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首页> 外文期刊>International Journal of Engineering Science >Broadband and tunable PZT energy harvesting utilizing local nonlinearity and tip mass effects
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Broadband and tunable PZT energy harvesting utilizing local nonlinearity and tip mass effects

机译:利用局部非线性和尖端质量效应进行宽带可调PZT能量收集

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摘要

In this paper, a broadband piezoelectric energy harvester with an applied restoring force is studied. The restoring force is modeled as a spring in the boundary conditions of the system. The system is composed of a clamped-free beam with a tip mass which is supported by a spring at the free end. A piezoelectric layer is bounded to the upper surface of the beam and the system is exposed to an external harmonic base excitation. A nonlinear distributed parameter model of the harvester is derived using the Hamilton's principle utilizing the Euler-Bernoulli beam theory assumption. The nonlinear strain-displacement field is used to take the large transverse deflections effects into account. The reduced-order model is derived by implementing the Galerkin discretization method and the dimension-less form of the equations is used to analyze the system. The effect of the piezoelectric layer on the free vibrations of the structure is determined. Effects of tip mass and base acceleration on the frequency response of the system are investigated. The results show that, the tip mass can amplify the scavenged voltage and tune the resonance frequency. To study the influence of different types of the restoring force, linear, hardening, and pure nonlinear behavior are considered for the applied spring. The results demonstrate that by applying a pure nonlinear restoring force, the resonance bandwidth of the harvester increases which causes the harvester to generate energy in a larger frequency bandwidth and the output voltage increased remarkably in comparison to clamped-free energy harvester. This phenomenon enhances the harvester efficiency in the cases of the excitations with the time-varying frequency or the random excitations and the results in a broadband energy harvester. Finally, studying the frequency response curves for the different values of the spring location declares that, as the location of the attached spring changes, the nonlinear resonance frequency alters. The maximum increase in the bandwidth is accompanied by the case where spring is attached at the free end of the beam. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了具有恢复力的宽带压电能量采集器。在系统的边界条件下,将恢复力建模为弹簧。该系统由带有末端质量的自由夹持梁组成,该末端质量由自由端的弹簧支撑。压电层被束缚在梁的上表面,并且该系统暴露于外部谐波基础激励下。利用汉密尔顿原理,利用欧拉-伯努利梁理论假设,推导了收割机的非线性分布参数模型。非线性应变位移场用于考虑大的横向挠度效应。通过实施Galerkin离散化方法导出降阶模型,并使用方程的无量纲形式分析系统。确定压电层对结构自由振动的影响。研究了尖端质量和基本加速度对系统频率响应的影响。结果表明,尖端质量可以放大扫气电压并调节谐振频率。为了研究不同类型的恢复力的影响,考虑了所施加弹簧的线性,硬化和纯非线性行为。结果表明,通过施加纯的非线性恢复力,收割机的共振带宽增加,这导致收割机在更大的频率带宽内产生能量,与无钳位的能量收割机相比,输出电压显着增加。在具有时变频率的激励或随机激励的情况下,这种现象提高了采集器的效率,从而产生了宽带能量采集器。最后,研究弹簧位置不同值的频率响应曲线表明,随着所连接弹簧位置的变化,非线性共振频率也会发生变化。带宽最大增加的同时,在梁的自由端安装了弹簧。 (C)2017 Elsevier Ltd.保留所有权利。

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