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Aging and rejuvenation during elastostatic loading of amorphous alloys: A molecular dynamics simulation study

机译:非晶合金弹性加载过程中的老化和复兴:分子动力学模拟研究

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Using molecular dynamics simulations, we investigate the effect of uniaxial elastostatic compression on the potential energy, structural relaxation, and mechanical properties of binary glasses. We consider the three-dimensional Kob-Andersen binary mixture, which was initially cooled from the liquid state to the glass phase with a slow rate at zero pressure. The glass was then loaded with a static stress at the annealing temperature during extended time intervals. It is found that the static stress below the yielding point induces large-scale plastic deformation and significant rejuvenation when the annealing temperature is smaller than a fraction of the glass transition temperature. By contrast, aging effects become dominant at sufficiently small values of the static stress and higher annealing temperatures. The mechanical tests after the elastostatic compression have shown that both the elastic modulus and the yield stress decrease in rejuvenated samples, while the opposite trend was observed for relaxed glasses. These results might be useful for the thermomechanical processing of metallic glasses with optimized mechanical properties.
机译:采用分子动力学模拟,研究了单轴弹性率压缩对二元眼镜势能,结构松弛和机械性能的影响。我们考虑三维Kob-Andersen二元混合物,其最初以零压力的慢速从液态冷却到玻璃相。然后在延长的时间间隔期间在退火温度下装载玻璃,静态应力。结果发现,当退火温度小于玻璃化转变温度的一小部分时,屈服点以下的静态应力诱导大规模的塑性变形和显着的复合。相比之下,老化效果在静态应力和更高的退火温度的足够小的值下显着。弹性型压缩后的机械测试表明,弹性模量和屈服应力均降低恢复活化的样品,而宽松眼镜则观察到相反的趋势。这些结果对于具有优化机械性能的金属玻璃的热机械加工可能是有用的。

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