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个人简介

教育经历 1978.9-1982.7 在东北大学金属压力加工专业攻读学士学位; 1984.9-1986.12 在东北大学金属压力加工专业攻读硕士学位; 1992.9-1994.9在加拿大麦吉尔(McGill) 大学材料科学与工程系公派留学; 2001.9-2004.7 在上海交通大学材料科学与工程学院攻读博士学位; 工作经历 1982.7-1984.9在济南第四机床厂从事材料成形,任助理工程师; 1983.1-1996.12在山东冶金设计研究院从事材料工艺设计与研究,任工程师(1988)。 1997.1-2001.9在山东省工程设计研究院从事冶金与材料设计与研究,任高级工程师,院长。 2004..09-至今 在中南大学材料学院从事教学和科研工作(人才引进),任教授./博导。

研究领域

1. 金属塑性变形模拟和组织性能预报及控制; 2. 磁性材料微纳结构成形特性研究; 3. 高性能镁合金、镍合金研究及智能制造; 4. 高强高导铜合金及连续挤压研究;

近期论文

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[1] H. T. Zhou Influence of high pressure during solidification on the microstructure and strength of Mg-Zn-Y alloys,JOURNAL OF RARE EARTHS,2016 [2] H. T. Zhou , A study of automobile brake bracket formed by casting-forging integrated forming technology MATERIALS & DESIGN, 2015 [3] H. T. Zhou ,Effects of homogenization treatment on the microstructure and mechanical properties of Mg-8Li-3Al-Y alloy MATERIALS & DESIGN 2015 [4] H.T. Zhou , Q.Z. Peng , H.X. Yang c, X. ZhouDynamic recrystallization during hot deformation of GH690 alloy:A study using processing maps, Journal of Nuclear Materials 448 (2014) 153–162 [5] H T Zhou, R R Liu, Z C Liu, X Zhou, Q Z Peng, F H Zhong and Y Peng. Hot Deformation Characteristics of GH625 and Development of a Processing Map,Journal of Materials Engineering and Performance,2013(22), 2515-2521 [6] Zhou Xiao, Zhou Haitao, Liu Ruirui, Zhou Yong, A study of non-isothermal primary crystallization kinetics and soft magnetic property of Co65Fe4Ni2Si15B14 amorphous alloy, JOURNAL OF ALLOYS AND COMPOUNDS, 2012,539:210-214 [7] H.T. Zhou, Q.B. Li, Z.K. Zhao, Z.C. Liu, S.F. Wen, Q.D. Wang. Hot workability characteristics of magnesium alloy AZ80-A study using processing map. Materials Science and Engineering A, 527 (2010) 2022-2026. [8] K.M. Liu, H.T. Zhou, B. Yang, D.P. Lu, A. Atrens. Influence of Si on glass forming ability and properties of the bulk amorphous alloy Mg60Cu30Y10. Materials Science and Engineering A, 527 (2010) 7475-7479. [9] H.T. Zhou, Z.K. Zhao, X. Zhou, B. Yan, J.W. Zhong, Q.B.Li. The peculiarities of the nanocrystallization process and copper addition effects for an amorphous Fe75.5Si13.5B9Cu2 alloy. Journal of Alloys and Compounds, 475 (2009) 706–711. [10] H.T. Zhou, Z.D. Zhang, C.M. Liu, Q.W. Wang. Effect of Nd and Y on the microstructure and mechanical properties of ZK60 alloy Materials Science and Engineering A, 445-446 (2007) 1-6. [11] H.T. Zhou, J.W. Zhong, X. Zhou, Z.K. Zhao, Q.B. Li. Microstructure and properties of Cu-1.0Cr-0.2Zr-0.03Fe alloy. Materials Science and Engineering A, 498 (2008) 225-230. [12] JIANG Yong-feng, ZHOU Hai-tao, ZENG Su-min. Microstructure and properties of oxalate conversion coating on AZ91D magnesium alloy. Trans. Nonferrous Met. Soc. China, 19(2009) 1416-1422 [13] Zhou Haitao, Jiang Yong-feng, Zhong Jian-wei, Zhao Zhong-kai, Li Qing-bo. High strain rate superplasticity of AZ31 alloy. Trans. Nonferrous Met. Soc. China, 17 (2007) s1 409-412. [14] Haitao Zhou ,Zhendong Zhang, Dymamic recrystallization of Mg-6Zn-0.5Zr-Nd alloy, Mater. Sci. and Technol 23(6)(2007)657. [15] Haitao Zhou, A constitutive Model Development and Hot Extrusion Simulation for AZ61 alloy, Mater. Sci. and Technol 22 (2006) 597. [16] H.T. Zhou, Materials Science and Engineering: A, Volume 527, Issues 7-8, 25 March 2010, Pages 2022-2026 [17] H.T.Zhou ,The nanocrystallization process and copper addition effectsfor an amorphous Fe75.5Si13.5B9Cu2 alloy,Journal of Alloys and Compounds,475 (1-2)(2009)706-711

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