Modeling and analysis of a rotational piezoelectric energy harvester with limiters

被引:0
作者
Xiaobo Rui
Zhoumo Zeng
Yibo Li
Yu Zhang
Zi Yang
Xinjing Huang
Zhou Sha
机构
[1] Tianjin University,State Key Laboratory of Precision Measurement Technology and Instrument
[2] The Ohio State University,Department of Materials Science and Engineering
来源
Journal of Mechanical Science and Technology | 2019年 / 33卷
关键词
Rotation; Piezoelectric; Energy harvesting; Limiter;
D O I
暂无
中图分类号
学科分类号
摘要
A rotational piezoelectric energy harvester has the ability to convert rotation mechanical energy into electric power. The piezoelectric harvester with cantilever based on gravity excitation has received great attention. Given that gravity excitation is greater than conventional vibration excitation, and large mass are often used in low-frequency applications, large amplitudes pose a significant threat to the life of a harvester. In this study, a rotational energy harvester with limiters is investigated to promote practical development. This study establishes a theoretical model verified by experiments. Results show that stiffness has little influence on the limiting effect. In the experimental conditions, the output after 2000 N/m is basically the same. The peak value of the output voltage is linearly proportional to the space. Given that an impact excitation is generated in the collision, the limiter widens the frequency band of the output in the upsweep.
引用
收藏
页码:5169 / 5176
页数:7
相关论文
共 33 条
  • [1] Bai Y(2018)Energy harvesting research: the road from single source to multisource Advanced Materials 30 1707271-33
  • [2] Heli J(2018)Micro-scale to nano-scale generators for energy harvesting: Self powered piezoelectric, tribo-electric and hybrid devices Physics Reports 792 1-18
  • [3] Jari J(2018)Energy harvesting technologies for achieving self-powered wireless sensor networks in machine condition monitoring: A review Sensors 18 4113-185
  • [4] Chandrasekaran S(2017)A comprehensive review on vibration energy harvesting: Modelling and realization Renewable and Sustainable Energy Reviews 74 1-1218
  • [5] Tang X(2014)A piezoelectric frequency up-converting energy harvester with rotating proof mass for human body applications Sensors and Actuators A: Physical 206 178-697
  • [6] Wei C(2019)Optimal design of PZT-based piezoelectric energy harvesting module for availability Journal of Mechanical Science and Technology 33 1211-754
  • [7] Jing X(2018)High-performance piezoelectric energy harvesters and their applications Joule 2 642-244
  • [8] Pillatsch P(2019)Modeling and analysis of piezoelectric energy harvesting with dynamic plucking mechanism Journal of Vibration and Acoustics 141 031002-161
  • [9] Yeatman EM(2014)Harvesting energy from a rotating gear using an AFM-like MEMS piezoelectric frequency up-converting energy harvester Journal of Microelectrome-chanical Systems 24 742-1534
  • [10] Holmes A S(2017)Design, modeling and experimental investigation of a magnetically coupled flextensional rotation energy harvester Smart Materials and Structures 26 115023-244