首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Free Vibration of FGSW Plates Partially Supported by Pasternak Foundation Based on Refined Shear Deformation Theories
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Free Vibration of FGSW Plates Partially Supported by Pasternak Foundation Based on Refined Shear Deformation Theories

机译:基于精细剪切变形理论的帕斯捷尔纳克基础部分支护FGSW板的自由振动

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摘要

A refined third-order shear deformation theory (RTSDT), in which the transverse displacement is split into bending and shear parts, is employed to formulate a four-node quadrilateral finite element for free vibration analysis of functionally graded sandwich (FGSW) plates partially supported by a Pasternak foundation. An element based on the refined first-order shear deformation theory (RFSDT) which requires a shear correction factor is also derived for comparison purpose. The plates consist of a fully ceramic core and two functionally graded skin layers with material properties varying in the thickness direction by a power gradation law. The Mori-Tanaka scheme is employed to evaluate the effective moduli. The elements are derived using Lagrangian and Hermitian polynomials to interpolate the in-plane and transverse displacements, respectively. The numerical result reveals that the frequencies obtained by the RTSDT element are slightly higher than the ones using the RFSDT element. It is also shown that the foundation supporting area plays an important role on the vibration of the plates, and the effect of the material distribution on the frequencies is dependent on this parameter. A parametric study is carried out to highlight the effects of the material inhomogeneity, the foundation stiffness parameters, and the foundation supporting area on the frequencies and vibration modes. The influence of the layer thickness and aspect ratios on the frequencies is also examined and highlighted.
机译:采用精细的三阶剪切变形理论(RTSDT),将横向位移分解为弯曲部分和剪切部分,以制定四节点四边形有限元,用于部分由帕斯捷尔纳克基础支撑的功能梯度夹层(FGSW)板的自由振动分析。为了进行比较,还推导了一种基于精细的一阶剪切变形理论(RFSDT)的单元,该理论需要剪切修正系数。这些板由一个全陶瓷芯和两个功能梯度的表皮层组成,其材料特性在厚度方向上因功率渐变定律而变化。采用Mori-Tanaka方案对有效模量进行评估。使用拉格朗日多项式和埃尔米特多项式推导这些单元,分别对平面内位移和横向位移进行插值。数值结果表明,RTSDT单元获得的频率略高于RFSDT单元。研究还表明,基础支护面积对板的振动起着重要作用,材料分布对频率的影响取决于该参数。通过参数化研究,突出了材料不均匀性、地基刚度参数和地基支撑面积对频率和振动模式的影响。还检查并强调了层厚度和纵横比对频率的影响。

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