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Electromechanical wave finite element method for interconnected piezoelectric waveguides

机译:互连压电波导的机电波有限元方法

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A novel finite element (FE) formulation involving external electrical degrees of freedom is proposed for cases dealing with the coupling of mechanical and electrical waveguides through an array of piezoelectric patches. Interconnections between successive periodic unit cells enable the use of the transfer matrix (TM) formalism. It is thus shown that the wave finite element (WEE) method can be applied to electromechanical waveguides. As both mechanical and electrical variables are enclosed in the state vectors, the resulting attenuation and phase constants define waves that propagate in the two domains. For the computation of frequency response functions, it is proposed to employ the Riccati transfer matrix (RTM) method in order to avoid numerical instability. The whole computational method is validated through two examples involving a rod and a beam coupled to passive electrical transmission lines interconnecting a piezoelectric array. (C) 2018 Elsevier Ltd. All rights reserved.
机译:针对涉及通过压电贴片阵列的机械和电波导的耦合的情况,提出了一种涉及外部电自由度的新颖有限元(FE)公式。连续的周期性单位单元之间的互连使得可以使用传递矩阵(TM)形式。因此表明,波有限元(WEE)方法可以应用于机电波导。由于机械变量和电气变量都包含在状态向量中,因此所得的衰减和相位常数将定义在两个域中传播的波。为了计算频率响应函数,建议采用Riccati传递矩阵(RTM)方法,以避免数值不稳定。整个计算方法通过两个示例进行了验证,其中包括与连接压电阵列的无源电传输线耦合的杆和梁。 (C)2018 Elsevier Ltd.保留所有权利。

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