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Comparative study on the fatigue properties and dislocation evolution of three kinds of aluminum alloys 期刊论文
INTERNATIONAL JOURNAL OF FATIGUE, 2024, 卷号: 178, 页码: 9
作者:  Zhang, Mengxiao;  Li, Juan;  Song, Hongwu;  Zhang, Shihong
收藏  |  浏览/下载:11/0  |  提交时间:2024/01/07
Aluminum alloy  Microstructure  Fatigue strength  S-N curve  Dislocation evolution  
Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design 期刊论文
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:  Zhang, Yu;  Zhai, Zirong;  Wu, Zhaoxuan;  Lin, Wenhu;  Yang, Rui;  Zhang, Zhenbo
收藏  |  浏览/下载:2/0  |  提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy  Laser powder bed fusion  In situ tensile test  Microstructure characterization  Mechanical property  Dislocation  
Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design 期刊论文
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:  Zhang, Yu;  Zhai, Zirong;  Wu, Zhaoxuan;  Lin, Wenhu;  Yang, Rui;  Zhang, Zhenbo
收藏  |  浏览/下载:2/0  |  提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy  Laser powder bed fusion  In situ tensile test  Microstructure characterization  Mechanical property  Dislocation  
Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design 期刊论文
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:  Zhang, Yu;  Zhai, Zirong;  Wu, Zhaoxuan;  Lin, Wenhu;  Yang, Rui;  Zhang, Zhenbo
收藏  |  浏览/下载:2/0  |  提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy  Laser powder bed fusion  In situ tensile test  Microstructure characterization  Mechanical property  Dislocation  
Tailoring high-temperature mechanical properties of laser powder bed fusion Ti-6.5Al-2Zr-1Mo-1 V alloy via microstructure design 期刊论文
MATERIALS & DESIGN, 2023, 卷号: 236, 页码: 18
作者:  Zhang, Yu;  Zhai, Zirong;  Wu, Zhaoxuan;  Lin, Wenhu;  Yang, Rui;  Zhang, Zhenbo
收藏  |  浏览/下载:2/0  |  提交时间:2025/04/27
Ti-6.5Al-2Zr-1Mo-1V alloy  Laser powder bed fusion  In situ tensile test  Microstructure characterization  Mechanical property  Dislocation  
Prediction of Dynamically Recrystallized Microstructure of AZ31 Magnesium Alloys in Hot Rolling Using an Expanded Dislocation Density Model 期刊论文
JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2022, 页码: 9
作者:  Wang, Jianqiang;  Guo, Lili;  Wang, Changfeng;  Zhao, Ying;  Qi, Wei;  Yun, Xinbing
收藏  |  浏览/下载:118/0  |  提交时间:2022/09/16
dislocation density  dynamic recrystallization  magnesium alloys  microstructure simulation  hot rolling  
Plastic deformation induced extremely fine nano-grains in nickel 期刊论文
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2021, 卷号: 802, 页码: 9
作者:  Guo, X. K.;  Luo, Z. P.;  Li, X. Y.;  Lu, K.
收藏  |  浏览/下载:106/0  |  提交时间:2021/10/15
Nano-grained metals  Microstructure  Deformation mechanism  Partial dislocation  HAADF-STEM  
Characterization of microstructure and nanoscale phase in Mg-15Gd-1Zn (wt.%) alloy fabricated by rotating magnetic field casting 期刊论文
MATERIALS CHARACTERIZATION, 2020, 卷号: 170, 页码: 9
作者:  Chang, Zhiyu;  Wu, Yujuan;  Heng, Xiangwen;  Su, Ning;  Zhang, Yu;  Yu, Baoyi;  Zheng, Li;  Shao, Xiaohong;  Peng, Liming
收藏  |  浏览/下载:161/0  |  提交时间:2021/03/15
Mg-Gd-Zn alloy  Rotating magnetic field (RMF)  Microstructure  Long-period stacking order (LPSO) structures  Dislocation  gamma' precipitate  
Effect of Heat Treatments on Microstructural Evolution and Tensile Properties of 15Cr12MoVWN Ferritic/Martensitic Steel 期刊论文
METALS, 2020, 卷号: 10, 期号: 9, 页码: 17
作者:  Ma, Tingwei;  Hao, Xianchao;  Wang, Ping
收藏  |  浏览/下载:139/0  |  提交时间:2021/02/02
15Cr12MoVWN steel  tensile properties  precipitate  dislocation density  microstructure  
Anisotropic Stress Rupture Properties of a 3rd-Generation Nickel-Based Single-Crystal Superalloy at 1100 °C/150 MPa 期刊论文
Acta Metallurgica Sinica(English Letters), 2020, 卷号: 33, 期号: 3, 页码: 446-458
作者:  Li Yifei;  Wang Li;  Zhang Gong;  Qi Dongqing;  Du Kui;  Lou Langhong
收藏  |  浏览/下载:137/0  |  提交时间:2021/02/02
Single-crystal superalloy  Stress rupture  Anisotropy  Microstructure  Dislocation