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大连理工大学工程力学系研究生导师简介-郑勇刚

大连理工大学 免费考研网/2016-05-04


郑勇刚
院系:工程力学系
办公电话:**
电子信箱:zhengyg@dlut.edu.cn
更新时间:2015-10-9
其他专业:计算数学



个人简介
郑勇刚,男,1979年生,博士,大连理工大学副教授,博士生导师
工业装备与结构分析国家重点实验室固定人员
2011年获全国优秀博士论文提名奖
2013年获ICACM Young Investigator Award
2013年入选教育部新世纪优秀人才支持计划

学习工作经历
2002年7月获得大连理工大学力学学士学位
2008年10月获得大连理工大学力学博士学位
2008年9月2011年12月,大连理工大学讲师
2011年12月至今,大连理工大学副教授

访问经历
2005年2月至2006年6月,The University of Sydney,Visiting Scholar
2008年1月至2008年6月,The Hong Kong Polytechnic University,Research Assistant


社会兼职
国际计算力学协会会员

ACS Nano
Computer Methods in Applied Mechanics and Engineering
International Journal for Numerical Methods in Engineering
International Journal of Damage Mechanics
ASME Journal of Engineering Materials and Technology
International Journal of Computational Methods
The Beilstein Journal of Nanotechnology
Applied Physics Frontier
新型炭材料等
期刊审稿人

研究领域(研究课题)
计算力学、工程力学、生物与纳米力学、固体力学

主持的科研项目:
国家自然科学基金面上项目,纳米孪晶材料塑性及断裂力学行为数值模拟与理论研究,2013-2016,负责人
辽宁省教育厅重点实验室项目,低维纳米材料与细胞耦合力学行为的多尺度建模与分析,2016-2018,负责人
国家自然科学基金青年基金项目,自适应ph 有限元和分子动力学耦合并发多尺度方法,2010-2012,负责人
北京宇航系统工程研究所,典型结构动力学建模及虚拟激励振动环境预示研究,2010-2011,负责人

主要参与的科研项目:
国家自然科学基金重点项目,含液多孔介质力学分析的多层级建模与计算方法研究,2013-2017,项目骨干
国家重点基础研究发展计划 (973计划) 课题,新一代集成化计算力学软件平台设计理论和方法,2010-2014,项目成员,项目秘书
国家自然科学基金创新群体研究基金,计算力学与工程科学计算,2005-2010,项目成员,项目秘书(2008-2010)
国家重点基础研究发展计划 (973计划) 子课题,材料物性的多物理多尺度计算研究,2005-2009,项目成员


硕博研究方向
指导博士、硕士研究方向:
1、纳米材料力学
2、软物质力学
3、生物力学
4、多孔介质力学
5、多尺度计算方法
6、航空航天、柴油机结构分析

欢迎学生报考以下专业硕博士研究生:
1、计算力学
2、工程力学
3、固体力学

出版著作和论文
发表论文60余篇,其中被SCI收录50余篇,SCI他引400余篇次。

部分论文列表

50.Zheng Y.G., Gao F., Zhang H.W., Lu M.K. Improved convected particle domain interpolation method for coupled dynamic analysis of fully saturated porous media involving large deformation, Computer Methods in Applied Mechanics and Engineering, 257:150-163, 2013.
49.Zheng Y.G., Zhao Y.T., Zhang H.W., Ye H.F. Atomistic Studies of the Vibrational Properties of Fivefold Twinned Nanowires, The 5th Asia Pacific Congress on Computational Mechanics & 4th International Symposium on Computational Mechanics, Singapore, Dec. 11-15, 2013.
48.Zhang H.W., Zheng Y.G., Wu J.K., Liu H., Fu Z.D. Generalized four-node plane rectangular and quadrilateral elements and their applications in the multiscale analysis of heterogeneous structures, International Journal for Multiscale Computational Engineering, 11(1):71-91, 2013.
47.Jiang S., Shen Y.G., Zheng Y.G., Chen Z. Formation of quasi-icosahedral structures with multi-conjoint fivefold deformation twins in fivefold twinned metallic nanowires, Applied Physics Letters,103(4):041909, 2013.
46.Jiang S., Chen Z., Zhang H.W., Zheng Y.G. Li H., Impact-induced bending response of single crystal and five-fold twinned nanowires, International Journal for Multiscale Computational Engineering,11(1):1-16, 2013. (SCI & EI)
45.Zhang S., Yang D.S., Zhang H.W., Zheng Y.G. Coupling extended multiscale finite element method for thermoelastic analysis of heterogeneous multiphase materials, Computers & Structures, 121:32-49, 2013.

