Jiang Weile, Wang Lu, Wang Xinquan, Zhao Libo, Fang Xudong, Maeda Ryutaro
School of Humanities and Social Science, Xi'an 710049, China.
State Key Laboratory for Manufacturing Systems Engineering, International Joint Laboratory for Micro/Nano Manufacturing and Measurement Technologies, Xi'an Jiaotong University (Yantai) Research Institute for Intelligent Sensing Technology and System, Xi'an Jiaotong University, Xi'an 710049, China.
Nanomaterials (Basel). 2022 Oct 23;12(21):3718. doi: 10.3390/nano12213718.
The traditional single degree of freedom linear piezoelectric vibration energy harvester (PVEH), such as the cantilever type, mainly works and resonates in a single direction and at a single frequency. To adapt broadband and bidirectional ambient vibration, this paper designs and compares two PVEHs of L-shaped beam and U-shaped beam through COMSOL simulation and prototype test. FEA modeling is introduced for accurate structure design with modal analysis, voltage frequency response analysis, and proof mass analysis with multiphysics electromechanical coupling simulation. Two PVEH prototypes with different gravity angles and clamping angles are tested at 0.1 g acceleration to find the optimal angle for maximum output power. The best clamping angle of L-PVEH is 135° with RMS power of 0.3 mW at 7.9 Hz, and that of U-PVEH is 45° with RMS power of 0.4 mW at 5.0 Hz. The proposed U-PVEH shows more advantages in low broadband and bidirectional vibration energy harvesting.
传统的单自由度线性压电振动能量采集器(PVEH),如悬臂式,主要在单一方向和单一频率下工作和共振。为了适应宽带和双向环境振动,本文通过COMSOL模拟和原型测试,设计并比较了L形梁和U形梁两种PVEH。引入有限元分析建模,通过模态分析、电压频率响应分析以及多物理场机电耦合模拟的 Proof 质量分析,进行精确的结构设计。在0.1g加速度下对两个具有不同重力角度和夹紧角度的PVEH原型进行测试,以找到输出功率最大的最佳角度。L-PVEH的最佳夹紧角度为135°,在7.9Hz时RMS功率为0.3mW;U-PVEH的最佳夹紧角度为45°,在5.0Hz时RMS功率为0.4mW。所提出的U-PVEH在低宽带和双向振动能量采集方面显示出更多优势。