Xie Xiangdong, Huang Xunnan, Wang Junjie, Wang Zijing, Zhou Bowen, Zhang Jiankun
School of Urban Construction, Yangtze University, Jingzhou 434000, China.
Micromachines (Basel). 2022 Aug 2;13(8):1244. doi: 10.3390/mi13081244.
In order to make full use of the vibration energy in the process of attenuating vibration, an array piezoelectric coupled disc damper is developed, which works by converting part vibration energy into electrical energy. The piezoelectric damper is made of a pair of piezoelectric coupled discs built in a case cylinder. Its energy harvesting behavior is studied by a series of forced-vibration experiments and simulations. The influences of some factors, such as the excitation frequency, substrate thickness, the size of the piezoelectric patch, the paste form of the piezoelectric patch and the load resistance, on the energy harvesting behavior of the damper are analyzed and concluded. The experimental results show that the maximum peak-to-peak voltage and average power from one piezoelectric patch with an inner diameter of 35 mm, an outer diameter of 80 mm, and a thickness of 1 mm can reach up to 163 V and 161 mW, respectively. This research provides a practical piezoelectric damper attenuating harmful vibration by converting them into useful electric power, and the corresponding theoretical models are derived to predict its electrical output.
为了在减振过程中充分利用振动能量,研制了一种阵列式压电耦合圆盘阻尼器,它通过将部分振动能量转化为电能来工作。该压电阻尼器由一对内置在外壳圆柱体中的压电耦合圆盘制成。通过一系列强迫振动实验和模拟研究了其能量收集行为。分析并总结了激励频率、基底厚度、压电片尺寸、压电片粘贴形式和负载电阻等因素对阻尼器能量收集行为的影响。实验结果表明,一个内径为35mm、外径为80mm、厚度为1mm的压电片的最大峰峰值电压和平均功率分别可达163V和161mW。本研究提供了一种通过将有害振动转化为有用电能来衰减有害振动的实用压电阻尼器,并推导了相应的理论模型来预测其电输出。