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Enhanced strength-ductility synergy via high dislocation density-induced strain hardening in nitrogen interstitial CrMnFeCoNi high-entropy alloy 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2023, 卷号: 141, 页码: 184-192
Authors:  Li, Huabing;  Han, Yu;  Feng, Hao;  Zhou, Gang;  Jiang, Zhouhua;  Cai, Minghui;  Li, Yizhuang;  Huang, Mingxin
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High-entropy alloy  Interstitials  Mechanical properties  First-principles calculations  Stacking fault energy  
Design and optimization of the composition and mechanical properties for non-equiatomic CoCrNi medium-entropy alloys 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2023, 卷号: 139, 页码: 232-244
Authors:  Yan, J. X.;  Zhang, Z. J.;  Zhang, P.;  Liu, J. H.;  Yu, H.;  Hu, Q. M.;  Yang, J. B.;  Zhang, Z. F.
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Medium-entropy alloys  First-principles calculations  Phase stability  Stacking-fault energy  Strength  Ductility  
Strain rate response of mechanical behaviors for Fe-8Mn-6Al-0.4C duplex low-density steels with different austenite stabilities 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 卷号: 862, 页码: 10
Authors:  Chen, Rong;  Chen, Peng;  Li, Xiao-Wu
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Duplex low-density steel  Mechanical behavior  Strain rate  Austenite stability  Deformation-induced martensitic  transformation  Transformation-induced plasticity  
Achievement of high strength and plasticity product of the nugget zone in friction stir welded high-Mn steel via controlling stacking fault energy 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 卷号: 862, 页码: 12
Authors:  Wang, Y. Q.;  Guo, S.;  Duan, R. H.;  Luo, Z. A.;  Chen, J.;  Ma, Z. Y.;  Xie, G. M.
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Friction stir welding  High Mn steel  Preheating  Stacking fault energy  TWIP effect  
A review on the fatigue cracking of twin boundaries: Crystallographic orientation and stacking fault energy 期刊论文
PROGRESS IN MATERIALS SCIENCE, 2023, 卷号: 131, 页码: 44
Authors:  Li, Linlin;  Zhang, Zhenjun;  Zhang, Peng;  Zhang, Zhefeng
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Twin boundary  Grain orientations  Fatigue cracking  Slip bands  Stacking fault energy  Dislocations  
Homogenization temperature dependent microstructural evolution and mechanical properties in a Nb-stabilized cast austenitic stainless steel 期刊论文
MATERIALS CHARACTERIZATION, 2022, 卷号: 194, 页码: 12
Authors:  Xie, Ang;  Chen, Shenghu;  Wu, Yang;  Jiang, Haichang;  Rong, Lijian
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Austenitic stainless steel  Niobium carbide  Homogenization  Stacking fault energy  Mechanical properties  
Microstructure Evolution and Mechanical Properties of Heterogeneous Nano/Ultrafine-Grained Austenitic Stainless Steel Prepared by Low-Temperature Rolling and Annealing 期刊论文
STEEL RESEARCH INTERNATIONAL, 2022, 页码: 12
Authors:  Liu, Jia;  Wang, Haojie;  Huang, Long;  Ma, Xing;  Zhang, Rong;  Deng, Xiangtao;  Wang, Zhaodong
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austenitic stainless steel  heterogeneous nano  ultrafine-grained steel  low-temperature rolling  mechanical properties  strain-induced martensite  
Effects of stacking fault energy on deformation induced grain boundary relaxation in nanograined Cu alloys 期刊论文
ACTA MATERIALIA, 2022, 卷号: 239, 页码: 9
Authors:  Sun, Y. A.;  Luo, Z. P.;  Li, X. Y.;  Lu, K.
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Nanograined metals  Grain boundary relaxation  Thermal stability  Stacking fault energy  Cu alloys  
Influence of Nonmetallic Interstitials on the Phase Transformation between FCC and HCP Titanium: A Density Functional Theory Study 期刊论文
METALS, 2022, 卷号: 12, 期号: 10, 页码: 12
Authors:  Yang, Mengmeng;  Hu, Jianan;  Cao, Shuo;  Feng, Guang;  Yang, Yi;  Liu, Renci;  Li, Shujun;  Zhao, Fu;  Feng, Aihan;  Hu, Qingmiao;  Huang, Aijun;  Wang, Hao
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titanium  interstitial  FCC phase  first-principles  
Influence of Nonmetallic Interstitials on the Phase Transformation between FCC and HCP Titanium: A Density Functional Theory Study 期刊论文
METALS, 2022, 卷号: 12, 期号: 10, 页码: 12
Authors:  Yang, Mengmeng;  Hu, Jianan;  Cao, Shuo;  Feng, Guang;  Yang, Yi;  Liu, Renci;  Li, Shujun;  Zhao, Fu;  Feng, Aihan;  Hu, Qingmiao;  Huang, Aijun;  Wang, Hao
Favorite  |  View/Download:7/0  |  Submit date:2023/05/09
titanium  interstitial  FCC phase  first-principles