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首页> 外文期刊>Journal of Sound and Vibration >Nondimensional model and parametric studies of impact piezoelectric energy harvesting with dissipation
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Nondimensional model and parametric studies of impact piezoelectric energy harvesting with dissipation

机译:耗散冲击压电能量收割的非跨度模型与参数研究

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摘要

Impact piezoelectric energy harvesting could overcome the frequency matching problem of resonant energy harvesters and achieve broadband performance. However, the mechanism of impact dissipation in impact piezoelectric energy harvesting has not been investigated. No comprehensive model is available being able to analyze the response of impact piezoelectric energy harvesters under different impact velocities. This paper is aimed at developing a comprehensive model of impact piezoelectric energy harvesting by considering impact dissipation mechanism and conducting experiments to validate the developed model. In this paper, the electromechanical model, Hertzian contact theory and Hunt-Crossley model of impact dissipation are considered as constitutive mechanisms. The developed model is analyzed in terms of impact force and energy distribution. A testing method is proposed to investigate the impact piezoelectric energy harvester with a highspeed camera. The developed model is experimentally validated that it well predicts the response of impact piezoelectric energy harvesters by considering impact dissipation mechanism. The dimensionless model is achieved and the implications of mass ratio and impact dissipation on dynamics of the whole system is newly discovered. The guideline for improving harvested energy is proposed based on the results of parametric studies. (C) 2018 Elsevier Ltd. All rights reserved.
机译:影响压电能量收集可以克服谐振能量收割机的频率匹配问题,实现宽带性能。然而,尚未研究冲击压电能量收集冲击耗散机制。没有综合模型可以在不同冲击速度下分析冲击压电能量收割机的响应。本文旨在通过考虑影响耗散机制和进行实验来开发综合影响压电能量收集模型,以验证发达模型。本文采用机电模型,赫兹联系理论和冲击耗散的亨特交叉模型被认为是本构机。在冲击力和能量分布方面分析了开发的模型。提出了一种测试方法来研究带有高速相机的冲击压电能量收割机。通过考虑冲击耗散机制,开发模型经过实验验证,它很好地预测了冲击压电能量收割机的响应。实现了无量纲模型,新发现了大量比率和质量比对整个系统动力学的影响。提出了基于参数研究的结果提高了收获能量的指导。 (c)2018年elestvier有限公司保留所有权利。

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