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文鹤鸣
单位:近代力学系
地址:安徽省合肥市中国科学技术大学近代力学系
邮编:230027
电话:(0551)63607740
个人主页: https://mech.ustc.edu.cn/2010/0827/c4590a42194/page.htm
实验室介绍:
 
个人简历 Personal resume
Professor H. M. Wen 
Department of Modern Mechanics 
University of Science and Technology of China 
Hefei, Anhui Province 230027 
People’s Republic of China 
Tel. (0551) 6360 7740 (o) 
E-mail: hmwen@ustc.edu.cn 

Bio-Sketch

Born in 1965, attended Xuancheng High School
University education at Fuyang Teachers’ College (B.Sc.), Taiyuan University of Technology, The University of Liverpool (Ph.D.)
Postdoctoral Research Associate at The University of Liverpool, 1990-1991 
Postdoctoral Research Associate then Research Fellow at UMIST, 1991-2001

Joined University of Science and Technology of China (USTC), 2001- 
 
研究方向 Research direction
1、冲击动力学
2、工程安全和防护技术
 
招生信息 Enrollment information
考生应具备力学/材料/岩土工程方面的知识背景,主要考试科目有英语、弹塑性力学、结构冲击/计算力学等。
 
论文专著 The monograph
1) A combined numerical and theoretical study on the penetration of a jacketed rod into semi-infinite targets - Int. J. Impact Eng. - 2011 - 38: 1001-1010
2) Transition of plugging failure modes for ductile metal plates under impact by flat-nosed projectiles - Mechanics Based Design of Structures and Machines - 2010 - 38: 86-104
3) Analytical models for the penetration of semi-infinite targets by rigid, deformable and erosive long rods - Acta Mechanica Sinica - 2010 - 26(4): 573–583
4) Analytical model for cratering of semi-infinite metallic targets by long rod penetrators - SCIENCE CHINA Technological Sciences - 2010 - 53(12): 3189-3196
5) Alekseevskii-Tate revisited: an extension to the modified hydrodynamic theory of long rod penetration - Science in China Series E: Technological Sciences - 2010 - 53(5): 1364-1373
6) Effects of abrasion on the penetration of ogival-nosed projectiles into concrete targets - Latin American Journal of Solids and Structures - 2010 - 7: 413-422
7) Perforation of thin metal plates struck by conical-nosed projectiles at relatively low velocities - Acta Mechanica Solida Sinica - 2009 - 30(4): 361-367
8) Finite element analysis to predict penetration and perforation of thick FRP laminates struck by projectiles - Int.J.Impact.Eng - 2008 - 35(1): 27-36
 
报考意向 Ambition
 
 
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