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Energy Harvesting Using a Torsional Mode L-Shaped Unimorph Structure: Modeling and Experimental Investigations

机译:使用扭转模式L形单压电晶片结构的能量收集:建模和实验研究

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摘要

Previous studies have proved that the piezoelectric L-shaped beam-mass structure is a good candidate to harvest energy from ambient mechanical vibration. However, most researches merely focused on bending mode of the structure, which only can capture energy from in-plane base excitation. To fully exert the advantages of L-shaped harvesters, this paper will explore their energy harvesting performance on torsional mode with out-of-plane base excitation. The electromechanical coupling governing equation of the L-shaped harvester in torsional mode is derived by applying Gauss's law and the Euler-Bernoulli beam theory with linear assumption, and the analytical results are also validated with experimental results. In addition, the influences of key geometric parameters on the resonance frequency and output voltage of the harvester are also presented. This work demonstrates the feasibility of utilizing torsional mode of the L-shaped unimorph structure to harvest energy from out-of-plane mechanical vibration, which shows the potential of designing multi-directional and multi-frequency L-shaped harvesters.
机译:先前的研究证明,压电L形束质量结构是从周围机械振动中收集能量的理想选择。但是,大多数研究仅集中在结构的弯曲模式上,该模式只能从平面内基础激励中捕获能量。为了充分发挥L形收割机的优势,本文将探讨在平面外基础激励的扭转模式下它们的能量收集性能。应用高斯定律和线性假设的欧拉-伯努利梁理论,推导了L型收割机在扭转模式下的机电耦合控制方程,并通过实验验证了分析结果。此外,还介绍了关键几何参数对收割机共振频率和输出电压的影响。这项工作证明了利用L形单压电晶片结构的扭转模式从平面外机械振动中收集能量的可行性,这表明了设计多向多频L形收集器的潜力。

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