44.Zheng Y.G., Zhang H.W., Chen Z., Ye H.F. Size and surface effects on the mechanical behavior of nanotubes in first gradient elasticity. Composites Part B: Engineering, 43:27-32, 2012.
43.Zheng Y.G., Ye H.F., Zhang Z.Q., Zhang H.W. Water diffusion inside carbon nanotubes: mutual effects of surface and confinement. Physical Chemistry Chemical Physics, 14:964-971, 2012.
42.Zheng Y.G., Zhang H.W., Gao F. Simulation of dynamic contact behaviors of saturated porous media involving large deformation with the coupling convected particle domain interpolation method. The 23rd International Congress of Theoretical and Applied Mechanics, Beijing, 8.19-24, 2012.
41.Zhou Q., Zhang H.W., Zheng Y.G. A homogenization technique for heat transfer in periodic granular materials. Advanced Powder Technology, 23:104-114, 2012.
40.Zhang H.W., Wu J.K., Zheng Y.G. An adaptive multiscale method for strain localization analysis of 2D periodic lattice truss materials. Philosophical Magazine, DOI:10.1080/**.2012.731087, 2012.
39.Wang L., Zhang Z.Q., Zheng Y.G., Wang J.B., Ye H.F. Torsional stability of carbon nanotubes filled with copper atoms. Physica Scripta, 85:045602, 2012.
38.Ye H.F., Zhang H.W., Zhang Z.Q., Zheng Y.G. Water sheared by charged graphene sheets. Journal of Adhesion Science and Technology, 26(12-17):1897-1908, 2012.
37.Zhang Z.Q., Ye H.F., Liu Z., Ding J.N., Cheng G.G., Ling Z.Y., Zheng Y.G., Wang L., Wang J.B. Carbon nanotube-based charge-controlled speed-regulating nanoclutch. Journal of Applied Physics, 111:114304, 2012.
36. 张洪武, 高菲, 郑勇刚, 王鲲鹏. 饱和多孔介质动力学大变形分析耦合对流粒子域插值方法. 应用力学学报, 29(5):494-500, 2012.

35.Lin J.Q., Zhang H.W., Chen Z., Zheng Y.G., Zhang Z.Q., Ye H.F. Simulation Study of Aggregations of Monolayer-Protected Gold Nanoparticles in Solvents. The Journal of Physical Chemistry C, 115(39):18991-18998, 2011.
34.Lin J.Q., Zheng Y.G., Zhang H.W., Chen Z. A Simulation Study on Nanoscale Holes Generated by Gold Nanoparticles on Negative Lipid Bilayers. Langmuir, 27(13):8323-8332, 2011.
33.Ye H.F., Zhang H.W., Zheng Y.G., Zhang Z.Q. Nanoconfinement induced anomalous water diffusion inside carbon nanotubes. Microfluidics and Nanofluidics, 10:1359-1364, 2011.
32.Zhang H.W., Ye H.F., Zhang Z.Q., Zheng Y.G. Size and temperature effects on the viscosity of water inside carbon nanotubes. Nanoscale Research Letters, 6:87, 2011.
31.Zhang H.W., Zhou Q., Zheng Y.G. A multi-scale method for thermal conduction simulation in granular materials. Computational Materials Science, 50:2750-2758, 2011.
30.Zhang H.W., Ye H.F., Zheng Y.G., Zhang Z.Q. Prediction of the viscosity of water confined in carbon nanotubes. Microfluidics and Nanofluidics, 10:403-414, 2011.
29.Zhang Z.Q., Zhang H.W., Wang L., Ding J.N., Wang J.B., Zheng Y.G., Ye H.F., Liu Z., Cheng G.G., Ling Z.Y. Reassessing molecular sieving by kinked carbon nanotubes. Modelling and Simulation in Materials Science and Engineering, 19:085009, 2011.
28.Zheng Y.G., Zhang H.W., Chen Z., Ye H.F., Atomistic simulation of surface dislocation nucleation in fivefold twinned nanowires, the Third International Symposium on Computational Mechanics (ISCM III) in conjunction with the Second Symposium on Computational Structural Engineering (CSE III), Taipei, 12.5-7, 2011.

