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吴承伟
5.0我来评喜爱度
所在大学:大连理工大学
所在院系:运载工程与力学学部
所在地区:辽宁
所在城市:大连
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吴承伟老师介绍
姓名:吴承伟
办公室电话:0411-84706353
电子邮箱地址:cwwu@dlut.edu.cn
主要学历及工作经历:
学习与工作简历:
1981.01—1987.12: 清华大学 摩擦学国家重点实验室 硕士,博士研究生 (导师:郑林庆教授)
1988.01-1990.03: 大连理工大学 工程力学研究所 博士后 (导师:钱令希院士)
1990.04-1992.09: 大连理工大学 工程力学研究所 副教授
1992.10-1994.05: 大连理工大学 工业装备结构分析国家重点实验室 副主任,教授
1994.06-1997.11: Visiting Professor, Advanced Materials Laboratory,Dept. of Materials Sci. and Eng.,North Carolina State University(NCSU), Raleigh, USA
1997.12-1998.12: 大连理工大学 工业装备结构分析国家重点实验室,副主任,教授,博导
1999.01-2002.12: Project Manager, Pathway D&M Inc. BC, Canada
2003.01—2005.08:大连理工大学 工业装备结构分析家重点实验室 教授,博导
2005.09-2007.07: 大连理工大学 工程力学系/工业装备结构分析国家重点实验室 副主任,教授,博导
2007.08---现在: 大连理工大学 运载工程与力学学部副部长,工业装备结构分析国家重点实验室副主任,教授,博导
主要学术及社会兼职:
中国力学学会固体力学专业委员会委员
辽宁省力学学会常务理事
Journal of Bionics Engineering 编委
科技创新导报编委
研究领域(研究课题):
* 先进材料与结构的力学行为
* 大型工业装备结构强度与可靠性分析
* 航空航天结构中的力学问题
* 材料的电磁力学行为及电磁改性技术
* 液固界面力学与界面减阻技术
* 生物与微纳米力学
目前主持在研的主要课题有国家863科技攻关项目1项、国家自然科学基金1项、博士点基金1项、辽宁省自然科学基金1项、辽宁省优秀人才支持计划基金1项,其他横向委托课题4项,总经费约200万元. 参加合作研究的项目有: 973课题1项、国家自然科学基金重点基金1项、航天科技攻关项目1项,是国家自然科学基金委创新群体科学基金资助的“优秀创新群体:计算力学与工程科学计算”群体的骨干成员.
指导硕、博士生研究方向:
应用实验力学、工程力学、计算力学、生物力学
出版著作和论文:
代表性论文:
1. 吴承伟,马国军,关于流体流动的边界条件,中国科学,2004,G缉,15:196-199
2. 周平,吴承伟,燃料电池复合材料侧板的力学分析,中国机械工程,22:2056-2060,2005 (EI)
3. P Zhou, C W Wu, G J Ma, Influence of clamping force on the performance of PEMFCs, Journal of Power Sources, 163: 874-881, 2007 (SCI)
4. G J Ma, C W Wu, P Zhou, Wall slip and hydrodynamics of two-dimensional journal bearing, Tribology International, 40: 1056-1066, 2007 (SCI)
5. P Zhou, C W Wu, Numerical study on the compression effect of gas diffusion layer on PEMFC performance, Journal of Power Sources, 170: 93-100, 2007 (SCI)
6. G J Ma, C W Wu, P Zhou, Hydrodynamics of slip wedge and optimization of surface slip property, Science in China G, 2007, 50: 321-330 (SCI)
7. C W Wu, X Q Kong, D Wu, Micronanostructures of the scales on a mosquito’s legs and their role in weight support, Physical review E, 76: 017301, 2007 (SCI)
8. G J Ma, C W Wu, Multi-linearity algorithm for wall slip in two-dimensional gap flow, Int. J. Numer. Methods in Eng., 69: 2469-2484, 2007 (SCI)
9. G.Q. Chen, S.H. Ji, W.L. Zhou, C.W. Wu, J.T. Guo, Z.H. Huang, Compression deformation of NiAl-Cr(Mo)-Hf alloy at elevated temperature and its microstructure evolution, Materials Science Forum, 2007, 551:457-461 (SCI)
10. C W Wu, G J Ma, Abnormal behavior of a hydrodynamic lubrication journal bearing caused by wall slip, Tribology International, 2005, 38: 492-499 (SCI)
11. G J Ma, C W Wu, W L Zhou, et al., Initial Study of strengthening of NiAl-Cr(Mo)-Hf alloys by strong magnetic field, Journal of Material Research, 2005, 20:295-299 (SCI)
12. C W Wu, G J Ma, H S Sun, Viscoplastic lubrication analysis in a metal-rolling inlet zone using parametric quadratic programming, ASME J. of Tribology, 2005, 127: 605-610 (SCI)
13. C W Wu, H X Sun, Quadratic programming algorithm for wall slip and free boundary pressure condition, Int. J. for Numerical Methods in Fluids, 2006, 50: 131-145 (SCI)
14. C W Wu,H Conrad Electrorheology of suspensions of si particles with an oxide film in silicone oil,Int. J. Mobern Phys. B,1999,13(14-16):1713-1720 (SCI)
15. H Conrad,C W Wu,X Tang ,Conductivity in electrorheology,Int. J. Modern Phys. B,1999,13(14-16):1729-1738(SCI)
16. C Boissy,C W Wu,Y Fahmy,H Conrad,Experimental study of the yield stress of electrorheological suspensions under AC field: Com-parison with a theoretical model,Int. J. Modern Phys. B ,1998,13(14-16):1775-1782(SCI)
