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题名

Highly pressurized helium nanobubbles promote stacking-fault-mediated deformation in FeNiCoCr high-entropy alloy

作者
通讯作者Ogata,S.
发表日期
2021-05-15
DOI
发表期刊
ISSN
1359-6454
卷号210
摘要

Tailoring nanoscale defect structures for desirable deformation behaviors is crucial to designing and optimizing the mechanical properties of alloys. Distinguishing from the predominant toughening mechanisms (e.g., mechanical twinning and deformation-induced phase transformation), here we report an unusual stacking-fault-mediated deformation in equiatomic FeNiCoCr high-entropy alloy (HEA) by controllably introducing helium nanobubbles with high pressures of ~2.5-4.7 gigapascals. Using in situ transmission electron microscopy nanomechanical testing, we demonstrate that highly pressurized helium nanobubbles can not only increase the strength by serving as dislocation obstacles but also enhance the strain hardening capacity and accommodate considerable plasticity via facilitating the multiplication and interaction of interwoven stacking faults. Through atomistic simulations, we reveal that high helium pressures contribute to reducing the nucleation energy of partial dislocations at the nanobubbles surface, which enhances dislocation nucleation rates and offers sustainable stacking fault sources for retaining ductility. Our results provide a novel design strategy for tuning deformation mechanisms of HEAs via introducing highly pressurized helium nanobubbles, which may open up avenues towards the facile tailoring of mechanical responses in micro/nanoscale HEA components.

关键词
相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
学校署名
其他
WOS记录号
WOS:000646950900003
EI入藏号
20211510193840
EI主题词
Chromium alloys ; Chromium metallography ; Cobalt alloys ; Cobalt metallography ; Crystallization ; Deformation ; Entropy ; Helium ; High resolution transmission electron microscopy ; In situ processing ; Iron alloys ; Iron metallography ; Nickel metallography ; Nucleation ; Plasticity ; Plasticity testing ; Stacking faults ; Strain hardening
EI分类号
Metallography:531.2 ; Heat Treatment Processes:537.1 ; Chromium and Alloys:543.1 ; Iron:545.1 ; Iron Alloys:545.2 ; Nonferrous Metals and Alloys excluding Alkali and Alkaline Earth Metals:549.3 ; Thermodynamics:641.1 ; Optical Devices and Systems:741.3 ; Chemical Operations:802.3 ; Chemical Products Generally:804 ; Crystal Lattice:933.1.1 ; Crystal Growth:933.1.2 ; Materials Science:951
ESI学科分类
MATERIALS SCIENCE
Scopus记录号
2-s2.0-85103694933
来源库
Scopus
引用统计
被引频次[WOS]:29
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/223735
专题理学院_物理系
工学院_环境科学与工程学院
工学院_材料科学与工程系
作者单位
1.Department of Mechanical Engineering,City University of Hong Kong,Hong Kong,Hong Kong
2.Department of Mechanical Science and Bioengineering,Osaka University,Osaka,Japan
3.Department of Physics,Southern University of Science and Technology,Shenzhen,China
4.School of Environmental Science and Engineering,Southern University of Science and Technology,Shenzhen,China
5.Department of Materials Science and Engineering,City University of Hong Kong,Kowloon,China
6.Centre for Advanced Nuclear Safety and Sustainable Development,City University of Hong Kong,Hong Kong,Hong Kong
7.Center for Elements Strategy Initiative for Structural Materials (ESISM),Kyoto University,Kyoto,Japan
8.Nano-Manufacturing Laboratory (NML),City University of Hong Kong Shenzhen Research Institute,Shenzhen,China
推荐引用方式
GB/T 7714
Lin,W. T.,Chen,D.,Dang,C. Q.,et al. Highly pressurized helium nanobubbles promote stacking-fault-mediated deformation in FeNiCoCr high-entropy alloy[J]. ACTA MATERIALIA,2021,210.
APA
Lin,W. T..,Chen,D..,Dang,C. Q..,Yu,P. J..,Wang,G..,...&Kai,J. J..(2021).Highly pressurized helium nanobubbles promote stacking-fault-mediated deformation in FeNiCoCr high-entropy alloy.ACTA MATERIALIA,210.
MLA
Lin,W. T.,et al."Highly pressurized helium nanobubbles promote stacking-fault-mediated deformation in FeNiCoCr high-entropy alloy".ACTA MATERIALIA 210(2021).
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