代表性论文: | [1] Wang Tian, Zhang Qichang, Han Jianxin*, et al. Low-frequency energy scavenging by a stacked tri-stable piezoelectric energy harvester. International Journal of Mechanical Sciences, 2024, 280. (SCI) [2] Xinyu Cao, Jianxin Han*, Qichang Zhang. Modeling and dynamic design of a piezoelectric cantilever energy harvester with surface constraints. Journal of Vibration Engineering and Technologies. 2024, 12(3): 4931-4952. (SCI) [3] Wang Tian, Zhang Qichang, Han Jianxin*, et al. Bio-inspired quad-stable piezoelectric energy harvester for low-frequency vibration scavenging. Energy, 2023, 282. (SCI) [4] Yan Yucheng, Zhang Qichang, Han Jianxin*, et al. Design and investigation of a quad-stable piezoelectric vibration energy harvester by using geometric nonlinearity of springs. Journal of Sound and Vibration, 2023, 64. (SCI) [5] Zhang Qichang, Yan Yucheng, Han Jianxin*, et al. Dynamic design of a quad-stable piezoelectric energy harvester via bifurcation theory. Sensors, 2022, 22, 8453. (SCI) [6] Han Jianxin*, Li Lei, Jin Gang, et al. Nonlinear mechanism of pull-in and snap-through in microbeam due to asymmetric bias voltages. Nonlinear Dynamics, 2020, 102(1): 19-44. (SCI) [7] Han Jianxin, Jin Gang, Zhang Qichang*, et al. Dynamic evolution of a primary resonance MEMS resonator under prebuckling pattern. Nonlinear Dynamics, 2018, 93(4): 2357-2378. (SCI) [8] Han Jianxin*, Li Lei, Jin Gang, et al. Qualitative identification of the static pull-in and fundamental frequency of one-electrode MEMS resonators. Micromachines, 2018, 9(12): 614, pp. 1-22. (SCI) [9] Han Jianxin, Zhang Qichang, Wang Wei*. Static bifurcation and primary resonance analysis of a MEMS resonator actuated by two symmetrical electrodes. Nonlinear Dynamics, 2015, 80(3): 1585‒99. (SCI) [10] Han Jianxin, Zhang Qichang, Wang Wei*. Design considerations on large amplitude vibration of a doubly clamped microresonator with two symmetrically located electrodes. Communications in Nonlinear Science and Numerical Simulation, 2015, 22(1‒3): 492‒510. (SCI) |