首页> 外文期刊>International Journal of Plasticity >Understanding of micro-alloying on plasticity in Cu46Zr47-xAl7Dyx (0 <= x <= 8) bulk metallic glasses under compression: Based on mechanical relaxations and theoretical analysis
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Understanding of micro-alloying on plasticity in Cu46Zr47-xAl7Dyx (0 <= x <= 8) bulk metallic glasses under compression: Based on mechanical relaxations and theoretical analysis

机译:了解Cu46Zr47-xAl7Dyx(0 <= x <= 8)大块金属玻璃在压缩状态下的可塑性微合金化:基于机械弛豫和理论分析

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摘要

Lacking of plasticity at ambient temperature severely hinders the wide applications of bulk metallic glasses, and a significant challenge is to improve the plasticity. Based on the metallurgical physics, micro-alloying can be applied to adjust metallic glasses plasticity. In the current work, dynamic mechanical relaxation of Cu46Zr47-xAl7Dyx (0 <= x <= 8) bulk metallic glasses has been investigated experimentally by dynamic mechanical analysis. Compressive tests have been performed to investigate mechanical properties of the Cu based bulk metallic glasses at both ambient as well as cryogenic temperatures. The results indicated that by modifying the chemical composition, plastic deformation and dynamic mechanical relaxation processes are changed. The influence of Dysprosium (Dy) on plastic deformation is possibly related to the Johari-Goldstein (JG) relaxation in the metallic glasses. A kinetic model which may be predict the mechanical relaxation behavior and atomic mobility of the metallic glasses. In addition, experimental analyses show that thermal properties can be affected by the Dy addition of the Cu-based bulk metallic glasses. Our investigations demonstrated that micro-alloying of Dy could play an important role to influence the Cu46Zr47-xAl7Dyx bulk metallic glasses plasticity. In order to explain this behavior, the quasi-point defects theory was used to describe the micro structural heterogeneity. We postulate that the compressive plasticity is directly associated with local heterogeneity and relaxation modes for metallic glasses. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在环境温度下缺乏可塑性严重地阻碍了块状金属玻璃的广泛应用,并且显着的挑战是提高可塑性。基于冶金物理学,微合金化可用于调节金属玻璃的可塑性。在当前的工作中,通过动态力学分析实验研究了Cu46Zr47-xAl7Dyx(0 <= x <= 8)大块金属玻璃的动态力学弛豫。已经进行了压缩测试以研究在室温以及低温下的铜基块状金属玻璃的机械性能。结果表明,通过改变化学成分,可改变塑性变形和动态机械松弛过程。 plastic(Dy)对塑性变形的影响可能与金属玻璃中的Johari-Goldstein(JG)弛豫有关。可以预测金属玻璃的机械弛豫行为和原子迁移率的动力学模型。此外,实验分析表明,Dy添加基于铜的块状金属玻璃可能会影响热性能。我们的研究表明,Dy的微合金化可能对影响Cu46Zr47-xAl7Dyx大块金属玻璃的可塑性起重要作用。为了解释这种行为,使用了准点缺陷理论来描述微观结构的异质性。我们假设压缩塑性与金属玻璃的局部异质性和松弛模式直接相关。 (C)2016 Elsevier Ltd.保留所有权利。

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