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曹军义
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机械工程学院
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博士研究生毕业
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机械工程
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[1] . Mingxiang Ling, Junyi Cao*, Minghua Zeng, Jing Lin . Theoretical modeling of attenuated displacement amplification for multistage compliant mechanism and its application , Sensors and Actuators A Physical , 2016 , 249 : 15-22
[2] . Junyi Cao, Mingxiang Ling, Daniel J Inman, Jing Lin . Generalized constitutive equations for piezo-actuated compliant mechanism , Smart Materials and Structures , 2016 , 25 : 095005
[3] . Shengxi Zhou, Junyi Cao, JIng Lin . Theoretical analysis and experimental verification for improving energy harvesting performance of nonlinear monostable energy harvesters , Nonlinear Dynamics , 2016
[4] . Mingxiang Ling,Junyi Cao,Minghua Zeng,Jing Lin,Daniel J Inman . Enhanced mathematical modeling of the displacement amplification ratio for piezoelectric compliant mechanisms , Smart Materials and Structures , 2016 , 25 : 075022
[5] . Shengxi Zhou, Weijia Chen, Mohammad H Malakooti, Junyi Cao, Daniel J Inman . Design and modeling of a flexible longitudinal zigzag structure for enhanced vibration energy harvesting , Journal of Intelligent Material Systems and Structures , 2016
[6] . Shengxi Zhou, Junyi Cao, Daniel Inman,Jing Li, Dan LI . Harmonic balance analysis of nonlinear tristable energy harvesters for performance enhancement , Journal of Sound and Vibration , 2016
[7] . Junyi Cao, Wei Wang,Shengxi Zhou, Daniel J. Inman, Jing Lin . Nonlinear time-varying potential bistable energy harvesting from human motion , Applied Physics Letters , 2015 , 107(14) : 143904
[8] . Junyi Cao, Arkadiusz Syta, Grzegorz Litak, Shengxi Zhou, Daniel J. Inman, . Regular and chaotic vibration in a piezoelectric energy harvester with fractional damping , EUROPEAN PHYSICAL JOURNAL PLUS , 2015 , 130:103 : 10
[9] . Junyi Cao, Shengxi Zhou, Wei Wang, Jing Lin . Influence of potential well depth on nonlinear tristable energy harvesting , Applied Physics Letters , 2015 , 106(17) : 173903
[10] . Shengxi Zhou, Junyi Cao*, Wei Wang, Shengsheng Liu, Jing Lin . Modeling and experimental verification of doubly nonlinear magnet-coupled piezoelectric energy harvesting from ambient vibration , Smart Materials and Structures , 2015 , 24(5) : 055008-13
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