振动
有限元法
能量收集
能量(信号处理)
压电
声学
灵敏度(控制系统)
结构工程
材料科学
基础(证据)
适应性
能量转换
机械能
工程类
机械工程
附加质量
能量法
信号(编程语言)
刚度
单调函数
作者
Mingli Li,Li Li,Shuchao Deng,Weiming Shi
摘要
Abstract To enhance the adaptability of energy harvesting structures in dynamic environments, this article investigates a folded piezoelectric energy harvester (FPEH) inspired by origami, which enables multidirectional vibration energy capture. The FPEHs are simulated using finite element methods and validated by a corresponding experimental platform. Subsequently, the effects of the design parameters (crease angle, crease position, and mass position) on the FPEH's performance are systematically analyzed under multidirectional vibration conditions. Results indicate that compared with the crease position, increasing crease angles or adjusting the mass positions can induce monotonic changes in the FPEH's performance. Furthermore, the energy harvesting sensitivity direction can be adjusted by collaboratively regulating design parameters. This research is expected to establish an analytical foundation for designing tunable and array-type piezoelectric energy harvesters (PEHs) tailored to multidirectional vibration scenarios.
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