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Vibration Bandgaps of Piezoelectric Metamaterial Plate with Local Resonators for Vibration Energy Harvesting

机译:振动能量收获局部谐振器压电超石板振动带盖

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摘要

Embedded wireless sensing networks (WSNs) provide effective solutions for structural health monitoring (SHM), where how to provide long-term electric power is a bottle-neck problem. Piezoelectric vibration energy harvesting (PVEH) has been widely studied to realize self-powered WSNs due to piezoelectric effect. Structural vibrations are usually variable and exist in the form of elastic waves, so cantilever-like harvesters are not appropriate. In this paper, one kind of two-dimensional (2D) piezoelectric metamaterial plates with local resonators (PMP-LR) is investigated for structural vibration energy harvesting. In order to achieve low-frequency and broadband PVEH in SHM, it is highly necessary to study dynamic characteristics of PMP-LR, particularly bandgaps. Firstly, an analytical model is developed based on the Kirchhoff plate theory, and modal analysis is done by using the Rayleigh–Ritz method. Then, effects of geometric and material parameters on vibration bandgaps are analyzed by finite element-based simulations. In the end, experiments are carried out to validate the simulated results. The results demonstrate that the location of bandgaps can be easily adjusted by the design of local resonators. Therefore, the proposed method will provide an effective tool for optimizing local resonators in PMP-LR.
机译:嵌入式无线传感网络(WSNS)为结构健康监测(SHM)提供了有效的解决方案,其中如何提供长期电力是瓶颈问题。通过压电效应,广泛研究了压电振动能量收集(PVEH)以实现自动WSN。结构振动通常是可变的,并且以弹性波的形式存在,因此悬臂状的收割机不合适。本文研究了一种具有局部谐振器(PMP-LR)的一种二维(2D)压电超材料板,用于结构振动能量收获。为了在SHM中实现低频和宽带PVEH,非常必要研究PMP-LR,特别是带隙的动态特性。首先,基于Kirchhoff板理论开发了分析模型,使用瑞利丽思方法进行模态分析。然后,通过基于有限元的模拟分析了几何和材料参数对振动带隙的影响。最后,进行实验以验证模拟结果。结果表明,通过局部谐振器的设计可以容易地调节带隙的位置。因此,所提出的方法将提供一种用于优化PMP-LR中的局部谐振器的有效工具。

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