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毛卫民
发布日期:2013-1-14 12:19:56 阅读次数:17046

 

毛卫民

北京科技大学新金属材料国家重点实验室 教授

地址:北京市海淀区学院路30号;邮编:100083

电话:086-010-62332300

Email: wmmao@ustb.edu.cn

     

教育经历

1988

1981

德国RWTH Aachen 大学, 金属学,博士

中国北京钢铁学院,材料科学与工程,硕士

 

工作经历

1989-

教师、教授:北京科技大学

 

社会兼职

1. 变味, Frontiers of Materials Science, 2009-

2. 中国金属学会电工钢委员会委员, 2010-

3. 再结晶与晶粒长大国际委员会委员, 2011-

 

获奖

教育部科技进步一等奖, 2002

 

科研项目

1. 项目负责人, 无取向电工钢磁性能时效机制研究, 国家自然科学基金, 2012-2015

2. 项目负责人, 高强度细晶粒钢韧脆转化各向异性的研究, 国家自然科学基金,                2011-2013

 

会议邀请报告

1.        Atomistic model of rapidly moving grain boundaries in FCC metals”, The 13th International Conference on Textures of Materials, Seoul, Korea, Aug. 26-30, 2002.

2.        “Abnormal growth mechanisms of Goss grains in grain oriented electrical steels”, The 16th International Conference on Textures of Materials, Mumbai, India, Dec. 12-17, 2011.

 

发表著作

1.) Weimin. Mao, Recrystallization and Grain Growth, In: Handbook of Aluminum, Vol.1, edited by G. E.Totten and D. S. MacKenzie, Marcle Dekker Inc., ISBN 0-8247-0494-0, pp 211-258, 2003

2.) 毛卫民,晶体材料结构原理,冶金工业出版社, ISBN 978-7-5024-4177-7, 2007

3.) 毛卫民,工程材料学原理, 高等教育出版社, ISBN 978-7-04-028069-2, 2009

4.) 毛卫民,何业东, 电容器铝箔加工的材料学原理, 高等教育出版社, ISBN 978-7-04-034805-7, 2012

 

近五年发表的主要论文:

1.                  W. Mao, Influence of rolling reduction on recrystallization texture in commercially pure Al. Chin. J. Met. Sci. Technol. 1990, 6: 257-262.

2.                  W. Mao, Influence of widening on the rolling and recrystallization texture in high purity Al with initial cube texture. Chin. J. Met. Sci. Technol. 1990, 6: 325-332.

3.                  W. Mao, Model for Rapidly Moving Boundaries Science in China, A, 1992, 35: 336-343.

4.                  W. Mao, Rolling texture development in Aluminum. Chin. J. Met. Sci. Technol. 1991, 7: 101-112.

5.                  W. Mao, Influence of the oriented growth on recrystallization texture in commercial purity Al. Chin. J. Met. Sci. Technol. 1991, 7: 296-301.

6.                  W. Mao. Texture in inhomogeneously rolled aluminum sheet. TRANSACTIONS OF NFsoc., 1992, 2: 98-103.

7.                  W. Mao Recrystallization Mechanism of Cold Rolled Al Sheet Containing Ti, Chinese Science Bulletin, 1992, 37: 1479-1482,

8.                  W. Mao and Z. Sun , Inhomogenity of Rolling Texture in Fe-28Al-2Cr Alloy. Scr. Met. Mat., 1993, 29: 217-220.

9.                  W. Mao, Y. Yu and J. Xu, Rolling texture in Ti3Al. RARE METALS, 1995, 14: 85-90.

10.              W. Mao, Y. Yu and B. Li, Influence of initial texture on the cold rolling texture of Ti sheets. TRANSACTIONS OF NFsoc., 1995, 5: 66-70,

11.              W. Mao, Y. Yu and B. Yang, Twinning-like deformation behavior of Ti3Al. RARE METALS, 1995, 14: 282-289.

12.              W. Mao, Y. Yu and H. Yang, B. Song, D. Zou and B. Wang, Features of annealing microstructure and texture in Ti-25Al-10Nb-3V-1Mo sheet, TRANSACTIONS OF NFsoc., 1996, 6: 67-71.