17. C W Wu,H Conrad,The shear strength of electrorheological particle clusters,Materials Science and Engineering, 1999,A248:161-164(SCI)
18. C W Wu,H Conrad,Electrical property of electrorheological particle clusters,Materials Science and Engineering, 1998,A255:66-69(SCI)
19.C W Wu,H Conrad,On the shear stress of electrorheological fluids,J. Materials Research, 1998,13:66-69(SCI)
20. C W Wu,H Conrad,Temperature dependence of the conductivity of silicone oil and related electrorconductivity of sus-pension containing zeolite particles,J. Phys. D: Appl. Phys. 1998,13:3299-3303(SCI)
21. C W Wu,H Conrad,Multi-coated spheres: recommended electrorheological particles,J. Phys. D: Appl. Phys., 1998,31:3312-3315(SCI)
22. C W Wu,Y Chen,H Conrad ,Electrorheology of zeolite/silicone oil suspension with AC and DC fields, J. Phys. D: Appl. Phys., 1998,31:960-963
23. C W Wu,H Conrad,Influence of mixed particle size on electrorheological response,J. Applied Physics., 1998,83:3880-3884 (SCI)
24. C W Wu,H Conrad,Conduction and dielectric effects in non-ohmic electrorheological fluids,Physical Review E., 1997,56:5789-5797(SCI)
25. C W Wu,H Conrad, Conduction and dielectric effects in ohmic electrorheological fluids,J. Phys D: Appl. Phys., 1997,30:2634-2642(SCI)
26. C W Wu,H Conrad,Influnce of a surface film on conducting particles on the electrorheological response with alternating current fields,J. Applied Physics,1997,81:8057-8063(SCI)
27. C W Wu,H Conrad ,Influence of a surface film on the particles on the electrorheological response J. Applied Physics,1997,81:383-389(SCI)
28. C W Wu,H Conrad,Negative electrorheological effect and electrical properties of a Teflon-silicone oil suspension,J. Rheology,1997,41:267-281(SCI)
29. C W Wu,H Conrad, A modified conduction model for the electrorheological Effect,J. Phys D: Appl. Phys., 1996,29:3147-315(SCI)
30. C W Wu,Y Chen,X Tang,H Conrad,Conductivity and force between particles in a model electro-rheological fluid: II Force,Int. J. Modern Phys. B,1996,10:3326-3334(SCI)
31. C W Wu,Y Chen,X Tang,H Conrad,Conductivity and force between particles in a model electro-rheological fluid: I Conductivity,Int. J. Modern Phys. B, 1996,10:3315-3325(SCI)
32. X Tang,C W Wu,H Conrad,On the conductivity model for the electrorheological response of dielec-tric particles with a conducting film,J. Applied Physics, 1995,78:4183-4188(SCI)
33. X Tang,C W Wu,H Conrad,On the conductivity model for the electrorheological effect,J. Rheology, 1995,39:1059-1073(SCI)
34. C W Wu,H S Sun,A new hydrodynamic lubrication theory for bilinear rheologicol fluids,J. of Non -Newtonian Fluid Mechanics, 1995,56:253-266(SCI)
出版著作
[1] Wu, C. W. and Conrad, H.,1998, Dielectric and Conductive Effects in Electrorheology, A chapter contributed to the book: Advances in the Flow and Rheology of Non-Newtonian Fluids, ASME, New York.
[2] 钟万勰,张洪武,吴承伟,1997,《参变量变分原理及其应用》,北京, 科学出版社。
[3] Zhong Wanxie, Wu Chengwei, 1993, "Elastic-Plastic Contacts Using Parametric Quadratic Programming", Chapter 9 in 《Computational Methods in Contact Mechanics》Computational Mechanics Publications, Ashurst Lodge, Ashurst, UK
专 利:
1.吴承伟、周文龙、马国军、郭兴林,一种用强磁场增强NiAl系金属间化合物合金的强度和韧性的方法, 申请中国发明专利, 200310105017.5
2.吴承伟、钱令希,微小型不锈钢长纤维滤毡, 中国实用新型专利,90200802.1
科研成果及所受奖励:
在计算力学、生物力学、复合材料、电流变智能流体、摩擦学、燃料电池结构材料及其制造工艺力学、材料的电磁力学行为及其电磁改性技术等学科交叉点上开展研究工作。这些交叉学科的研究以力学为主,围绕新材料、新技术、新能源、将应用基础研究与工程应用研究紧密结合。以第一作者和通讯作者累计发表论文150余篇,与他人合著专著4部,获得国家专利2项。论文被SCI收录48篇,被EI收录56篇,SCI检索论文被国际同行他人引用500余次,被国内同行引用200余次。共主持和参加国家和省部级研究课题30余项,获得国家教委科技进步三等奖1项、辽宁省科技进步二等奖2项、中国青年科技奖、辽宁省青年技术拔尖人才、大连市劳动模范的奖励和大连市优秀专家等荣誉称号。
在读硕士、博士人数:
15
以上资料最后修改时间:
2009-3-20
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