共晶体系
材料科学
微观结构
合金
极限抗拉强度
延伸率
延展性(地球科学)
冶金
拉伸试验
再结晶(地质)
高熵合金
复合材料
蠕动
生物
古生物学
作者
Yafei Li,Jiahe Zhou,Yifei Liu,Chuanyang Lu,Lei Shi,Wenjian Zheng,Weiya Jin,Zengliang Gao,Jianguo Yang,Yanming He
摘要
Abstract Recently, there has been a lot of interest in the AlCoCrFeNi 2.1 eutectic high‐entropy alloys (EHEAs), which can achieve a good balance of strength and ductility. The relationship between the microstructure and mechanical properties of the alloy was established in this study by examining the microstructural evolution during heat treatment of 500–1000°C. The results show that the alloy's microstructure remained unchanged when the heat treatment temperature was lower than 700°C. With further rise above 800°C, the B2 II precipitates were inspected in the L1 2 matrix. Besides, L1 2II started to be precipitated from the B2 matrix at 900°C. The tensile test results conducted at 20–1000°C showed that both the yield strength and ultimate tensile strength decreased as the temperature rose. As for the elongation, however, it increased dramatically when the testing temperature was over 800°C, being attributed to the dynamic recrystallization. The results obtained provided a fundamental understanding of high‐temperature properties for duplex HEAs.
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