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Knowledge Management System of Institue of Mechanics, CAS
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Indexed By:EI
Funding Project:Strategic Priority Research Program of the Chinese Academy of Sciences[XDB22040503]
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Investigation on the Fatigue Crack Propagation of Medium-Entropy Alloys with Heterogeneous Microstructures
期刊论文
MATERIALS, 2022, 卷号: 15, 期号: 17, 页码: 14
Authors:
Liu Y(刘洋)
;
Jiang P(姜萍)
;
Duan GH(段桂花)
;
Wang J(王晶)
;
Zhou LL(周玲玲)
;
Xie JJ(谢季佳)
Adobe PDF(28413Kb)
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Submit date:2022/09/29
heterogeneous microstructure
MEA
recrystallization annealing
fatigue crack propagation threshold
fatigue crack growth path
cyclic plastic zone
Prediction of the overall mechanical response of gradient nano-grained materials based on grain size distribution profile
期刊论文
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2022, 卷号: 248, 页码: 9
Authors:
Yu L(喻立)
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Submit date:2022/07/18
Constitutive modeling
Grain size distribution
Strength
Ductility
Gradient structured metals
Designing structures with combined gradients of grain size and precipitation in high entropy alloys for simultaneous improvement of strength and ductility
期刊论文
ACTA MATERIALIA, 2022, 卷号: 230, 页码: 11
Authors:
Tan S(覃双)
;
Yang MX(杨沐鑫)
;
Jiang P(姜萍)
;
Wang J(王建)
;
Wu XL(武晓雷)
;
Zhou H
;
Yuan FP(袁福平)
Adobe PDF(7610Kb)
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Submit date:2022/07/18
High-entropy alloys
Gradient structures
Precipitates
Strain hardening
Strengthening
Ductility
Excellent tensile properties induced by heterogeneous grain structure and dual nanoprecipitates in high entropy alloys
期刊论文
MATERIALS CHARACTERIZATION, 2022, 卷号: 186, 页码: 13
Authors:
Tan S(覃双)
;
Yang MX(杨沐鑫)
;
Jiang P(姜萍)
;
Yuan FP(袁福平)
;
Wu XL(武晓雷)
Adobe PDF(11841Kb)
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Submit date:2022/07/18
High-entropy alloys
Heterogeneous structures
Precipitates
Strain hardening
Strengthening
Ductility
Enhanced tensile properties by heterogeneous grain structures and coherent precipitates in a CoCrNi-based medium entropy alloy
期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 卷号: 832, 页码: 11
Authors:
Zhang ZH(张子晗)
;
Jiang P(姜萍)
;
Yuan FP(袁福平)
;
Wu XL(武晓雷)
Adobe PDF(18568Kb)
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Submit date:2022/03/28
High entropy alloys
Heterogeneous structures
Precipitates
Strain hardening
Strengthening
Ductility
Coupled Strengthening Effects by Lattice Distortion, Local Chemical Ordering, and Nanoprecipitates in Medium-Entropy Alloys
期刊论文
FRONTIERS IN MATERIALS, 2021, 卷号: 8, 页码: 12
Authors:
Cheng WQ(程文强)
;
Yuan FP(袁福平)
;
Wu XL(武晓雷)
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Submit date:2022/01/13
high-entropy alloys
lattice distortion
local chemical ordering
precipitation
strengthening mechanisms
molecular dynamics simulations
Mechanical Properties and Deformation Mechanisms of Graphene Foams with Bi-Modal Sheet Thickness by Coarse-Grained Molecular Dynamics Simulations
期刊论文
MATERIALS, 2021, 卷号: 14, 期号: 19, 页码: 14
Authors:
Liu, Shenggui
;
Lyu, Mindong
;
Wang C(王超)
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Submit date:2021/11/29
graphene foam materials
microstructure
bi-modal sheet thickness
stress-strain curve
coarse-grained molecular dynamics
Microscopic deformation mechanism and main influencing factors of carbon nanotube coated graphene foams under uniaxial compression
期刊论文
NANOTECHNOLOGY, 2021, 卷号: 32, 期号: 34, 页码: 11
Authors:
Wang, Shuai
;
Wang C(王超)
;
Khan, Muhammad Bilal
;
Chen, Shaohua
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Submit date:2021/08/03
carbon nanotube-coated graphene foam
uniaxial compression
numerical experiment
mechanical property
microscopic deformation mechanism
Deformation induced hcp nano-lamella and its size effect on the strengthening in a CoCrNi medium-entropy alloy
期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2021, 卷号: 82, 页码: 122-134
Authors:
Ma Y(马彦)
;
Yang MX(杨沐鑫)
;
Yuan FP(袁福平)
;
Wu XL(武晓雷)
Adobe PDF(10900Kb)
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Submit date:2021/08/03
Strengthening mechanisms
Phase transformation
Twinning
Medium entropy alloys
Molecular dynamics simulations
Crack initiation mechanisms under two stress ratios up to very-high-cycle fatigue regime for a selective laser melted Ti-6Al-4V
期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2021, 卷号: 149, 页码: 10
Authors:
Du LM(杜雷鸣)
;
Pan XN(潘向南)
;
Qian GA(钱桂安)
;
Zheng L(郑亮)
;
Hong YS(洪友士)
Adobe PDF(14294Kb)
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Submit date:2021/08/03
Very-high-cycle fatigue
Crack initiation mechanism
Stress ratio
Ti-6Al-4V
Selective laser melting