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Locally resonant band gaps achieved by equal frequency shunting circuits of piezoelectric rings in a periodic circular plate

机译:周期性圆板中压电环的等分频电路实现的局部谐振带隙

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摘要

This work presents an investigation on vibration transmission in a circular thin plate consisting of metal rings and piezoelectric rings arrayed periodically. Each piezoelectric ring is linked to an independent resistive-inductive (RL) resonant shunting circuit. For a periodic rectangular piezoelectric plate, equal inductances are commonly used in resonant shunting circuits. However, for the circular one, the locally resonant (LR) band gap (BC) cannot be formed by shunting circuits with equal inductances, because different periodic cell has a different capacitance. Instead of equivalent inductance circuits, the equal frequency shunting circuits are employed to tune the resonance frequency of each circuit into the same, thus an integrating LR BC is obtained. A transfer matrix method is used to calculate transmission factor in the low frequency range. The theoretical model is verified by finite element method (FEM). The impact of geometric and circuit parameters on the properties of the LR BC and vibration attenuation band (VAB) has also been analyzed. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项工作提出了在圆形薄板中的振动传播的研究,该薄板由周期性排列的金属环和压电环组成。每个压电环都链接到一个独立的电阻-电感(RL)谐振分流电路。对于周期性矩形压电板,谐振分流电路中通常使用相等的电感。然而,对于圆形的,由于不同的周期性单元具有不同的电容,所以不能通过具有相等电感的分流电路来形成局部谐振(LR)带隙(BC)。代替等效电感电路,使用等分频电路将每个电路的谐振频率调谐到相同的频率,从而获得积分LR BC。传输矩阵方法用于计算低频范围内的传输因子。通过有限元方法(FEM)验证了理论模型。还分析了几何和电路参数对LR BC和振动衰减带(VAB)的影响。 (C)2014 Elsevier Ltd.保留所有权利。

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