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Investigation and prediction of tearing failure during extrusion based on a modified shear damage model

机译:基于修正剪切损伤模型的挤压过程中撕裂破坏的研究与预测

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摘要

In this study, a recent modified shear GTN model suitable for various triaxialities was implemented and validated, which combines the porous plasticity model with a damage mechanics concept. The original Gurson model was modified by coupling the shear damage and void volume fraction parameters into the yield surface. The stress update algorithm was developed via a user-material subroutine. With the help of representative volume elements (RVEs), a connection between the formation of macroscopic cracks and the microstructure was established. The modified GTN model was applied to predict the damage and tearing fracture. Additionally, the cohesive zone model was applied to the RVE to simulate the de-bonding of the grain interfaces from a microscopic perspective. Metallurgical inspection by means of optical and scanning electron microscopy was performed to explore the failure mechanism and validate the numerical computation results. Furthermore, the deformation of the shear band and the damage propagation mechanism during the extrusion process were discussed. (C) 2017 Published by Elsevier Ltd.
机译:在这项研究中,实施并验证了一种适用于各种三轴性的改进型剪切GTN模型,该模型将多孔塑性模型与损伤力学概念相结合。通过将剪切损伤和空隙体积分数参数耦合到屈服面来修改原始的Gurson模型。应力更新算法是通过用户材料子例程开发的。借助代表性的体积元(RVE),建立了宏观裂纹形成与微观结构之间的联系。修改后的GTN模型用于预测损伤和撕裂断裂。另外,将内聚区模型应用于RVE,以从微观角度模拟晶粒界面的脱粘。通过光学和扫描电子显微镜进行了冶金检查,以探究其失效机理并验证了数值计算结果。此外,还讨论了剪切过程中剪切带的变形和损伤的传播机理。 (C)2017由Elsevier Ltd.发布

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