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Numerical Modeling of Cyclic Deformation in Bulk Metallic Glasses

机译:大块金属玻璃循环变形的数值模拟

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摘要

In this paper, a systematic numerical simulation was performed to elucidate the damage mechanisms in bulk metallic glasses (BMGs) subjected to the tension-compression cyclic loading, and then the relation between fatigue life, applied strain, and cycling frequency was therefore presented. The free volume was selected as an internal state variable to depict the shear-band nucleation, growth, and coalescence with the help of free volume theory, which was incorporated into the ABAQUS code via a user material subroutine UMAT. Under cyclic loading, the shear banding initiation mainly stems from the microstructure inhomogeneity in BMGs and, further, the effect of applied strain amplitude and cycling frequency was discussed. The present simulations will shed some light on the fatigue damage mechanisms and fatigue life evaluation of BMG structures.
机译:本文进行了系统的数值模拟,以阐明大块金属玻璃(BMGs)在拉压循环载荷下的损伤机理,然后给出了疲劳寿命,施加应变与循环频率之间的关系。选择自由体积作为内部状态变量,以借助自由体积理论描述剪切带的形核,生长和聚结,该理论通过用户子程序UMAT并入ABAQUS代码中。在循环荷载作用下,剪切带的萌生主要是由于BMG的微观结构不均匀,此外,还讨论了施加应变幅度和循环频率的影响。本仿真将为BMG结构的疲劳损伤机理和疲劳寿命评估提供一些启示。

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