物理时效对la基金属玻璃β二次弛豫过程的影响

Xiyang Ma, Jingqi Zhang, G. Lyu, J. Qiao
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摘要

动态力学弛豫过程,即主(α)弛豫和次(β)弛豫,是理解金属玻璃力学变形、原子扩散和玻璃化转变现象的重要问题。本研究选择La68Ni15Al15Cu2金属玻璃作为协议玻璃体系。通过动态力学分析探讨了力学松弛过程。采用Kohlrausch-Williams-Watts (KWW)型方程分析了不同温度下退火的影响。Kohlrausch指数β_KWW反映了对单一Debye弛豫的偏离,表明金属玻璃中的动力学实际上是由结构非均质性引起的非均质性。本文还讨论了热处理的影响,为调整金属玻璃的弛豫行为提供了一种可能的解决方案。
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Effect of the physical aging on the secondary β relaxation process in a La-based metallic glass
Dynamic mechanical relaxation processes, i.e. main (α) relaxation and secondary (β) relaxation, are important issues to understand mechanical deformation, atomic diffusion as well as glass transition phenomenon of metallic glasses. In current work, La68Ni15Al15Cu2 metallic glass was selected as a protocol glass system. Mechanical relaxation processes were probed by dynamic mechanical analysis. The effects of annealing at different temperatures were analyzed by Kohlrausch–Williams–Watts (KWW)-type equation. The Kohlrausch exponent β_KWW reflects the deviation from a single Debye relaxation, indicating the fact that dynamics in metallic glass are actually heterogeneous originating from the structural heterogeneity. The effects of thermal treatments were also discussed, which provides a potential solution to tune the relaxation behaviors in metallic glasses.
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