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Multi-phase FCC-based composite eutectic high entropy alloy with multi-scale microstructure

delete2024-01-01
delete40
PRE
AI
X
Xicong Ye *
Z
Zhongheng Diao
H
Haofeng Lei
L
Liang Wang *
Z
Zhe Li
李博 封面图
李博 (Bo Li) *
J
Jiaxing Feng
陈军朝 封面图
陈军朝 (Junchao Chen)
X
Xinwang Liu
东芳 封面图
东芳 (Dong Fang)
DOI:10.1016/j.msea.2023.145815delete
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摘要

摘要

En 中文
Multi-phase multi-scale composite eutectic alloys containing micrometer-scale dendrites and nano structures provide an opportunity for the development of ultrahigh strength materials. Eutectic high entropy alloys (EHEAs) facilitate the design of eutectic alloys with such structures in the as-cast state due to the hysteretic diffusion effect characteristic of high entropy alloys. Nevertheless, the prevailing design approach for eutectic high-entropy alloys predominantly emphasizes biphase eutectics, with limited attention directed towards methods for designing multiphase eutectic structures. In this work, we propose a pseudo-ternary based idea to design and prepare multiphase multiscale FCC-based triple-phase eutectic high-entropy alloys, i.e., CoCrFeNi-NiAl-X. Using this strategy, a series of triple-phase EHEAs consisting of face-centered cubic (FCC), ordered body-centered cubic (B2), and Laves phase with topologically-close-packed structure (TCP) were successfully prepared by arc melting, like CoCrFeNi-NiAl-Nb. The four designed FCC-based multi-phase multi-scale EHEAs can be categorized into two main groups: 1) primary phase FCC and biphase or triple-phase eutectic; and 2) primary phase FCC, biphase eutectic and triple-phase eutectic. The designed FCC-based multi-phase multi-scale EHEAs exhibit promising mechanical properties. The design idea is not only applicable to the current work, but also provides a new strategy for the later design of other multi-phase multi-scale composite EHEAs, like CoCrFeNi-NiAl-Ta.
Keyword:
Eutectic high entropy alloy
Pseudo ternary method
Triple -phase eutectic
Mechanical properties

期刊

M
Materials Science and Engineering A-Structural Materials Properties Microstructure and Processing
IF:
7
论文数:
3.7W
被引数:
13.8W

机构

H
harbin institute of technology
学者数:
8.0W
论文数: 6.6W
被引数: 66
C
china three gorges university
学者数:
1.1W
论文数: 6.1K
被引数: 114
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