材料科学
合金
脆性
可塑性
韧性
高熵合金
冶金
耐火材料(行星科学)
断裂韧性
复合材料
脆性断裂
断裂(地质)
作者
Chien-Chang Juan,Ming‐Hung Tsai,Che‐Wei Tsai,Chun-Ming Lin,Woei-Ren Wang,Chih-Chao Yang,Swe-Kai Chen,Su-Jien Lin,Jien‐Wei Yeh
标识
DOI:10.1016/j.intermet.2015.03.013
摘要
Although refractory high-entropy alloys have exceptional strength at high temperatures, they are often brittle at room temperature. One exception is the HfNbTaTiZr alloy, which has a plasticity of over 50% at room temperature. However, the strength of HfNbTaTiZr at high temperature is insufficient. In this study, the composition of HfNbTaTiZr is modified with an aim to improve its strength at high temperature, while retaining reasonable toughness at room temperature. Two new alloys with simple BCC structure, HfMoTaTiZr and HfMoNbTaTiZr, were designed and synthesized. The results show that the yield strengths of the new alloys are apparently higher than that of HfNbTaTiZr. Moreover, a fracture strain of 12% is successfully retained in the HfMoNbTaTiZr alloy at room temperature.
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