Yang Hailu, Wei Ya, Zhang Weidong, Ai Yibo, Ye Zhoujing, Wang Linbing
National Centre for Materials Service Safety, University of Science & Technology Beijing, Beijing 100083, China.
Research and Development Center of Transport Industry of New Materials, Technologies Application for Highway Construction and Maintenance, Beijing 100088, China.
Sensors (Basel). 2021 Apr 20;21(8):2876. doi: 10.3390/s21082876.
Road power generation technology is of significance for constructing smart roads. With a high electromechanical conversion rate and high bearing capacity, the stack piezoelectric transducer is one of the most used structures in road energy harvesting to convert mechanical energy into electrical energy. To further improve the energy generation efficiency of this type of piezoelectric energy harvester (PEH), this study theoretically and experimentally investigated the influences of connection mode, number of stack layers, ratio of height to cross-sectional area and number of units on the power generation performance. Two types of PEHs were designed and verified using a laboratory accelerated pavement testing system. The findings of this study can guide the structural optimization of PEHs to meet different purposes of sensing or energy harvesting.
道路发电技术对于构建智能道路具有重要意义。叠层压电换能器具有较高的机电转换率和承载能力,是道路能量采集领域中最常用的将机械能转化为电能的结构之一。为进一步提高此类压电能量采集器(PEH)的发电效率,本研究从理论和实验两方面研究了连接方式、叠层层数、高径比和单元数量对发电性能的影响。设计了两种类型的PEH,并使用实验室加速路面测试系统进行了验证。本研究结果可为PEH的结构优化提供指导,以满足传感或能量采集的不同目的。