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Microstructure and mechanical properties of lightweight Ti3Zr1.5NbVAlx (x=0, 0.25, 0.5 and 0.75) refractory complex concentrated alloys 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 卷号: 130, 页码: 64-74
Authors:  Zeng, Shuai;  Zhou, Yongkang;  Li, Huan;  Zhang, Hongwei;  Zhang, Haifeng;  Zhu, Zhengwang
Favorite  |  View/Download:94/0  |  Submit date:2022/07/14
Refractory complex concentrated alloys  Microstructure  Mechanical properties  Strengthening mechanisms  Deformation behavior  
Transition of deformation mechanisms from twinning to dislocation slip in nanograined pure cobalt 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 卷号: 121, 页码: 124-129
Authors:  Qi, Y. W.;  Luo, Z. P.;  Li, X. Y.;  Lu, K.
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Nanograin  Cobalt  Deformation mechanism  Hall-Petch relation  
Low-Temperature Superplastic Deformation of Cold-Rolled Fe-5.6Mn-1.1Al-0.2C Steel 期刊论文
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2022, 页码: 12
Authors:  Zhang, Hongtao;  Cai, Minghui;  Zhu, Wanjun;  Sun, Shenghui;  Yan, Haile;  Yao, Shengjie;  Luan, Yikun;  Tang, Shuai;  Hodgson, P. D.
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Mechanical performance and deformation mechanisms at cryogenic temperatures of 316L stainless steel processed by laser powder bed fusion: In situ neutron diffraction 期刊论文
SCRIPTA MATERIALIA, 2022, 卷号: 218, 页码: 7
Authors:  Tang, Lei;  Magdysyuk, Oxana, V;  Jiang, Fuqing;  Wang, Yiqiang;  Evans, Alexander;  Kabra, Saurabh;  Cai, Biao
Favorite  |  View/Download:61/0  |  Submit date:2022/09/16
Additive manufacturing  Cryogenic deformation  Neutron diffraction  Austenitic stainless steel  
Mechanical performance and deformation mechanisms at cryogenic temperatures of 316L stainless steel processed by laser powder bed fusion: In situ neutron diffraction 期刊论文
SCRIPTA MATERIALIA, 2022, 卷号: 218, 页码: 7
Authors:  Tang, Lei;  Magdysyuk, Oxana, V;  Jiang, Fuqing;  Wang, Yiqiang;  Evans, Alexander;  Kabra, Saurabh;  Cai, Biao
Favorite  |  View/Download:61/0  |  Submit date:2022/09/16
Additive manufacturing  Cryogenic deformation  Neutron diffraction  Austenitic stainless steel  
Influence of Hold Time on Dwell Fatigue Behavior in IMI834 Disc Forging 期刊论文
JOM, 2022, 页码: 12
Authors:  You, Ruyue;  Zhang, Mengmeng;  Qiu, Jianke;  Fang, Chao;  Zhao, Chunling;  Lu, Bo;  Ji, Haibin;  Ma, Yingjie;  Lei, Jiafeng;  Yang, Rui
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Atomic-scale icosahedral short-range ordering in a rejuvenated Zr-based bulk metallic glass upon deep cryogenic treatment 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 卷号: 850, 页码: 10
Authors:  Zhu, Yuhui;  Zhou, Yongkang;  Wang, Aimin;  Li, Hong;  Fu, Huameng;  Zhang, Hongwei;  Zhang, Haifeng;  Zhu, Zhengwang
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Bulk metallic glasses  Deep cryogenic treatment  Structural heterogeneity  Icosahedral short-range ordering  Rejuvenation  
Superior mechanical properties and deformation mechanisms of a 304 stainless steel plate with gradient nanostructure 期刊论文
INTERNATIONAL JOURNAL OF PLASTICITY, 2022, 卷号: 155, 页码: 18
Authors:  Sun, Y. T.;  Kong, X.;  Wang, Z. B.
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Gradient nanostructured  Austenitic stainless steel  Strength-ductility synergy  Strain hardening capability  Strain incompatibility  
In situ neutron diffraction unravels deformation mechanisms of a strong and ductile FeCrNi medium entropy alloy 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 卷号: 116, 页码: 103-120
Authors:  Tang, L.;  Jiang, F. Q.;  Wrobel, J. S.;  Liu, B.;  Kabra, S.;  Duan, R. X.;  Luan, J. H.;  Jiao, Z. B.;  Attallah, M. M.;  Nguyen-Manh, D.;  Cai, B.
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Medium entropy alloy  Multi-component alloy  Cryogenic temperature  Neutron diffraction  
In situ neutron diffraction reveals the effect of Cu micro-alloying on low-temperature tensile properties of TWIP steels 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 卷号: 845, 页码: 16
Authors:  Tang, Lei;  Jiang, Fuqing;  Liu, Huibin;  Kabra, Saurabh;  Cai, Biao
Favorite  |  View/Download:37/0  |  Submit date:2022/09/16
High manganese steel  Cryogenic deformation  Neutron diffraction  Stacking fault energy