简介概要

Novel Crystallization Behaviors of Zr-Based Metallic Glass Under Thermo-Mechanical Coupled Fatigue Loading Condition

来源期刊:Acta Metallurgica Sinica2019年第7期

论文作者:Zhi-Chao Ma Xiao-Xi Ma Hong-Wei Zhao Fu Zhang Li-Ming Zhou Lu-Quan Ren

文章页码:797 - 802

摘    要:Novel crystallization behaviors of Zr55Cu30Al10Ni5 bulk metallic glass are investigated.On the one hand,mixed oxides,including CuO,CuAlO2,CuAl2O4 and ZrO2,show sequential oxidation process determined by coupling effects of specific cyclic load and temperature.On the other hand,at a temperature(100 ℃)by far lower than Tg of 412 ℃,under cyclic loading condition,non-oxidized binary alloy CuZr2 is precipitated;the thermo-mechanical coupled effects of temperature below Tg and fatigue accumulation on the non-oxidized crystallization behaviors are revealed.Meanwhile,at a constant temperature of 400℃, by comparing among the XRD patterns,respectively,obtained from tensile,creep and fatigue fractures,the dominating effect of cyclic load on the generation of non-oxidized CuZr2 is verified.Furthermore,the crystallization behavior of amorphous phases under cyclic loading condition is observed through TEM micrograph and diffraction pattern at 100 ℃.

详情信息展示

Novel Crystallization Behaviors of Zr-Based Metallic Glass Under Thermo-Mechanical Coupled Fatigue Loading Condition

Zhi-Chao Ma,Xiao-Xi Ma,Hong-Wei Zhao,Fu Zhang,Li-Ming Zhou,Lu-Quan Ren

摘 要:Novel crystallization behaviors of Zr55Cu30Al10Ni5 bulk metallic glass are investigated.On the one hand,mixed oxides,including CuO,CuAlO2,CuAl2O4 and ZrO2,show sequential oxidation process determined by coupling effects of specific cyclic load and temperature.On the other hand,at a temperature(100 ℃)by far lower than Tg of 412 ℃,under cyclic loading condition,non-oxidized binary alloy CuZr2 is precipitated;the thermo-mechanical coupled effects of temperature below Tg and fatigue accumulation on the non-oxidized crystallization behaviors are revealed.Meanwhile,at a constant temperature of 400℃, by comparing among the XRD patterns,respectively,obtained from tensile,creep and fatigue fractures,the dominating effect of cyclic load on the generation of non-oxidized CuZr2 is verified.Furthermore,the crystallization behavior of amorphous phases under cyclic loading condition is observed through TEM micrograph and diffraction pattern at 100 ℃.

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