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个人简介

2014.1.1-至今 讲师 上海交通大学,材料科学与工程学院 2011.10-2013.12 博士后 上海交通大学 材料科学与工程学院 2008.10-2011.09 博士 巴黎第十一大学(University Paris-sud 11) 2005.09-2008.03 硕士 上海交通大学,材料科学与工程学院 2001.09-2005.07 本科 上海交通大学,材料科学与工程学院

研究领域

研究方向一 金属基复合材料 研究方向二 残余应力、疲劳

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Z. Chen, G. Ji, N. Prud’homme, A. Addad, Vincent Ji, Jerome Chevalier and Guillaume Bernard-Granger, Stabilization of the tetragonal phase in large columnar zirconia crystals without incorporating dopants Scripta Mater, 68(2013)559 Z. Chen*, N. Prud’homme, B.Wang P. Ribot, V. Ji Microstructure characterization and deposition mechanism studies of ZrO2 thin films deposited by LI-MOCVD Surf. Coat. Technol, 218(2013)7 Z. Chen*, N. Prud'homme, B. Wang, V. Ji, Residual stress gradient analysis with GIXRD on ZrO2 thin films deposited by MOCVD Surf. Coat. Technol 206 (2011) 405 Z. Chen*, N. Prud'homme, B. Wang P. Ribot, V. Ji Texture and Surface Morphology Effects on Tetragonal Phase Stabilization in ZrO2 Films Deposited by Metal-Organic Chemical Vapor Deposition J. Nanosci. Nanotechnol 11 (2011) 8264 Z. Chen*, B. Wang, N. Prud'homme, S.L. Ma, V. Ji P. Ribot, Internal stress and grain size effect on the phase stabilization of ZrO2 deposited by MOCVD Materials science forum 675-677(2011)1204 Y. Wu, Z. Chen*, M.L. Wang, N.H. Ma, H.W. Wang The effect of phase transformation on the thermal expansion property in Al/ZrW2O8 composites, J. Mater. Sci 48 (2013) 2928 Cong Zhou, Gang Ji, Zhe Chen*, Mingliang Wang, Ahmed Addad, Dominique Schryvers, Haowei Wang, Fabrication, interface characterization and modeling of oriented graphite flakes/Si/Al composites for thermal management applications. Materials and Design 63 (2014) 719–728 S.M. Ma, P. Zhang, G Ji, Z. Chen*, G.A. Sun , S.Y. Zhong, V. Ji , H.W. Wang, Microstructure and mechanical properties of friction stir processed Al-Mg-Si alloys dispersion-strengthened by nanosized TiB2 particles, Journal of alloys and compounds. 616 (2014) 128-136. M. Wang, D. Chen, Z. Chen, Y. Wu, F. Wang, N. Ma, H. Wang, Mechanical Properties of In-situ TiB2/A356 Composites Materials Science and Engineering: A, 590 (2014) 246-254

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