编辑: JZS133 2013-04-21

1992 and his Dr. CIng. degree in aerospace and aeronautic engineering from Stuttgart University, Germany in 2005. His current research involves issues such as topology optimization, nondeterministic structural optimization, design optimization of smart structures and multiscale computation. Dr. Kang has published more than

30 research papers in peer-reviewed international journals and one monograph. He has been principal investigator of four projects of National Science Foundation of China (NSFC) and a Key Project of Chinese National Programs for Fundamental Research and Development (973 Project). He has also conducted multiple consultancy projects. 专著(monograph): Kang Zhan, Robust Design Optimization of Structures under Uncertainties, Shaker Verlag, Aachen, Germany, 2005. (ISBN 3-8322-4269-4). 书中章节(book chapters): Doltsinis I and Kang Zhan. Design Optimisation with Randomness: A Taylor Expansion Approach. Book Chapter

8 of: Innovation in Engineering Computational Technology (Edited by: B.H.V. Topping, G. Montero and R. Montenegro), Saxe- Coburg Publications (Computational Technology Publications), Germany, 2006. (ISBN 1-874672-28-8). 国际期刊论文(Peer-reviewed international journal paper): 1. Xianhong Meng, Ming Li*, Zhan Kang, Xiaopeng Zhang, Jianliang Xiao*. Mechanics of self-folding of single-layer graphene. Journal of Physics D: Applied Physics. Accepted. 2. Xiaopeng Zhang, Zhan Kang*. Layout optimization of damping layers for minimizing sound radiation of vibrating shell structures. Journal of Sound and Vibration. Accepted. 3. Zhan Kang*, Yiqiang Wang. Integrated topology optimization with embedded movable holes based on combined description by material density and level sets. Computer Methods in Applied Mechanics and Engineering. 2013;

255:1-13. 4. Yiqiang Wang, Zhan Kang*, Qizhi He. An adaptive refinement approach for topology optimization based on separated density field description. Computers &

Structures. 2013;

117:10-22. 5. Yangjun Luo*, Michael Yu Wang*, Zhan Kang. An enhanced aggregation method for topology optimization with local stress constraints. Computer Methods in Applied Mechanics and Engineering. http://dx.doi.org/10.1016/j.cma.2012.10.019 6. Huanyu Cheng, Ming Li, Jian Wu*, Andrew Carlson, Seok Kim, Yonggang Huang, Zhan Kang, Keh-Chih Hwang, John A*. Rogers. A Viscoelastic Model for the Rate Effect in Transfer Printing. Journal of Applied Mechanics. http://dx.doi.org/10.1115/1.4007851. 7. Ming Li, Zhan Kang*, Peiying Yang, Xianhong Meng, Yanjun Lu. Molecular dynamics study on buckling of single-wall carbon nanotube-based intramolecular junctions and influence factors. Computational Materials Science. 2013;

67:390-396. 8. Zhan Kang*, Song Bai. On robust design optimization of truss structures with bounded uncertainties. Structural and Multidisciplinary Optimization. 10.1007/s00158-012-0868-3. 9. Guozhong Zhao*, Gang Chen, Zhan Kang. An iterative algorithm for analysis of coupled structural-acoustic systems subject to random excitations. Acta Mechanica Sinica. 2012, DOI: 10.1007/s10409-012-0032-8. [Full text] 10. Zhan Kang*, Yangjun Luo. Sensitivity Analysis of Viscoplastic Deformation Process with Application to Metal Preform Design Optimization. Engineering Optimization. 2012;

44(12): 1511-1523. 11. Zhan Kang*, Xiaoming Wang, Zhen Luo. Topology Optimization for Static Shape Control of Piezoelectric Plates with Penalization on Intermediate Actuation Voltage. Journal of Mechanical Design. 2012;

134(5):051006 (9 pages). 12. Yangjun Luo*, Zhan Kang, Zhufeng Yue. Maximal stiffness design of two-material structures by topology optimization with nonprobabilistic reliability. AIAA Journal. pages (1993-2003) doi: 10.2514/1.59674. 13. Yangjun Luo, Zhan Kang. Layout design of reinforced concrete structures using two-material topology optimization with Drucker- Prager yield constraints. Structural and Multidisciplinary Optimization. DOI:10.1007/s00158-012-0809-1. 14. Zhan Kang*, Xiaopeng Zhang, Shigang Jiang, Gengdong Cheng. On topology optimization of damping layer in shell structures under harmonic excitations. Structural and Multidisciplinary Optimization. 2012;

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