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个人简介

【学历】 1985 - 1989,天津大学工程力学系,学士学位 1998 - 2000,哈尔滨工业大学航天学院航天工程与力学系,工学硕士 2000 - 2004,哈尔滨工业大学航天学复合材料研究所,工学博士 ________________________________________ 【工作经历】 1989 - 1994,哈尔滨量具刃具厂,助理工程师 1994 - 2001,哈尔滨理工大学,讲师 2001 - 2004,哈尔滨理工大学,副教授 2004 - 2008,哈尔滨理工大学,教授 2004 - 2006,清华大学固体力学研究所,博士后 2006 - 2008,哈尔滨理工大学材料学,博士生导师 2006 - 2008,哈尔滨理工大学建筑工程学院,副院长 2008 - 至今,哈尔滨理工大学建筑工程学院 院长

研究领域

编织复合材料设计、制备与力学性能表征 点阵复合材料设计、制备与力学性能表征 超高温陶瓷材料设计与力学性能表征

近期论文

查看导师新发文章 (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)

(1). Tao Zeng, Fei-fei Zhou, Dai-ning Fang, Shi Yan,Ying Guo. Failure assessment of UHTCs plate under elevated temperature. Modern Physics Letters B. (in press) (2). Tao Zeng, Dai-ning Fang, Xia-mei Lu, Fei-fei Zhou. Fracture Strength of Ultra-high Temperature Ceramics. Key Engineering Materials. 2008, 368-372 : 1785-1787 (3). Xiao-dong Cui, Tao Zeng, Daining Fang. Study on ballistic energy absorption of laminated and sandwich composites. Key Engineering Materials. 2006, 306-308: 739-744 (4). Tao Zeng, Daining Fang, Tian-jian Lu. Dynamic crashing and impact energy absorption of 3D braided composite tubes. Materials Letters. 2005, 59(12): 1491-1496 (5). Tao Zeng, Lin-zhi Wu, Li-cheng Guo, Li Ma. A mechanical model of 3D braided composites with internal transverse crack. Journal of Composite Materials. 2005, 39(4): 301-320 (6). Tao Zeng, Daining Fang, Li-cheng Guo, Li Ma. A mechanical model of 3D braided composites with transverse and longitudinal cracks. Composite Structures. 2005,69(1): 117-125 (7). Tao Zeng, Daining Fang, Li Ma, Li-cheng Guo. Predicting the nonlinear response and failure of 3D braided composites. Materials Letters. 2004,58(26):3237-3241 (8). Tao Zeng, Lin-zhi Wu and Li-cheng Guo. Mechanical analysis of 3D braided composites: A finite element model. Composite Structures. 2004,64(3-4):399-404 (9). Tao Zeng, Lin-zhi Wu, Li-cheng Guo. A finite element model for failure analysis of 3D braided composites. Materials Science and Engineering A. 2004,366(1): 144-151 (10). Tao Zeng, Lin-zhi Wu. Numerical simulation on crack growth of multilayered ceramic/metal composites. Mechanics Research Communication. 2004, 31(1): 55-63 (11). Tao Zeng, Lin-zhi Wu. Post-buckling analysis of stiffened braided cylindrical shells under combined external pressure and axial compression. Composite Structures. 2003,60(4):455-466 (12). Tao Zeng, Lin-zhi Wu and Li-cheng Guo. A damaged laminate model of 3D braided composites with transverse cracking. Composite Structures. 2003, 62(2):163-170 (13). Li-Cheng Guo, Lin-Zhi Wu, Tao Zeng, Li Ma. Mode I crack problem for a functionally graded orthotropic strip. European Journal of Mechanics-A/Solids. 2004, 23(2): 219-234 (14). Li-Cheng Guo, Lin-Zhi Wu, Tao Zeng, Li Ma. The dynamic fracture behavior of a functionally graded coating-substrate system. Composite Structures. 2004, 64(3-4): 433-441 (15). Li-Cheng Guo, Lin-Zhi Wu, Tao Zeng, Li Ma. Fracture analysis of a functionally graded coating-substrate structure with a crack perpendicular to the interface - Part II: Transient problem. International Journal of Fracture. 2004, 127(1): 39-59 (16). Li-Cheng Guo, Lin-Zhi Wu, Tao Zeng. The dynamic response of an edge crack in a functionally graded orthotropic strip. Mechanics Research Communication. 2005, 32 (4): 385-400 (17). Li-Cheng Guo, Lin-Zhi Wu, Tao Zeng and Dong-hai Cao. The transient response of a coating–substrate structure with a crack in the functionally graded interfacial layer. Composite Structures. 2005, 70(1): 625-635 (18). Li-Cheng Guo, Lin-Zhi Wu, Li Ma, Tao Zeng. Fracture analysis of a functionally graded coating-substrate structure with a crack perpendicular to the interface - Part Ⅰ: Static problem. International Journal of Fracture. 2004, 127(1): 21-38 (19). Ma Li, Lin-Zhi Wu, Zhen-Gong Zhou, Tao Zeng. Crack propagation in a functionally graded strip under the plane loading. International Journal of Fracture. 2004, 126: 39-55 (20). Li-Cheng Guo, Lin-Zhi Wu, Yu-Guo Sun, Tao Zeng. The transient response of a crack in a functionally graded strip under an in-plane impact load. Zamm-Zeitschrift Fur Angewandte Mathematik Und Mechanik. 2005, 85 (10): 711-720

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