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张桢

发布者:         发布时间:2018-11-09 09:50         浏览次数:


张桢

教授 博士生导师


个人简介

张桢在新加坡国立大学土木系取得博士学位。论文方向为系统识别与结构健康监测。2010-2013年在新加坡国立大学土木系担任研究员,从事地震与结构工程的工作。2014-2018年在英国帝国理工大学材料系做博后,从事微观力学,材料学,结构疲劳与断裂的研究。同年5月在英国布里斯托大学机械系担任博士后研究员。研究下一代核电结构的长期响应。201811月起担任华中科技大学教授,博导 张桢教授对微观结构力学,材料学,结构疲劳,结构振动与健康监测等课题进行了研究,解决了相关领域多个重大工程中有趣的科学问题。


研究领域

1. 可持续材料与结构

2. 微观力学

3. 极端环境下材料与结构的响应

4. 疲劳与断裂

5. 系统识别,结构动力学,健康监测与防灾减灾,结构的长期响应与安全预警


联系方式

邮箱: z.zhang@hust.edu.cn

地址:华中科技大学西六楼501

招收结构工程、桥梁工程、力学方向的研究生。欢迎对微/宏观力学,材料与结构,以及结构健康监测感兴趣的同学报考硕士,博士研究生。希望同有志于科研的博士后一起工作。


Professor Zhen Zhang (BEng, MEng, PhD)

Email: zzhang@hust.edu.cn

Contact address:

School of Civil Engineering and Mechanics

Huazhong University of Science and Technology, China


Biography

Zhen was trained as a civil engineer in his early career. He graduated from Huazhong University of Science and Technology and Wuhan University of Technology, China, with BEng and MEng degrees, respectively.  After obtaining PhD degree, from the Department of Civil Engineering at National University of Singapore, Dr Zhang worked as research associate and research fellow at Singapore, London and Bristol, respectively. Starting from 2018, Dr Zhang was appointed as full professor at the School of Civil Engineering and Mechanics, Huazhong University of Science and Technology, China.  His research interests are in the areas of sustainable materials and structures, fracture and fatigue, micromechanics, material and structural responses under extreme conditions, structural dynamics, system identification and structural health monitoring.


Selected publications

[1] Zhang, Z. and Dunne, F. P. E. (2018). Phase morphology, variants and crystallography of alloy microstructures in cold dwell fatigue. International Journal of Fatigue, 113:324-334. [SJR ranking,Q1, Impact factor, 3.132.] (Elsevier Most Downloaded (Top25) papers)

[2] Zhang, Z., Lunt, D., Abdolvand, H., Preuss, M., Wilkinson, A. J. and Dunne, F. P. E. (2018). Quantitative investigation of micro slip and localization in polycrystalline materials under uniaxial tension. International Journal of Plasticity, 108: 88-106. [SJR ranking, Q1,Impact factor, 5.502.] (Elsevier Most Downloaded (Top25) papers)

[3] Zhang, Z. and Dunne, F. P. E. (2017). Microstructural heterogeneity in rate dependent plasticity of multiphase titanium alloys. Journal of the Mechanics and Physics of Solids, 103:199-220. [SJR ranking, Q1, Impact factor, 3.566.]

[4] Zhang, Z., Jun, T-S, Britton, T. B., Dunne, F. P. E. (2016). Determination of Ti-6242 alpha and beta slip properties using micro-pillar test and computational crystal plasticity. Journal of the Mechanics and Physics of Solids, 95:393-410. [SJR ranking, Q1, Impact factor, 3.566.]

[5] Zhang, Z., Eakins, D., Dunne, F. P. E. (2015). On the formation of adiabatic shear bands in textured HCP polycrystals. International Journal of Plasticity, 79:196-216. [SJR ranking, Q1, Impact factor, 5.502.] (Elsevier Most Downloaded (Top25) papers)

[6] Zhang, Z.,Wang, C. M. and Challamel, N. (2014). Eringens length scale coefficient for buckling of nonlocal rectangular plates from microstructured beam-grid model. International Journal of Solids and Structures, 51(25-26): 4307-4315. [SJR ranking, Q1, Impact factor,2.566.]

[7] Challamel, N., Zhang, Z., Wang, C. M., Reddy, J. N., Wang, Q., Michelitsch, T. and Collet,B. (2014). On nonconservativeness of Eringens nonlocal elasticity in beam mechanics: correction from a discrete-based approach. Archive of Applied Mechanics, 84(9-11):1275-1292. [SJR ranking, Q1, Impact factor, 1.467.]

[8] Zhang, Z., Balendra, T. (2013). Passive control of bilinear hysteretic structures by tuned mass damper for narrow band seismic motions. Engineering Structures, 54: 103-111. [SJR ranking,Q1, Impact factor, 2.755.]

[9] Zhang, Z., Koh, C. G, and Perry, M. J. (2012). Frequency domain substructural identification for arbitrary excitations. Earthquake Engineering and Structural Dynamics, 41: 605-621. [SJR ranking, Q1, Impact factor, 2.807]

[10] Zhang, Z., Koh, C. G., and Duan, W. H. (2010). Uniformly sampled genetic algorithm with gradient search for structural identification, Part II: local Search, Computers and Structures,88:1149-1161. [SJR ranking, Q1, Impact factor, 2.887.]