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Broadband bimorph piezoelectric energy harvesting by exploiting bending-torsion of L-shaped structure

机译:利用L形结构的弯曲-扭转获得宽带双压电晶片压电能量

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摘要

Vibration-based piezoelectric energy harvesting has the potential to effectively power electronic sensors and communication devices of wireless networks. To address the need to increase the levels of harvested energy and increase its frequency bandwidth, we exploit multi-modal and multi-directional responses of a simple structure. Given advances made in developing piezoelectric materials with large face shear piezoelectric coefficients (d(36)), we explore the potential of developing a broadband and highly efficient bending-torsion L-shaped bimorph harvester through exploiting the d(31) and d(36) modes. A distributed-parameter model based on the Euler-Bernoulli beam assumptions is developed to assess the efficiency and power density of the proposed harvester. The model is validated with experiments and finite element simulations. The influence of the excitation angle as well as key geometric parameters of the L-shaped harvester on the energy harvesting efficiency and voltage frequency-response curve are presented and analyzed. The results show that the proposed structure and approach improves the frequency bandwidth with a frequency response that covers the first three modes of the harvester. The harvester yields an average power of 1.790 mu W over a frequency range between 20 and 200 Hz, which is larger than bending mode L-shaped harvester (0.825 mu W), cantilever harvester with the same length of main beam (0.764 mu W) and auxiliary beam (1.037 mu W). The investigated L-shaped structure constitutes a promising harvester that supports multi-directional and multi-mode energy harvesting.
机译:基于振动的压电能量收集具有为无线网络的电子传感器和通信设备有效供电的潜力。为了满足增加收集的能量水平并增加其频率带宽的需求,我们利用了简单结构的多模式和多方向响应。鉴于在开发具有大面剪切压电系数(d(36))的压电材料方面取得的进展,我们探索了通过开发d(31)和d(36)开发宽带和高效弯曲扭转L形双压电晶片收割机的潜力)模式。建立了基于Euler-Bernoulli束假设的分布参数模型,以评估所建议的收割机的效率和功率密度。该模型已通过实验和有限元模拟进行了验证。给出并分析了L形收割机的励磁角以及关键几何参数对能量收集效率和电压频率响应曲线的影响。结果表明,所提出的结构和方法以覆盖采集器的前三种模式的频率响应来改善频率带宽。该收割机在20至200 Hz的频率范围内产生的平均功率为1.790 mu W,大于弯曲模式L形收割机(0.825 mu W),具有相同主光束长度的悬臂收割机(0.764 mu W)和辅助光束(1.037亩瓦)。所研究的L形结构构成了一个有前途的收割机,它支持多方向和多模式能量收集。

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