针对沉淀硬化的Inconel 718镍基高温合金进行了校准。实践证明,依赖于洛德角的破坏准则与减弱的本构方程相结合,可以预测所进行的力学测试的断裂模式并提供可靠的结果。此外,研究了网格尺寸对裂缝模式预测的依赖性,表明这对预测此类模式至关重要。

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