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谭婷
2023-05-12 21:38
  • 谭婷
  • 谭婷 - 助理教授-上海交通大学-振动冲击噪音研究所-个人资料

近期热点

资料介绍

近期论文


(1) Ting Tan, Zhimiao Yan*, Muhammad R. Hajj. Electromechanical decoupled model for cantilever-beam piezoelectric energy harvesters, Applied Physics Letters, 2016, 109(25): 101908 (IF:3.411, JCR:Q1)
(2) Ting Tan, Zhimiao Yan*, Wenhu Huang, Broadband design of hybrid piezoelectric energy harvester, International Journal of Mechanical Sciences, 2017, 131-132: 516-526 (IF:2.884, JCR:Q1)
(3) Ting Tan, Zhimiao Yan*. Analytical solution and optimal design for galloping-based piezoelectric energy harvesters. Applied Physics Letters, 2016, 109(25): 253902 (IF:3.411, JCR:Q1)
(4) Ting Tan, Nathan M. Cholewa, Scott W Case, Raffaella De Vita*. Micro-structural and biaxial creep properties of the swine uterosacral–cardinal ligament complex. Annals of Biomedical Engineering, 2016, 44: 3225 (IF:3.221, JCR:Q1)
(5) Ting Tan, Frances Davis, Jason Massengill, Daniel Gruber, John Robertson and Raffaella De Vita*, Histo-mechanical properties of swine uterosacral and cardinal ligaments. Journal of the Mechanical Behavior of Biomedical Materials, 2015, 42: 129-137 (IF:3.110, JCR:Q2)
(6) Ting Tan, Zhimiao Yan*. Electromechanical decoupled model for cantilever-beam piezoelectric energy harvesters with inductive-resistive circuits and its application in galloping mode. Smart Materials and Structures, 2017, 26: 035062 (IF:2.909, JCR:Q1)
(7) Ting Tan, Zhimiao Yan*, Hong Lei, Optimization and performance comparison for galloping-based piezoelectric energy harvesters with alternating-current and direct-current interface circuits, Smart Materials and Structures, 2017, 26: 075007 (IF:2.909, JCR:Q1)
(8) Ting Tan, Zhimiao Yan*, Hong Lei, Weipeng Sun, Geometric nonlinear distributed parameter model for cantilever-beam piezoelectric energy harvesters and structural dimension analysis for galloping mode, Journal of Intelligent Material Systems and Structures, 2017, 28(20): 3066-3078 (IF:2.255, JCR:Q2)
(9) Ting Tan, Raffaella De Vita*, A structural constitutive model for smooth muscle contraction in biological tissues. International Journal of Non-Linear Mechanics, 2015, 75: 46-53 (IF:2.074, JCR:Q2)
(10) Ting Tan, Zhimiao Yan*, Optimization study on inductive-resistive circuit for broadband piezoelectric energy harvesters, AIP advances, 2017, 7: 035318 (IF:1.568, JCR:Q3)
(11) Adwoa Baah-Dwomoh, Jeffrey McGuire, Ting Tan, Raffaella De Vita*, Mechanical properties of female reproductive organs and supporting connective tissues: a review of the current state of knowledge, Applied Mechanics Reviews, 2016, 68: 060801 (IF:7.921, JCR:Q1)
(12) Zhimiao Yan*, Hong Lei, Ting Tan, Weipeng Sun, Wenhu Huang, Nonlinear analysis for dual-frequency concurrent energy harvesting, Mechanical Systems and Signal Processing, 2018,104:514-535 (IF: 4.116, JCR:Q1)
(13) Weipeng Sun, Zhimiao Yan*, Ting Tan, Daoli Zhao and Xingqi Luo, Nonlinear characterization of the rotor-bearing system with oil-film and unbalance forces considering the oil-temperature effect. Nonlinear Dynamics, DOI: 10.1007/s11071-018-4113-5 (IF: 3.464, JCR:Q1)
(14) Zhimiao Yan*, Weipeng Sun, Ting Tan and Wenhu Huang, Nonlinear analysis of galloping piezoelectric energy harvesters with inductive-resistive circuits for boundaries of analytical solutions, Communications in Nonlinear Science and Numerical Simulation, 2018, 62: 90-116 (IF: 2.784, JCR:Q1)
(15) Zhimiao Yan*, Haithem E. Taha, Ting Tan, Nonlinear characteristics of an autoparametric vibration system, Journal of Sound and Vibration, 2017, 390(3): 1-22 (IF:2.593, JCR:Q1)
(16) Zhimiao Yan, Zhitao Yan*, Zhengliang Li, Ting Tan, Nonlinear galloping of internally resonant iced transmission lines considering eccentricity, Journal of Sound and Vibration, 2012, 331: 3599-3616 (IF:2.593, JCR:Q1)

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