材料科学
共晶体系
合金
极限抗拉强度
高熵合金
抗压强度
同质性(统计学)
复合材料
延展性(地球科学)
蠕动
数学
统计
作者
M. Z. Wang,Yifu Shen,Nan Jia,W.Y. Xue,Z. D. Wang
标识
DOI:10.1080/21663831.2024.2383352
摘要
The strength−ductility tradeoff and composition homogeneity have been the obstacles to obtaining advanced structural alloys. To overcome the limitations, we develop a novel coherently eutectic high-entropy alloy, i.e. Fe30Cr15V15Ni20Al20. By introducing a BCC phase with a low lattice misfit (0.13%) and constructing the BCC/B2 eutectic-phase interfaces, the alloy shows high mechanical stability. The low lattice mismatch contributes to the good stability of the phase interfaces and inhibits crack initiation. Thus, the as-cast Fe30Cr15V15Ni20Al20 alloy shows an excellent tensile yield strength of 929 MPa and a high yield compressive strength of 2423 MPa. In addition, it shows an excellent compressive strain of 22.3%.
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