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Numerical study of shear banding evolution in bulk metallic glass composites

机译:大块金属玻璃复合材料剪切带发展的数值研究

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摘要

In this article, a systematic simulation was performed to demonstrate the detailed shear banding evolution in bulk metallic glass (BMG) composites subjected to the tension, and the relation between microstructures and tensile ductility was therefore elucidated. Free volume was adopted as an internal state variable to characterize the shear banding nucleation, growth and coalescence in BMG matrix with the help of free volume theory, which was incorporated into ABAQUS finite element method (FEM) code as a user material subroutine. The present numerical method was firstly verified by comparing with the corresponding experimental results, and then parameter analyses were conducted to discuss the impacts of particle volume fraction, particle shape, particle orientation and particle yielding strength on the enhancement efficiency of the tensile ductility of BMG composites.
机译:在本文中,进行了系统的模拟,以说明在承受拉力的大块金属玻璃(BMG)复合材料中详细的剪切带演变,因此阐明了微观结构与拉伸延展性之间的关系。在自由体积理论的帮助下,自由体积被用作内部状态变量来表征BMG基质中的剪切带形核,生长和聚结,并将其作为用户材料子例程并入ABAQUS有限元方法(FEM)代码中。首先通过与相应的实验结果进行比较验证了本数值方法,然后进行了参数分析,探讨了颗粒体积分数,颗粒形状,颗粒取向和屈服强度对BMG复合材料拉伸延性增强效率的影响。 。

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