Page 57 - 《振动工程学报》2026年第3期
P. 57
第 3 期 张海彬,等: 可编程 3D 打印的非对称双稳态压电振动能量采集器性能研究 657
formance of a tri-stable energy harvester with a staircase- Functional Materials, 2016, 26(32): 5940-5946.
shaped potential well[J]. Mechanical Systems and Sig⁃ [23] YI Z R, HU Y L, JI B W, et al. Broad bandwidth
nal Processing, 2021, 159: 107805. piezoelectric energy harvester by a flexible buckled
[19] ZOU D L, LIU G Y, RAO Z S, et al. Design of vibra⁃ bridge[J]. Applied Physics Letters, 2018, 113(18):
tion energy harvesters with customized nonlinear forces 183901.
[J]. Mechanical Systems and Signal Processing, 2021, [24] ZHOU S X, CAO J Y, WANG W, et al. Modeling
153: 107526. and experimental verification of doubly nonlinear mag⁃
[20] ZOU D L, LIU G Y, RAO Z S, et al. A device capa⁃ net-coupled piezoelectric energy harvesting from ambi⁃
ble of customizing nonlinear forces for vibration energy ent vibration[J]. Smart Materials and Structures,
harvesting, vibration isolation, and nonlinear energy 2015, 24(5): 055008.
sink[J]. Mechanical Systems and Signal Processing, [25] TANG Q C, YANG Y L, LI X X. Bi-stable frequency
2021, 147: 107101. up-conversion piezoelectric energy harvester driven by
[21] HU Y L, YI Z R, DONG X X, et al. High power den⁃ non-contact magnetic repulsion[J]. Smart Material
sity energy harvester with non-uniform cantilever struc⁃ Structures, 2011, 20(12): 125011.
ture due to high average strain distribution[J]. Energy,
第一作者: 张海彬(1998―),男,硕士研究生。
2019, 169: 294-304.
E-mail: 2754096607@qq.com
[22] YEO H G, MA X K, RAHN C, et al. Efficient piezo⁃
通信作者: 王光庆(1975―),男,博士,教授。
electric energy harvesters utilizing (001) textured bi⁃
E-mail: kele76@163.com
morph PZT films on flexible metal foils[J]. Advanced

