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Local chemical fluctuation mediated ductility in body-centered-cubic high-entropy alloys
被引:160
作者:
Bu, Yeqiang
[1
,2
]
Wu, Yuan
[3
]
Lei, Zhifeng
[3
]
Yuan, Xiaoyuan
[3
]
Wu, Honghui
[3
]
Feng, Xiaobin
[4
]
Liu, Jiabin
[1
,2
]
Ding, Jun
[5
]
Lu, Yang
[4
]
Wang, Hongtao
[2
]
Lu, Zhaoping
[3
]
Yang, Wei
[2
]
机构:
[1] Zhejiang Univ, Sch Mat Sci & Engn, Hangzhou 310027, Peoples R China
[2] Zhejiang Univ, Ctr X Mech, Hangzhou 310027, Peoples R China
[3] Univ Sci & Technol Beijing, Beijing Adv Innovat Ctr Mat Genome Engn, State Key Lab Adv Met & Mat, Beijing 100083, Peoples R China
[4] City Univ Hong Kong, Dept Mech Engn, Kowloon, Hong Kong 999077, Peoples R China
[5] Xi An Jiao Tong Univ, Ctr Alloy Innovat & Design, State Key Lab Mech Behav Mat, Xian 710049, Peoples R China
来源:
基金:
中国国家自然科学基金;
关键词:
MECHANICAL-PROPERTIES;
MICROSTRUCTURE;
PLASTICITY;
BEHAVIOR;
SLIP;
FLOW;
D O I:
10.1016/j.mattod.2021.02.022
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
High-entropy alloys (HEAs) open up a new horizon for discovering un-explored mechanical properties and deformation mechanisms. Local chemical fluctuations (LCFs) in HEAs were found to have significant influences on their mechanical performance, however, the underlying origins remain unclear. In this work, direct dynamic observation of the interaction between LCFs and dislocations was captured by in situ transmission electron microscopy in a ductile body-centered-cubic (BCC) HfNbTiZr HEA under loading. The observed dislocation pinning induced by LCFs contributes to the increment not only in the strength but also in the ductility due to strongly promoted dislocation interaction. The observed local double cross-slips caused by the LCFs distribute dislocations onto various atomic planes homogenously, which is also beneficial for ductilization in HfNbTiZr. Our findings not only shed light on the understanding of deformation mechanisms of HEAs, but also provide a new perspective to design ductile BCC HEAs.
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页码:28 / 34
页数:7
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