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Buckling and free vibration of exponentially graded sandwich plates resting on elastic foundations under various boundary conditions

机译:不同边界条件下弹性地基上指数级夹层板的屈曲和自由振动

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This paper deals with the vibration and buckling behavior of exponentially graded material (EGM) sandwich plate resting on elastic foundations under various boundary conditions. New functions for midplane displacements are suggested to satisfy the different boundary conditions. The elastic foundation is modeled as Pasternak's type which can be either isotropic or orthotropic and as a special case it converges to Winkler's foundation if the shear layer is neglected. The present EGM sandwich plate is assumed to be made of a fully ceramic core layer sandwiched by metal/ceramic EGM coat. The governing equations of the dynamic response of non-homogeneous composite plates are deduced by using various shear deformation plate theories. Numerical results for the natural frequencies and critical buckling loads of several types of symmetric EGM sandwich plates are presented. The validity of the present solution is demonstrated by comparison with solutions available in the literature. The influences of the inhomoge-neity parameter, aspect ratio, thickness ratio and the foundation parameters on the natural frequencies and critical buckling loads are investigated.
机译:本文研究了在各种边界条件下,弹性地基上的指数梯度材料(EGM)夹层板的振动和屈曲行为。建议使用中平面位移的新功能来满足不同的边界条件。弹性地基建模为Pasternak类型,可以是各向同性或正交各向异性,并且在特殊情况下,如果忽略了剪切层,则可以收敛到Winkler地基。假设本EGM夹心板由金属/陶瓷EGM涂层夹在中间的全陶瓷芯层制成。利用各种剪切变形板理论推导了非均质复合板动力响应的控制方程。给出了几种类型的对称EGM夹层板的固有频率和临界屈曲载荷的数值结果。通过与文献中可用的解决方案进行比较来证明本解决方案的有效性。研究了非均匀度参数,长宽比,厚度比和基础参数对固有频率和临界屈曲载荷的影响。

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