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曹晟

13AF7

职称:副教授

工作部门:汕头大学工学院机械工程系

联系地址:广东省汕头市金平区大学路243号机电楼310

邮箱:shcao@stu.edu.cn


教育背景:

2008.09-2013.06中南大学,材料科学与工程专业获工学学士

2013.07-2017.04澳大利亚Monash大学,材料科学与工程专业获博士学位(Doctor of Philosophy


工作经历:

2017.04至2018.03, 澳大利亚Monash大学材料科学与工程学院, 博士后

2018.03至2019.05, 上海理工大学, 材料科学与工程学院, 讲师

2019.09至2020.12, 英国The University of Manchester科学与工程学院, 博士后

2021.03至现在, 汕头大学, 工学院机械工程系, 副教授

荣誉获奖:

2013至2016Australian Postgraduate Award (澳大利亚研究生奖)

2013至2016International Postgraduate Research Scholarship (留学生研究奖学金)


研究领域:金属材料增材制造技术金属材料近净成型技术金属材料焊接、应力腐蚀

科研项目:

2021.03-2024.03,汕头大学科研启动基金,80万元,项目负责人

2018.09-2019.05上海微创医疗器械(集团)有限公司-髋关节臼杯金属3D打印工艺开发,企业科研合作,19.8万元,项目负责人


主要论文:

[1] S. Cao1, *, C. V. S. Lim, B. Hinton, X. Wu, Effects of Microtexture and Ti3Al (α2) Precipitates on Stress-Corrosion Cracking properties of a Ti-8Al-1Mo-1V Alloy, Corrosion Science 116 (2017) 22–33.

[2] S. Cao1, *, S. Zhu, C. V. S. Lim, X. Zhou, X. Chen, B. R. W. Hinton, R. R. Boyer, J. C. Williams, X. Wu. The Mechanism of Aqueous Stress-Corrosion Cracking of α + β Titanium Alloys, Corrosion Science 125 (2017) 29–39.

[3] S. Cao1, *, Z. Chen1, C.V.S. Lim, K. Yang, Q. Jia, T. Jarvis, D. Tomus, X. Wu, Defect, microstructure, and mechanical property of Ti-6Al-4V alloy fabricated by high-power selective laser melting, JOM 69 (2017) 2684-2692.

[4] S. Cao1, *, R. Chu, X. Zhou, K. Yang, Q. Jia, C.V.S. Lim, A. Huang*, X. Wu, Role of martensite decomposition in tensile properties of selective laser melted Ti-6Al-4V, Journal of Alloys and Compounds 744 (2018) 357–363.

[5] S. Cao1, Q. Hu, A. Huang*, Z. Chen, M. Sun, J. Zhang, C. Fu, Q. Jia, C.V.S. Lim, R. R. Boyer, Y. Yang*, X. Wu, Static Coarsening Behaviour of Lamellar Microstructure in Selective Laser Melted Ti-6Al-4V, Journal of Materials Science & Technology 35 (2019) 1578-1586.

[6] K. Zhang1, X. Tian, M. Bermingham, J. Rao, Q. Jia, Y. Zhu, X. Wu, S. Cao*, A. Huang*, Effects of boron addition on microstructures and mechanical properties of Ti-6Al-4V manufactured by direct laser deposition, Materials & Design 184 (2019) 108191.

[7] S. Cao1, *, X. Zhou1, C. V. S. Lim, R. R. Boyer, J. C. Williams, X. Wu, A strong and ductile Ti-3Al-8V-6Cr-4Mo-4Zr (Beta-C) alloy achieved by introducing trace carbon addition and cold work, Scripta Materialia 178 (2020) 124-128.

[8] S. Cao1, B. Zhang, Y. Yang*, Q. Jia, L. Li, S. Xin, X. Wu, Q. Hu*, C.V.S. Lim, On the role of cooling rate and temperature in forming twinned α’ martensite in Ti–6Al–4V, Journal of Alloys and Compounds 813 (2020) 152247.

[9] W. Kang, Y. Yang*, S. Cao*, L. Li, S. Xin, H. Wang, Z. Cao, E. Liang, X. Zhang, A. Huang, Hot Deformation Behavior of a New Al–Mn–Sc Alloy, Materials 13 (2020) 22.

[10] Y. Yang1, D. Xu, S. Cao*, S. Wu*, Z. Zhu, H. Wang, L. Li, S. Xin, L. Qu, A. Huang, Effect of strain rate and temperature on the deformation behavior in a Ti-23.1Nb-2.0Zr-1.0O titanium alloy, Journal of Materials Science & Technology 73 (2021) 52-60.


发明专利:

[1] 孙明、刘美娟、曹晟、江鸿、杨义、倪悦,采用静电场辅助镁铝系合金时效热处理的方法,CN 109252116 A,2019。

[2]曹志强、曹晟、杨义、沈爱萍张和、侯娟,一种嵌入式激光选区熔化3D打印用基板,CN 110216284 A,2019。


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