人物經歷
1990年畢業於中國科學技術大學近代力學系,獲理學學士學位。1997年及2000年在中國科學技術大學力學和機械工程系固體力學專業獲工學碩士和博士學位。2001年初到澳大利亞短期訪問研究,隨後在美國內華達大學裡諾分校從事博士後研究工作。2005年2月回國到上海交通大學船舶海洋與建築工程學院工程力學系工作。
研究方向
1)結構和材料的疲勞及疲勞裂紋擴展研究2)非線性損傷與疲勞斷裂力學3)複合材料力學性能數值研究4)微細觀力學。
主要貢獻
研究成果
主持國家自然科學基金2項,參加國家自然科學基金2項。在研國家自然科學基金1項,歸國留學人員基金1項,橫向項目多項。在國內外學術刊物和會議論文集上發表學術論文四十餘篇。SCI/EI收錄論文二十餘篇,論文被引用一百餘次,其中2004年ASME Journal of Engineering Materials and Technology文章被引用四十六次。
代表性論文
1) F. Ding, M.L. Feng, Y.Y. Jiang* Modeling of fatigue crack growth at notch, Int. J. Plasticity, 23, 1167-1188, 2007.
2) Y.Y. Jiang*, M.L. Feng, F. Ding, A reexamination of crack closure concept in fatigue crack propagation, Int. J. Plasticity, 21,1720-1740, 2005.
3) X.Q. Meng, J.H. Liu, J.Q. Xu, M.L. Feng*, Thermal fatigue test of electronic packages under temperature cycles, Mater. Research. Innov., 15, s36-s10(25), 2011.
4) H.L. Zhu, J.Q. Xu, M.L. Feng*, Time dependent singular behaviors at the interface edges of a chip, Mater. Research. Innov., 15, s18-s22, 2011.
5) H.L. Zhu, J.Q. Xu, M.L. Feng*, Singular fields near a sharp V-notch for power law creep material, Int. J. Fracture, 168,159-166,2011,
6) J.W. Dong*, M.L. Feng, Asymptotic expansion homogenization for simulating progressive damage of 3D braided composites, Comp. Struct., 92, 873-882, 2010.
7) M.L. Feng, F. Ding, Y.Y. Jiang*, A study of crack growth retardation due to artificially induced crack surface contact, Int. J. Fatigue, 27, 1319-1327, 2005.
8) M.L. Feng, F. Ding, Y.Y. Jiang*, A study of loading path influence on fatigue crack growth under combined loading, Int. J. Fatigue, 28, 19-27, 2006.
9) Y.Y. Jiang*, F. Ding, M.L. Feng, An approach for fatigue life prediction, ASME J. Engng. Mat. Tech., 129, 182-189, April, 2007.
10) M.L. Feng*, C.C. Wu, Study on 3-dimensional 4-step braided piezo-ceramic composites by homogenization method, Comp. Sci. Tech., 61, 1889-1998, 2001.
12) Y.Y. Jiang*, M.L. Feng, Modeling of fatigue crack propagation, ASME J. Engng. Mat. Tech., 126, 77-86, 2004.
13) J.W. Dong , M.L. Feng*, Damage simulation for 3D braided composites by homogenization method, Chinese J. Aeronautics, 23, 677-685, 2010.
14) M.L. Feng*, M. Dhanasekar and Q.Z. Xiao. A 2D hybrid stress element for improved prediction of the out-of-plane fields using Fourier expansion. Int J Struct Engng Mech, 13, 491-504, 2002.
15) Y.Y. Jiang*, F. Ding, M.L. Feng, An approach for fatigue life prediction, ASME PVP, 217-224, 2005.
16) Y.Y. Jiang*, M.L. Feng, A new approach to predicting fatigue crack propagation, ASME PVP, 23-31, 2004.