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领域:新材料产业 学校:东北大学职称:教授

(1) 纳米结构金属材料设计与制备 采用塑性加工、粉末冶金、3D打印等技术制备纳米结构铜合金、高熵合金、奥氏体钢、铝合金等。 (2) 高强高导金属材料 以铜合金为主,开展成分设计、先进制备及加工技术。 (3) 金属材料力学行为 探讨新型金属材料奇异力学行为及机制;疲劳性能优化设计。...

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教育背景

2002.09--2006.07 天津大学,材料科学与工程学院,工学学士 2006.09--2012.07 中国科学院金属研究所,工学博士

工作经历

2012.10--2014.09 日本京都大学,JSPS外国人特别研究员 2014.10--2014.11 日本京都大学,ESISM项目助理教授 2015.01--2018.10 中国科学院金属研究所,副研究员 2018.11--至今 东北大学材料科学与工程学院,教授

项目课题经历

主持及参与十余项纵向、横向基金,主要包括国家自然科学基金、中国科学院-日本学术振兴会合作研究项目、德国KSM外企三期项目等

论文、成果、著作等

共发表SCI论文60余篇,被引用约1300次,主要包括7篇Acta Materialia,8篇Scripta Materialia,2篇Materialia,3篇Materials Research Letters,3篇Journal of Materials Science & Technology,14篇Materials Science and Engineering A,1篇ESI热点论文,2篇ESI高被引论文。 完整信息见个人学术主页:https://www.researchgate.net/profile/Yanzhong_Tian 代表性论文: (1) Y.Z. Tian*, Y.P. Ren, S. Gao, R.X. Zheng, J.H. Wang, H.C. Pan, Z.F. Zhang, N. Tsuji, G.W. Qin, Two-stage Hall-Petch relationship in Cu with recrystallized structure, Journal of Materials Science & Technology 48 (2020) 31-35. (2) S.J. Sun, Y.Z. Tian*, H.R. Lin, S. Lu, H.J. Yang, Z.F. Zhang*, Modulating the prestrain history to optimize strength and ductility in CoCrFeMnNi high-entropy alloy, Scripta Materialia 163 (2019) 111-115. (3) R. Liu, Y.Z. Tian*, Z.J. Zhang, P. Zhang, Z.F. Zhang*, Exploring the fatigue strength improvement of Cu-Al alloys, Acta Materialia 144 (2018) 613-626. (4) Y.Z. Tian*, S. Gao, L.J. Zhao, S. Lu, R. Pippan, Z.F. Zhang*, N. Tsuji, Remarkable transitions in yielding behavior and Lüders deformation in pure Cu by changing grain sizes, Scripta Materialia142 (2018)88-91. (5) Y.Z. Tian*, T. Xiong, S.J. Zheng, Y. Bai, J. Freudenberger, R. Pippan, Z.F. Zhang*, N. Tsuji, Ultrafine-grained CuAg7Zr0.05 alloy with fully recrystallized microstructure, Materialia3 (2018) 162-168. (6) S.J. Sun, Y.Z. Tian*, X.H. An*, H.R. Lin, J.W. Wang, Z.F. Zhang*, Ultrahigh cryogenicstrength and exceptional ductility in ultrafine-grained CoCrFeMnNi high-entropy alloy with fully recrystallized structure, Materials Today Nano4(2018) 46-53. (7) H.K. Yang, Y.Z. Tian*, Z.F. Zhang*, Revealing the mechanical properties and microstructure evolutions of Fe-22Mn-0.6C-(x)Al TWIP steels via Al alloying control, Materials Science and Engineering A731 (2018) 61-70. (8) Y.Z. Tian*, L.J. Zhao, N. Park, R. Liu, P. Zhang, Z.J. Zhang, A. Shibata, Z.F. Zhang, N. Tsuji, Revealing the deformation mechanisms of Cu-Al alloys with high strength and good ductility, Acta Materialia110(2016) 61-72. (9) Yanzhong Tian*, Akinobu Shibata, Zhefeng Zhang, Nobuhiro Tsuji, Ductility sensitivity to stacking fault energy and grain size in Cu-Al alloys, Materials Research Letters 4 (2016) 112-117. (10) Y.Z. Tian, J.J. Li, P. Zhang, S.D. Wu, Z.F. Zhang*, M. Kawasaki, T.G. Langdon, Microstructures, strengthening mechanisms and fracture behavior of Cu-Ag alloys processed by high-pressure torsion, Acta Materialia 60(2012) 269-281. (11) Y.Z. Tian, Z.F. Zhang*, Bulk eutectic Cu-Ag alloys with abundant twin boundaries, Scripta Materialia66 (2012)65-68. (12) Y.Z. Tian, S.D. Wu, Z.F. Zhang*, R.B. Figueiredo, N. Gao, T.G. Langdon, Microstructural evolution and mechanical properties of a two-phase Cu–Ag alloy processed by high-pressure torsion to ultrahigh strains, Acta Materialia 59 (2011) 2783-2796.

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