Zhou Zhiyong, Zhang Haiwei, Qin Weiyang, Zhu Pei, Du Wenfeng
School of Civil Engineering and Architecture, Henan University, Kaifeng 475004, China.
School of Power and Energy, Northwestern Polytechnical University, Xi'an 710072, China.
Materials (Basel). 2022 Mar 17;15(6):2237. doi: 10.3390/ma15062237.
To monitor the health status of the bridge, many sensors are needed to be mounted on it. Converting bridge vibration energy to electrical energy is considered as a potential solution to the problem of providing reliable electric power to these sensors. The objective of this work is to present an operable strategy for improving the electric energy output of a piezoelectric energy harvester installed on a bridge by introducing bi-stable characteristics. A bi-stable harvester is proposed. By adjusting the tip and fixed magnets, different types of potential energy can be generated, and then the harvester can exhibit the linear, mono-stable and bi-stable characteristics. In the bi-stable state, the harvester triggers snap-through motions easily and generates large outputs. The corresponding prototype was fabricated, and the experiment was carried out to validate the advantage of the bi-stable energy harvester. The experiment results show that the bi-stable energy harvester outperforms the classical linear harvester over the whole range of vehicle speed. As the vehicle speed exceeds a critical one, the snap-through motion will happen, which is beneficial to enhancing the electricity output. This conceptual design may provide guidance for promoting the performance of bridge energy harvesting.
为监测桥梁的健康状况,需要在桥上安装许多传感器。将桥梁振动能量转化为电能被认为是为这些传感器提供可靠电力问题的一种潜在解决方案。这项工作的目的是提出一种可操作的策略,通过引入双稳态特性来提高安装在桥梁上的压电能量采集器的电能输出。提出了一种双稳态采集器。通过调整尖端和固定磁体,可以产生不同类型的势能,然后采集器可以呈现线性、单稳态和双稳态特性。在双稳态状态下,采集器容易触发快速翻转运动并产生大量输出。制作了相应的原型,并进行了实验以验证双稳态能量采集器的优势。实验结果表明,在整个车速范围内,双稳态能量采集器的性能优于传统的线性采集器。当车速超过临界速度时,将发生快速翻转运动,这有利于提高电力输出。这种概念设计可为提升桥梁能量采集性能提供指导。