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何超

2026-04-15  | 作者:  | 编辑:温馨  | 浏览量:

       

姓名:何超

性别:

职称:讲师

学历学位:博士研究生

硕/博士生导师:硕士生导师

研究方向:先进轻合金的制备与强韧化理论研究;

电话:

E-mail:20240139@huat.edu.cn

个人简介

何超,工学博士,硕士生导师。毕业于重庆大学材料科学与工程学院,师从蒋斌教授(长江学者、万人计划领军人才、潘复生院士团队),主要从事先进轻合金的制备与强韧化理论以及轻金属材料精密成形工艺等方面的研究。目前主持国家自然科学基金青年项目1项,2025年湖北省青年科技人才晨光托举工程A类和湖北省科学家精神宣讲团成员参与多项国家自然科学基金面上项目。累计在国内外知名期刊Journal of Materials Science and Technology,Materials Science and Engineering A, Journal of Alloys and Compounds等上发表SCI论文30余篇,并担任《Journal of Magnesium and Alloys》杂志青年编委。

欢迎具有金属材料、材料加工、焊接技术、仿真模拟、机械等相关专业背景的同学报考。

教育经历:

2013.09-2017.06,燕山大学,本科;

2017.09-2019.06,重庆大学,硕士;

2019.09-2023.06,重庆大学,博士;

工作经历:

2024.11-至今 167net必赢,必赢手机app,讲师



教学情况

《机械制造基础C》、《机械制造基础B》、《材料科学与工程基础A



研究课题

主持或参加科研项目情况

1. 国家自然科学基金青年科学基金项目,2025-2027,主持;

2. 2025年湖北省青年科技人才晨光托举工程(A类),2025-2026,主持;

3. 十堰市重点实验室开放基金2026-2027,主持;

4. 国家自然科学基金联合基金项目,2022-2025,260万元,参与。



获奖及专利


(1) 袁明,蒋斌,何超,等,一种镁合金复合瓦楞板及其制备方法,202111517189.8

(2) 袁明,蒋斌,何超,等,一种含稀土钇的高成形性镁合金双层复合板及其制备方法,202111517256.6

(3) 何超,翟志鹏,蒋斌,等,一种低合金高塑性镁-稀土合金及其制备方法,202511460041.3。




代表性论文


[1] C. He, L. Huang, B. Jiang, X. Chen, S. Wang, S. Bai, Q. Zhao, Q. Wang, G. Huang, F. Pan, Effect of the orthotropic basal texture on the deformation behavior of Mg alloys during the multiaxial stretch forming, Journal of Alloys and Compounds 1037 (2025): 182616.

[2] C. He, L. Liu, B. Jiang, Q. Wang, X. Chen, Y. Chai, S. Wang, T. Chen, S. Bai, Q. Zhao, F. Pan, Improving the room temperature stretch formability of Mg-2Gd alloy sheet by precompression and subsequent annealing, Journal of Alloys and Compounds 1027 (2025): 180527.

[3] Z. Zhai, C. He *, Y. Chai, X. Qian, S. Wang, X. Chen, J. Xiao, D. Ma, Q. Zhao, B. Jiang, Effect of Grain Boundary Misorientation Angle Distribution on the Mechanical Properties of AZ31 Alloys, Journal of Alloys and Compounds (2026): 187884. https://doi.org/10.1016/j.jallcom.2026.187884.

[4] C. He, J. Zhou, Y. Yang, B. Jiang, M. Yuan, Z. Dong, Y. Chai, W. He, G. Huang, D. Zhang, F. Pan, In-situ investigation on the microstructure evolution of Mg-2Gd alloys during the V-bending tests, Journal of Materials Science & Technology, 131 (2022): 167-176.

[5] C. He, M. Yuan, B. Jiang, S. Bai, B. Lei, X. Qian, G. Huang, D. Zhang, F. Pan, Improving the isotropy and formability of extruded Mg-2Gd-1Zn (wt.%) alloy sheet by introducing an ellipse texture, Materials Science and Engineering: A836 (2022): 142699.

[6] C. He, B. Jiang, Q. Wang, Y. Chai, J. Zhao, M. Yuan, G. Huang, D. Zhang, F. Pan, Effect of precompression and subsequent annealing on the texture evolution and bendability of Mg–Gd binary alloy, Materials Science and Engineering: A 799 (2021): 140290.

[7] C. He, M. Yuan, B. Jiang, L. Liu, Q. Wang, Y. Chai, W. Liu, G. Huang, D. Zhang, F. Pan,Anomalous effect of grain size on the room-temperature bendability of Mg–Gd alloy sheet, Materials Science and Engineering: A 832(2021): 142397.

[8] C. He, H. Zhu, M. Yuan, B. Jiang**, Q. Wang, Y. Chai, G. Huang, D. Zhang, F. Pan, Comparison of room-temperature stretch formability of the as extruded Mg–Gd alloys with different double-peak pole spacing, Journal of Materials Research and Technology 15 (2021): 4838-4851.

[9] C. He, S. Bai, Jiang B, L. Liu, Q. Wang, M. Yuan, Z. Dong, W. He, G. Huang, D. Zhang, F. Pan, Effect of Gd content on the microstructure, texture and mechanical properties of Mg-xGd-0.5Mn alloys, Journal of Materials Research and Technology, 20(2022): 343-358.

[10] C. He, Y. Zhang, M. Yuan, B. Jiang, Q. Wang, Y. Chai, G. Huang, D. Zhang, F. Pan, Improving the room-temperature bendability of Mg-3Al-1Zn alloy sheet by introducing a bimodal microstructure and the texture re-orientation, International Journal of Minerals, Metallurgy and Materials 29(7) (2022): 1322–1333.

[11] M. Yuan, C. He, J. Zhao, H. Yang, Y. Song, B. Lei, X. Qian, Z. Dong, Q. Li, B. Jiang, F. Pan, Microstructure evolution and mechanical properties of the Mg-Sm-Gd-Zn-Zr alloy during extrusion, Journal of Materials Research and Technology 15 (2021): 2518-2528.






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