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Effect of thermal induced porosity on high-cycle fatigue and very high-cycle fatigue behaviors of hot-isostatic-pressed Ti-6Al-4V powder components 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 卷号: 98, 页码: 177-185
Authors:  Cheng, Min;  Lu, Zhengguan;  Wu, Jie;  Guo, Ruipeng;  Qiao, Junwei;  Xu, Lei;  Yang, Rui
Favorite  |  View/Download:36/0  |  Submit date:2022/07/01
Titanium alloy  Hot isostatic pressing  Fatigue life  Crack initiation type  Porosity  
Residual stress and distortion in thick-plate weld joint of AF1410 steel: finite element simulations and experimental studies 期刊论文
MATERIALS RESEARCH EXPRESS, 2022, 卷号: 9, 期号: 1, 页码: 14
Authors:  Zhang, Kaiyuan;  Dong, Wenchao;  Lu, Shanping
Favorite  |  View/Download:45/0  |  Submit date:2022/07/01
residual stress  distortion  AF1410 steel  solid-state phase transformation  multi-pass weld  contour method  
Effects of Grain Refinement on the Low-Cycle Fatigue Behavior of IN792 Superalloys 期刊论文
CRYSTALS, 2021, 卷号: 11, 期号: 8, 页码: 15
Authors:  Du, Beining;  Sheng, Liyuan;  Cui, Chuanyong;  Hu, Ziyang;  Sun, Xiaofeng
Favorite  |  View/Download:102/0  |  Submit date:2021/11/22
Ni-based superalloy  grain refinement  low-cycle fatigue  fracture  dislocation  
A Study of Microstructure and Mechanical Properties for the Autogenous Single-Pass Butt Weldment of a Ferritic/Martensitic Steel Using Gas Tungsten Arc Welding 期刊论文
ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2020, 页码: 11
Authors:  Wu, Dong;  Wei, Shitong;  Lu, Shanping
Favorite  |  View/Download:112/0  |  Submit date:2021/02/02
Martensitic stainless steel  Gas tungsten arc welding (GTAW)  Post-weld heat treatment  Microstructure  Mechanical properties  
A Study of Microstructure and Mechanical Properties for the Autogenous Single-Pass Butt Weldment of a Ferritic/Martensitic Steel Using Gas Tungsten Arc Welding 期刊论文
ACTA METALLURGICA SINICA-ENGLISH LETTERS, 2020, 页码: 11
Authors:  Wu, Dong;  Wei, Shitong;  Lu, Shanping
Favorite  |  View/Download:106/0  |  Submit date:2021/02/02
Martensitic stainless steel  Gas tungsten arc welding (GTAW)  Post-weld heat treatment  Microstructure  Mechanical properties  
Properties of Ti-Ni Pre-alloyed Powder Used for Electron Beam Melting 期刊论文
RARE METAL MATERIALS AND ENGINEERING, 2020, 卷号: 49, 期号: 9, 页码: 3218-3224
Authors:  Ren Dechun;  Zhang Huibo;  Li Shujun;  Hou Wentao;  Wang Jian;  Jin Wei;  Yang Rui
Favorite  |  View/Download:90/0  |  Submit date:2021/02/02
Ti-Ni pre-alloyed powder  electron beam melting  heat treatment  thermal cycle  phase transformation behavior  
Properties of Ti-Ni Pre-alloyed Powder Used for Electron Beam Melting 期刊论文
RARE METAL MATERIALS AND ENGINEERING, 2020, 卷号: 49, 期号: 9, 页码: 3218-3224
Authors:  Ren Dechun;  Zhang Huibo;  Li Shujun;  Hou Wentao;  Wang Jian;  Jin Wei;  Yang Rui
Favorite  |  View/Download:92/0  |  Submit date:2021/02/02
Ti-Ni pre-alloyed powder  electron beam melting  heat treatment  thermal cycle  phase transformation behavior  
Investigations on cyclic deformation behaviors and corresponding failure modes of a Ni-Based superalloy 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2020, 卷号: 791, 页码: 12
Authors:  Kong, Wei-Wen;  Yuan, Chao;  Zhang, Bao-Ning
Favorite  |  View/Download:68/0  |  Submit date:2021/02/02
Superalloy  High cycle fatigue  Failure mode  Dislocation structure  Fatigue life  
Microstructure and fatigue behavior of laser-powder bed fusion austenitic stainless steel 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2020, 卷号: 46, 页码: 191-200
Authors:  Yu, Chenfan;  Zhang, Peng;  Zhang, Zhefeng;  Liu, Wei
Favorite  |  View/Download:158/0  |  Submit date:2021/02/02
Laser-powder bed fusion  Austenitic stainless steel  Microstructures  Fatigue crack  
Microstructure and fatigue behavior of laser-powder bed fusion austenitic stainless steel 期刊论文
JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2020, 卷号: 46, 页码: 191-200
Authors:  Yu, Chenfan;  Zhang, Peng;  Zhang, Zhefeng;  Liu, Wei
Favorite  |  View/Download:154/0  |  Submit date:2021/02/02
Laser-powder bed fusion  Austenitic stainless steel  Microstructures  Fatigue crack