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On Mechanical Modeling Of Cantilevered Piezoelectric Vibration Energy Harvesters

机译:悬臂式压电振动能量采集器的力学建模研究

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摘要

Cantilevered beams with piezoceramic (PZT) layers are the most commonly investigated type of vibration energy harvesters. A frequently used modeling approach is the single-degree-of-freedom (SDOF) modeling of the harvester beam as it allows simple expressions for the electrical outputs. In the literature, since the base excitation on the harvester beam is assumed to be harmonic, the well known SDOF relation is employed for mathematical modeling. In this study, it is shown that the commonly accepted SDOF harmonic base excitation relation may yield highly inaccurate results for predicting the motion of cantilevered beams and bars. First, the response of a cantilevered Euler-Bernoulli beam to general base excitation given in terms of translation and small rotation is reviewed where more sophisticated damping models arc considered. Then, the error in the SDOF model is shown and correction factors are derived for improving the SDOF harmonic base excitation model both for transverse and longitudinal vibrations. The formal way of treating the components of mechanical damping is also discussed. After deriving simple expressions for the electrical outputs of the PZT in open-circuit conditions, relevance of the electrical outputs to vibration mode shapes and the electrode locations is investigated and the issue of strain nodes is addressed.
机译:压电陶瓷(PZT)层的悬臂梁是最常研究的振动能量收集器类型。常用的建模方法是收割机光束的单自由度(SDOF)建模,因为它允许简单表示电输出。在文献中,由于假设收割机光束的基本激励是谐波,因此采用众所周知的SDOF关系进行数学建模。在这项研究中,表明了公认的SDOF谐波基激励关系可能会产生非常不准确的结果来预测悬臂和杆的运动。首先,回顾了考虑平移和小旋转的悬臂式Euler-Bernoulli梁对一般基础激励的响应,其中考虑了更复杂的阻尼模型。然后,显示了SDOF模型中的误差,并导出了校正因子,以改善SDOF谐波基础激励模型的横向和纵向振动。还讨论了处理机械阻尼组件的正式方法。在得出开路条件下PZT的电输出的简单表达式之后,研究电输出与振动模式形状和电极位置的相关性,并解决应变节点的问题。

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