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Two-dimensional transient analysis of wave propagation in functionally graded piezoelectric slabs using the transform method

机译:变换法在功能梯度压电板中波传播的二维瞬态分析

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摘要

In this study, the transient responses of a functionally graded piezoelectric slab were analyzed using the transform technique. The slab was subjected to a dynamic anti-plane concentrated force and an in-plane point electric displacement on the top surface, and the bottom surface was assumed to be open-circuit or grounded. The analytical solutions were obtained in the Laplace transform domain, and a numerical inversion was performed using the Durbin method. The numerical results showed that an applied point electric displacement may instantaneously induce shear stress waves due to the piezoelectricity for both open-circuit and grounded cases. When the bottom surface was grounded, a visible electric wave was induced by the grounded boundary and the influence of this wave was significant when the gradient coefficient of the functionally graded piezoelectric materials (FGPMs) was large enough. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在这项研究中,使用变换技术分析了功能梯度压电板的瞬态响应。该板在顶面上受到动态反平面集中力和面内点电位移的影响,并且认为底面开路或接地。在Laplace变换域中获得了解析解,并使用Durbin方法进行了数值反演。数值结果表明,在开路和接地情况下,施加点的电位移可能会由于压电性而瞬间引起剪切应力波。当底表面接地时,可见的电波由接地的边界引起,并且当功能梯度压电材料(FGPM)的梯度系数足够大时,该波的影响显着。 (C)2014 Elsevier Ltd.保留所有权利。

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