13.              W. Mao, Y. Yu, H. Yang, B. Song, Texture evolution of 2 phase in Ti-25Al-10Nb-3V-1Mo alloy sheet, J. Mater. Sci. Technol., 1996, 12: 361-364.

14.              W. Mao, Anisotropy of work hardening in 5456 aluminum alloy, TRANSACTIONS OF NFsoc., 1998, 8: 39-43.

15.              W. Mao, Formation of recrystallization cube texture in high purity FCC metal sheets, J. Materials Engineering and Performance, 1999, 8: 556-560.

16.              W. Mao, G. Zhu, Z. Zhao, Y.Yu, Influence of B2 ordered structure on deformation texture, Transactions of NFsoc., 2000, 10(2): 144-148.

17.              W. Mao, Crystallographic mechanism of inverse twinning in ordered -CuZn alloy. Science in China E, 2000, 43(3): 324-327.

18.              W. Mao, Analysis of misorientation distribution in polycrystalline aluminum sheet by using ODF data. Mat. Sci. & Eng. A, 2001, 300: 80-84.

19.              W. Mao, Simulation of shear texture formation in the surface layer of interstitial free steel sheets. Inter. J. Engineering Simulation 2001, 2(1): 17-23.

20.              W. Mao, L. Chen, Y. Yu, Influence of reaction stresses induced by dislocation slips on the orientation evolution in bcc metals, Chinese Science Bulletin, 2003, 48(2): 204-207.

21.              W. Mao, Formation of copper type texture in cold rolled aluminum sheet. J. Material Science and Technology, 2002, 18 (5): 443-446.

22.              W. Mao, Y. Yu, Effect of elastic reaction stress on plastic behaviors of grains in polycrystalline aggregate during tensile deformation, Materials Science & Engineering, 2004,367: 277-281

23.              W. Mao, H. Jiang, P. Yang, H. Feng, Y. Yu, Distribution of microelements and their influence on the corrosion behavior of Aluminum foil, J. Material Science and Technology, 2005, 21(1): 43-46.

24.              W. Mao, H. Zhu, L. Chen, H. Feng, F. Lu, Grain orientation dependence on distance to surface of CVD diamond film, Materials Science and Technology, 2005, 21(12): 1383-1386.

25.              W. Mao, D. Li, Y. Yu, Influence of surface oxide films on elastic behaviors of straight screw dislocations parallel to the surface of pure aluminum, J. Material Science and Technology, 2007, 23(3): 392-394.

26.              W. Mao, On-line r value determination of deep drawing steel sheet, Front. Mater. Sci. China, 2007,1(4):346–350

27.              W. Mao, H. Zhu, L. Chen, H. Feng, Relationship between texture and residual macro-strain in CVD diamond films based on phenomenological analysis, Journal of University of Science and Technology Beijing, 2008,15(2): 197-201.

28.              W. Mao, Challenges of the study on precipitation behaviors of MnS in oriented electrical steels, Front. Mater. Sci. China, 2008, 2(3): 233-238. 49.

29.              W. Mao, Z. An S. Li, Influence of MnS particles on the behaviors of grain boundary migration in Fe-3%Si alloys. Chinese Science Bulletin, 2009, 54(23): 4537-4540.

30.              W. Mao, W. Guo, Z. An, P. Yang, Influence of temperature evolution on precipitation behavior of second phase particles in grain-oriented electrical steels,       steel research international, 2010, 81(6): 477-481.

31.              W. Mao, W. Guo, Y. Li, Growth Process of Goss Grains during Secondary Recrystallization of Grain-oriented Electrical Steels, steel research international, 2010, 81(12): 1117-1120.

 

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