Liu Huifang, Dong Weiwei, Chang Yunlong, Gao Yifei, Li Wencheng
Shenyang University of Technology, 111 Road, Shenyang, Liaoning 110870, China.
Rev Sci Instrum. 2022 May 1;93(5):055001. doi: 10.1063/5.0078131.
The practice of harvesting vibration energy from machine tools, windmill blades, etc., and converting it into electric energy to power low-power electronic circuits has attracted wide attention from experts and scholars. Abundant vibrations that exist in the moving vehicle can be harvested to power sensors in tire pressure monitoring. In this paper, for the first time, a device is proposed to harvest the rotational vibration energy with the iron-gallium alloy (magnetostrictive material) as the core material. Such a device utilizes the coupling characteristics of Villarreal effect and Faraday electromagnetic effect to convert the vibration energy generated by the moving vehicle into electric energy. Upon completion of the design of the magnetostrictive rotational vibration energy harvester, the influence law of key factors, including substrate material, substrate size, and pre-magnetization field arrangement on the harvesting capability of the device, was studied in detail through experiments. An electric motor and vibration exciter were used to apply varied excitation forms to the harvester, and the output patterns of the harvester under conditions of wheel rotation, road bumps, and random vibration were fully analyzed. In addition, the correlation between the deformation of the cantilever beam and harvester performance was also investigated. The results have shown that at the acceleration of 9.6 g and the rotational speed of 90 r/min, the harvester can reach the output voltage of 1.22 V. Consequently, it demonstrates the feasibility of employing the magnetostrictive harvester to gather rotational vibration energy and provides theoretical guidance for further and deeper research on the harvester.
从机床、风车叶片等收集振动能量并将其转换为电能以为低功率电子电路供电的做法已引起专家学者的广泛关注。行驶车辆中存在的大量振动可被收集起来为轮胎压力监测中的传感器供电。本文首次提出一种以铁镓合金(磁致伸缩材料)为核心材料来收集旋转振动能量的装置。这种装置利用维拉雷尔效应和法拉第电磁效应的耦合特性,将行驶车辆产生的振动能量转换为电能。在完成磁致伸缩旋转振动能量收集器的设计后,通过实验详细研究了包括基底材料、基底尺寸和预磁化场布置等关键因素对该装置收集能力的影响规律。使用电动机和振动激励器对收集器施加不同的激励形式,并全面分析了收集器在车轮旋转、路面颠簸和随机振动条件下的输出模式。此外,还研究了悬臂梁的变形与收集器性能之间的相关性。结果表明,在加速度为9.6 g和转速为90 r/min时,收集器可达到1.22 V的输出电压。因此,它证明了采用磁致伸缩收集器收集旋转振动能量的可行性,并为对该收集器进行进一步深入研究提供了理论指导。