27. Zheng Y.G., Zhang H.W., Chen Z., Size and Surface Effects on the Mechanical Behavior of Nano-Cylinder in Gradient Elasticity, the 2nd International Conference on Nanomechanics & Nanocomposites, Beijing, 10.10-10.13, 2010.
26. Zheng Y.G., Zhang H.W., Chen Z., The Effect of Warping on the Plastic Deformation of Metal Nanowires under Bending, Proceedings of the joint 9th World Congress on Computational Mechanics and 4th Asian Pacific Congress on Computational Mechanics, edited by N. Khalili, S. Valliappan, Q. Li and A. Russell, Centre for Infrastructure Engineering and Safety, Sydney, Australia, 226-226, 2010.
25. 郑勇刚, 金属纳米线力学行为的分子动力学研究, 第四届微纳米海峡两岸科技暨微纳米系统与加工制备中的力学问题研讨会, 上海, 无锡, 8.1-8.7, 2010.
24. Zhang H.W., Zhang Z.Q., Zheng Y.G., Ye H.F., Corrected second-order slip boundary condition for fluid flows in nanochannels, Physical Review E, 81:066303, 2010.
23. Zhang H.W., Lv J., Zheng Y.G., A New Multiscale Computational Method for Mechanical Analysis of Closed Liquid Cell Materials, CMES: Computer modeling in engineering & sciences, 68:55-93, 2010.
22. Jiang S., Zhang H.W., Zheng Y.G., Chen Z., Loading path effect on the mechanical behaviour and fivefold twinning of copper nanowires, Journal of Physics D-Applied Physics, 43:335402, 2010.
21. Lin J.Q., Zhang H.W., Chen Z., Zheng Y.G., Penetration of Lipid Membranes by Gold Nanoparticles: Insights into Cellular Uptake, Cytotoxicity and Their Relationship, ACS Nano, 4 (9), 5421–5429, 2010.
20. 张洪武, 吴敬凯, 刘辉, 郑勇刚, 付振东, 广义平面矩形与空间矩形块体单元, 计算力学学报, 27(3):391-396, 2010.
19. 张洪武, 吴敬凯, 刘辉, 郑勇刚, 平面4节点广义等参单元, 计算力学学报, 27(3):397-402, 2010.

18. Zheng Y.G., Zhang H.W., Chen Z., Jiang S., Deformation and Stability of Copper Nanowires under Bending, International Journal for Multiscale Computational Engineering, 7(3):205-215, 2009.
17. Zheng Y. G., Zhang H. W., Chen Z., Lu C., Mai Y.-W., Roles of grain boundary and dislocations at different deformation stages of nanocrystalline copper under tension, Physics Letters A, 373:570-574, 2009.
16. Zheng Y. G., Lu J., Zhang H. W., Chen Z., Strengthening and toughening by interface-mediated slip transfer reaction in nano-twinned copper, Scripta Materialia, 60(7):508-511, 2009.
15. Zheng Y. G., Zhang H. W., Chen Z., Torsional Properties Of Metallic Nanosprings, Acta Mechanica Solida Sinica, 22(6):657-664, 2009.
14. Jiang S., Zhang H.W., Zheng Y.G., Chen Z., Atomistic study of the mechanical response of copper nanowires under torsion, Journal of Physics D-Applied Physics, 42(13), 2009.
13. Zheng Y.G., Zhang H.W., Chen Z., Molecular dynamics simulations of plastic deformation in nanostructured copper, US-China NSF Workshop and Summer Institute of Bio- and Nano-Mechanics and Applications (UCWSI2009), Dalian, July 2-7, 2009.

