姜爽

发布时间:2025-03-06浏览次数:10

姜爽,女,讲师/硕士生导师

出生年月199111

邮箱jiangs@epm.neu.edu.cn


1、教育学习经历

2017-092022-04,雷竞技官方主页,材料学,博士

2018-112020-12Linköping University(瑞典),工程材料,联合培养

2014-092017-01,雷竞技官方主页,材料学,硕士

2010-092014-07,雷竞技官方主页,材料科学与工程,学士


2、研究工作经历

2023-02至今,雷竞技官方主页,材料电磁过程研究教育部重点实验室,讲师


3、主要研究方向

(1)金属材料变形微观机制和原位力学行为

(2)同步辐射和中子衍射技术在合金中的应用及晶体学分析

(3)高性能金属材料的设计、制备和强韧化


4、主要科研成果

已在Acta MaterialiaInternational Journal of PlasticityJournal of Materials Science & Technology等国际高水平期刊上发表SCI论文20余篇,授权发明专利3项。

代表性论文:

(1)S. Jiang, R. Lin Peng, Z.F. He, et al. Mechanical behavior anisotropy of multilayered metallic composites revealed by in-situ synchrotron X-ray diffraction: Example of Ti/Nb laminates processed by accumulative roll bonding,Acta Materialia287 (2025) 120815.

(2)S. Jiang*, Y.T. Li, Y.F. Zhao, et al. Facile route to bulk multi-gradient-structured steel for high strength and toughness,Materials Science and Engineering: A923 (2025) 147749.

(3)S. Jiang, Y.T. Li, Z.F. He, et al. Unraveling the origin of ductility in multilayered Ti/Nb composites: role of dislocation evolution,Materials Research Letters(2024) 12(12) (2024) 903-911.

(4) L.Q. Cui, D.Y. Deng,S. Jiang*, et al. New insights into the anisotropic ductility of additively manufactured Inconel 718,International Journal of Plasticity169 (2023) 103738.

(5)S. Jiang, R. Lin Peng, X. Zhao, et al. Deformation incompatibility enables hetero-deformation induced strengthening in Ti/Nb laminates.Materials Research Letters11 (2023) 126-133.

(6)S. Jiang, R. Lin Peng, K. Máthis, et al. Shear banding-induced slip enables unprecedented strength-ductility combination of laminated metallic composites.Journal of Materials Science & Technology110 (2022) 260-268.

(7)S. Jiang, R. Lin Peng, K. An, et al. Unraveling dislocation-type evolution dominated strain hardening in laminated Ti/Nb composites.Materials Science and Engineering: A851 (2022) 143620.

(8)S. Jiang, R. Lin Peng, Z. Hegedues, et al. Micromechanical behavior of multilayered Ti/Nb composites processed by accumulative roll bonding: An in-situ synchrotron X-ray diffraction investigation.Acta Materialia205 (2021) 116546.

全部论文列表见:https://www.researchgate.net/profile/Shuang-Jiang-9/research


5、承担项目情况

(1)国家自然科学基金青年项目,523011362024-012026-12

(2)辽宁省自然科学基金联合基金,2023-BSBA-1112023-122025-11

(3)教育部中央高校业务费项目,N24090052024-012025-12


6、获奖及荣誉

(1)中国有色金属学会(NFSOC)优秀博士学位论文,2023

(2)雷竞技官方主页优秀博士学位论文,2023

(3)辽宁省自然科学学术成果奖(一等),2023年,排名2/3

(4)沈阳市自然科学学术成果奖(二等),2023年,排名1/5


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