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An analytical solution for free and forced vibration of a piezoelectric laminated plate coupled with an acoustic enclosure

机译:带有隔音罩的压电层压板自由和强制振动的解析解决方案

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This paper deals with analytical vibro-acoustic modeling of a three-layered piezoelectric laminate coupled with an acoustic enclosure. Equation of the motion of the simply supported laminate is derived using the classical lamination theory (CLT) and pressure distribution inside the enclosure is obtained from the linear acoustic wave equation. Piezoelectric layers are assumed to be fully electroded and electric potential distribution in the piezoelectric layers satisfies both Maxwell's equation and closed circuit condition on major surfaces of the piezoelectric layers. In order to study the free and forced vibratory characteristics of the coupled system, the time dependent motion equation of the coupled system transformed into frequency domain and Laplace domain and reduced to a set of ordinary differential equations, based on the eigenfunction expansion method. Afterwards, the effect of the cavity depth upon natural frequencies and dynamic response of the presented model is examined. To ensure the accuracy of the presented model, results are compared with those obtained from commercial finite element analysis software. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文涉及三层压电层压板与隔音罩耦合的分析振动声学模型。使用经典层压理论(CLT)推导了简单支撑的层压板的运动方程,并从线性声波方程获得了壳体内部的压力分布。假定压电层是完全电极化的,并且压电层中的电势分布既满足Maxwell方程,又满足压电层主表面上的闭路条件。为了研究耦合系统的自由振动和强迫振动特性,基于特征函数展开法,将耦合系统的时变运动方程式转换为频域和拉普拉斯域,并简化为一组常微分方程组。然后,研究了腔深度对所提出的模型的固有频率和动态响应的影响。为了确保所提出模型的准确性,将结果与从商业有限元分析软件获得的结果进行比较。 (C)2015 Elsevier Ltd.保留所有权利。

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