12. Zheng Y. G., Zhang H. W., Chen Z., Wang L., Zhang Z. Q., Wang J. B., Formation of two conjoint fivefold deformation twins in copper nanowires with molecular dynamics simulation, Applied Physical Letters, 92:041913, 2008.
11. Zhang Z. Q., Zhang H. W., Zheng Y. G., Wang J. B., Wang L., Gas separation by kinked single-walled carbon nanotubes: Molecular dynamics simulations, Physical Review B, 78:035439, 2008.
10. Zhang Z. Q., Zhang H. W., Zheng Y. G., Wang J. B., Wang L., Transport of liquid mercury under pressure in double-walled carbon nanotubes, Current Applied Physics, 8:217, 2008.
9. Wang L., Zhang H. W., Zheng Y. G., Wang J. B., Zhang Z. Q., Single-walled carbon nanotubes filled with bimetallic alloys: Structures and buckling behaviors, Journal of Applied Physics, 103:083519, 2008.

8. Zheng Y. G., Zhang H. W., Chen Z., A combined stochastic diffusion and mean-field model for grain growth, Proceeding of the International Symposium on Computational Mechanics (ISCM2007), edited by Yao Z. H. and Yuan M. W., Tsinghua University Press & Springer, 290-297, 2007.
7. Wang L., Zhang H. W., Zhang Z. Q., Zheng Y. G., Wang J. B., Buckling behaviors of single- walled carbon nanotubes filled with metal atoms, Applied Physical Letters, 91:051122, 2007.
6. Zhang H. W., Zhang Z. Q., Wang L., Zheng Y. G., Wang J. B., Wang Z. K., Pressure control model for transport of liquid mercury in carbon nanotubes, Applied Physical Letters, 90:144105, 2007.

5. Zheng Y. G., Lu C., Mai Y.-W., Gu Y. X., Zhang H. W., Chen Z., Monte Carlo simulation of grain growth in two-phase nanocrystalline materials, Applied Physical Letters, 88:144103, 2006.
4. Zheng Y. G., Lu C., Mai Y.-W., Zhang H. W., Chen Z., Grain growth as a stochastic and curvature-driven process, Philosophical Magazine Letters, 86:787-794, 2006.
3. Zheng Y. G., Lu C., Mai Y.-W., Zhang H. W., Chen Z., Model-based simulation of normal grain growth in a two-phase nanostructured system, Science and Technology of Advanced Materials, 7:812-818, 2006.
2. 郑勇刚, 顾元宪, 陈震, 薄膜破坏过程数值模拟的MPM 方法, 力学学报, 38(3):347-355, 2006.

1. 赵国忠, 郑勇刚, 顾元宪, 结构设计中的混沌优化方法及其改进, 计算力学学报, 22(1):64-68, 2005.


工作成果(奖励、专利等)
ICACM Young Investigator Award,2013年
全国优秀博士论文提名奖,2011年
辽宁省优秀博士论文,2010年
大连理工大学教学质量优良奖,2012年
大连理工大学教学质量优良奖,2011年
大连理工大学教学质量优良奖,2009年

在读学生人数
独立指导硕士5人
协助指导博士7人,硕士1人

毕业学生人数
毕业博士3人(副导师),硕士6人(4人为副导师)

相关话题/工程力学