合金
材料科学
微观结构
相(物质)
延展性(地球科学)
延伸率
高熵合金
复合材料
极限抗拉强度
化学
蠕动
有机化学
作者
Jun Zhou,Hengcheng Liao,Hong Mei Chen,Di Feng,Weijun Zhu
出处
期刊:Vacuum
[Elsevier]
日期:2023-09-01
卷期号:215: 112297-112297
被引量:4
标识
DOI:10.1016/j.vacuum.2023.112297
摘要
A coherent dual-phase structure in Fe3.5Ni3.5Cr2MnAl0.7 high-entropy alloy (HEA) was obtained through vacuum arc-melting and subsequently homogenizing. The microstructure and mechanical properties of as-homogenized Fe3.5Ni3.5Cr2MnAl0.7 HEA were examined. Fe3.5Ni3.5Cr2MnAl0.7 HEA is composed of dual phases, face-centered cubic (FCC) matrix phase and body-centered cubic (BCC) minor phase, the relationship between them meets the Kurdjumov-Sachs orientation. The chemical composition of FCC matrix phase is close to the designed composition of the studied alloy, while that of BCC phase is in nickel- and aluminum-rich. The as-homogenized Fe3.5Ni3.5Cr2MnAl0.7 HEA has excellent comprehensive mechanical properties, with an excellent combination of yield strength (650 MPa) and elongation (22.8%), which is attributed to the synergic effect of soft FCC phase and hard BCC phase with coherent relationship during plastic deformation.
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