魏代修
  • 出生年月:1987年4月
  • 民 族: 汉族
  • 政治面貌: 中国共产党党员
  • 最后学历: 博士研究生毕业
  • 最后学位: 工学博士
  • 技术职称: 教授
  • 导师类别: 博、硕导
  • 邮箱:daixiu_wei@njust.edu.cn
访问次数 269 次
更新日期 2024年7月19日
指导学科
  • 主学科
  • 二级学科
  • 研究方向
  • 跨学科
  • 二级学科
  • 研究方向
  • 专业学位
  • 研究方向
招生意向

金属材料专业、材料力学专业

工作经历

201605-202302    日本东北大学金属材料研究所     助理教授

201807-201812    美国麻省理工学院                       访问学者

202303- 至今               南京理工大学                               教授

教育经历

2012年09月-2016年03月       日本东北大学材料加工工程专业        获工学博士学位

获奖、荣誉称号

1. 入选国家“海外高层次青年人才计划”

2. 日本JIM/美国TMS联合评选的“国际青年领袖学者奖”

3. 日本金属学会奖励赏               

4. 日本粉末冶金协会优秀研究奖                        

5. 日本东北大学青年拔尖学者

社会、学会及学术兼职

担任International Journal of Extreme Manufacturing(IF: 14.7)、《特种铸造及有色合金》期刊青年编委,Metals、Frontier in Materials、Frontier in Bioengineering期刊Guest Editor。担任Nature Communications, Acta Materialia, International Journal of Plasticity, Journal of Materials Science & Technology, Materials Characterization等金属材料主流期刊的审稿人。

发表论文

发表SCI论文71篇,被SCI引用2700余次,单篇最高SCI引用216次。以第一作者或通讯作者发表42篇论文,2篇入选ESI高被引论文,1篇Materials Today、5篇Acta Materialia、3篇International Journal of Plasticity、3篇Journal of Materials Science & Technology、3篇Additive Manufacturing、2篇Materials Research Letters、3篇Scripta Materialia等。近期代表性论著如下:

1.  Z. Li, S. Ma, S. Zhao, W. Zhang, F. Peng, Q. Li, T. Yang, C. Wu, D. Wei, Y. Chou, P.K. Liaw, Y. Gao, Z. Wu, Achieving superb strength in single-phase FCC alloys via maximizing volume misfit. Materials Today, 2023;63:108-119. 

2. D. Wei, L. Wang, Y. Zhang, et al., Metalloid substitution elevates simultaneously the strength and ductility of face-centered-cubic high-entropy alloys. Acta Materialia, 20222;225:117571.

3. D. Wei, X. Li, S. Schönecker, J. Jiang, W.-M. Choi, B.-J. Lee, H.S. Kim, A. Chiba, H. Kato. Development of strong and ductile metastable face-centered cubic single-phase high-entropy alloys. Acta Materialia, 2019;181:318-330. 

4. D. Wei, Y. Koizumi, M. Nagasako, A. Chiba. Refinement of lamellar structures in Ti-Al alloy. Acta Materialia, 2017;125:81-97.

5. D. Wei, Y. Koizumi, A. Yamanaka, M. Yoshino, Y. Li, A. Chiba. Control of γ lamella precipitation in Ti-39 at.% Al single crystals by nanogroove-induced dislocation bands. Acta Materialia, 2015;96:352-365.

6. D. Wei, Y. Koizumi, H. Nishiyama, A. Yamanaka, M. Yoshino, S. Miyamoto, K. Yoshimi, A. Chiba. Nanoplastic deformation on Ti-39 at.% Al single crystals for manipulation of every single γ lamella. Acta Materialia, 2014;76:331-341. 

7. D. Wei, W. Gong, T. Tsuru, et al., Si-addition contributes to overcoming the strength-ductility trade-off in high-entropy alloys. International Journal of Plasticity, 2022;159:103443. 

8. D. Wei, W Gong, T Tsuru, T Kawasaki, S Harjo, B Cai, PK Liaw, H Kato. Mechanical behaviors of equiatomic and near-equiatomic face-centered-cubic phase high-entropy alloys probed using in situ neutron diffraction. International Journal of Plasticity, 2022;158:103417. 

9. H. Li, Y. Liu, W. Zhao, B. Liu, A. Tominaga, T. Shobu, D. Wei. Deformation mechanism of a strong and ductile maraging steel investigated using in-situ X-ray synchrotron diffraction. International Journal of Plasticity, 2023;165:103612. 

10. D. Wei, W. Gong, L. Wang, B. Tang, T. Kawasaki, S. Harjo, H. Kato. Strengthening of high-entropy alloys via modulation of cryo-pre-straining-induced defects. Journal of Materials Science & Technology, 2022;129:51-260. 

11. D. Wei, Y. Koizumi, A. Chiba, K. Ueki, K. Ueda, T. Narushima, Y. Tsutsumi, T. Hanawa, Heterogeneous microstructures and corrosion resistance of biomedical Co-Cr-Mo alloy fabricated by electron beam melting (EBM), Additive Manufacturing, 2018;24:103-114.

12. D. Wei, A. Anniyaer, Y. Koizumi, K. Aoyagi, M. Nagasako, Hidemi Kato, Akihiko Chiba, On microstructural homogenization and mechanical properties optimization of biomedical Co-Cr-Mo alloy additively manufactured by using electron beam melting, Additive Manufacturing, 2019;28:215-227.

13. D. Wei, X. Li, J. Jiang, W. Heng, Y. Koizumi, W.M. Choi, B.J Lee, H.S. Kim, H. Kato, A. Chiba, Novel Co-rich high performance twinning-induced plasticity (TWIP) and transformation-induced plasticity (TRIP) high-entropy alloys, Scripta Materialia, 2019;165:39-43. 

14. D. Wei, W. Gong, T. Kawasaki, S. Harjo, H. Kato. Regulation of strength and ductility of single-phase twinning-induced plasticity high-entropy alloys. Scripta Materialia, 2022;216:114738. 

15. D. Wei, Y. Koizumi, T. Takashima, M. Nagasako, A. Chiba. Fatigue improvement of electron beam melting-fabricated biomedical Co-Cr-Mo alloy by accessible heat treatment. Materials Research Letters, 2018;6:93-99.