Chen Qiuxuan, Li Chong, Lv Mingming
School of Mechanical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212100, China.
Micromachines (Basel). 2023 Jul 29;14(8):1527. doi: 10.3390/mi14081527.
The energy of rotating machinery exists widely in the environment. It is of great significance to collect and utilize the energy of rotating machinery for sustainable development. In this paper, a novel piezoelectric and electromagnetic energy harvester, which is capable of generating electrical energy under rotary excitation, is proposed based on array magnetic coupling. The working principle of this kind of energy harvester is analyzed. And the energy output modeling of the harvester is developed and output results are simulated. Based on the experimental test platform built in the laboratory, the output characteristics of the piezoelectric and electromagnetic energy harvester are tested. Results show that the maximum output power of the proposed energy harvester reaches 182 mW when the excitation speed is 120 rpm. Furthermore, both the piezoelectric module and the electromagnetic module can reach the maximum output power at the excitation speed of 120 rpm.
旋转机械的能量在环境中广泛存在。收集和利用旋转机械的能量对于可持续发展具有重要意义。本文基于阵列磁耦合提出了一种新型的压电和电磁能量采集器,该采集器能够在旋转激励下产生电能。分析了这种能量采集器的工作原理。建立了采集器的能量输出模型并对输出结果进行了仿真。基于实验室搭建的实验测试平台,对压电和电磁能量采集器的输出特性进行了测试。结果表明,当激励转速为120 rpm时,所提出的能量采集器的最大输出功率达到182 mW。此外,压电模块和电磁模块在120 rpm的激励转速下均可达到最大输出功率。