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Analytical modeling and experimental verification of vibration-based piezoelectric bimorph beam with a tip-mass for power harvesting

机译:振动式压电双压电晶片梁的尖端质量分析与实验验证

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Power harvesting techniques that convert vibration energy into electrical energy through piezoelectric transducers show strong potential for powering smart wireless sensor devices in applications of structural health monitoring. This paper presents an analytical model of the dynamic behavior of an electromechanical piezoelectric bimorph cantilever harvester connected with an AC-DC circuit based on the Euler-Bernoulli beam theory and Hamiltonian theorem. A new cantilevered piezoelectric bimorph structure is proposed in which the plug-type connection between support layer and tip-mass ensures that the gravity center of the tip-mass is collinear with the gravity center of the beam so that the brittle fracture of piezoelectric layers can also be avoided while vibrating with large amplitude. The tip-mass is equated by the inertial force and inertial moment acting at the end of the piezoelectric bimorph beam based on D'Alembert's principle. An AC-DC converting circuit soldered with the piezoelectric elements is also taken into account. A completely new analytic expression of the global behavior of the electromechanical piezoelectric bimorph harvesting system with AC-DC circuit under input base transverse excitation is derived. Moreover, an experimental energy harvester is fabricated and the theoretical analysis and experimental results of the piezoelectric harvester under the input base transverse displacement excitation are validated by using measurements of the absolute tip displacement, electric voltage response, electric current response and electric power harvesting.
机译:通过压电换能器将振动能转换为电能的功率收集技术显示出在结构健康监测应用中为智能无线传感器设备供电的强大潜力。本文基于欧拉-伯努利梁理论和哈密顿定理,提出了一种与交流-直流电路相连的机电式压电双压电晶片悬臂式收割机的动态行为分析模型。提出了一种新型的悬臂压电双压电晶片结构,其中支撑层和尖端质量之间的插接式连接确保尖端质量的重心与梁的重心共线,从而可以使压电层的脆性断裂得以实现。同时避免大幅度振动。尖端质量等于基于D'Alembert原理作用在压电双压电晶片梁末端的惯性力和惯性矩。还考虑了焊接有压电元件的AC-DC转换电路。推导了输入基极横向激励下带交直流电路的机电压电双压电晶片采集系统整体行为的全新解析表达式。此外,制造了一个实验能量收集器,并通过测量绝对尖端位移,电压响应,电流响应和电力收集,验证了在输入基础横向位移激励下压电收集器的理论分析和实验结果。

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