材料科学
非晶态金属
复合材料
复合数
延展性(地球科学)
可塑性
无扩散变换
制作
无定形固体
高熵合金
硬化(计算)
马氏体
微观结构
蠕动
合金
医学
替代医学
化学
病理
有机化学
图层(电子)
作者
Yin Du,Dongpeng Hua,Qing Zhou,Xuhui Pei,Hanming Wang,Yue Ren,Haifeng Wang,Weimin Liu
标识
DOI:10.1016/j.compositesb.2024.111222
摘要
High-entropy bulk metallic glasses (HE-BMGs) with desired thermal stability often exhibit limited plasticity due to the occurrence of shear localization avalanches. The present study reports the fabrication of a novel composite TiZrHfNb0.5Cu0.5Be0.5, consisting of a high entropy crystalline phase (TiZrHfNb) and an amorphous matrix (TiZrHfCuBe). The composite exhibits a distinctive combination of strength and ductility, surpassing that of traditional BMG composites, along with a notable capacity for work-hardening. Furthermore, it demonstrates exceptional wear resistance under varying normal loads or frequencies. The deformation and wear mechanisms are attributed to the solid-solution strengthening and stress-induced β→α" martensitic transformation in the high entropy crystalline phase, as well as the deformation-induced crystallization in HE-BMG matrix. These findings would provide a new strategy for preparing advanced HE-BMGs composite with unique properties.
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