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Three-dimensional vibration analysis of layered and functionally graded plates through sampling surfaces formulation

机译:通过采样表面公式对分层和功能梯度板进行三维振动分析

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摘要

The paper deals with a recently developed method of sampling surfaces (SaS) and its implementation for the three-dimensional (3D) free vibration analysis of layered plates with embedded functionally graded (FG) layers. The SaS method is based on choosing inside the nth layer I-n not equally spaced SaS parallel to the middle surface of the plate in order to introduce the displacements of these surfaces as basic plate variables. Such choice of unknowns with the consequent use of Lagrange polynomials of degree I-n - 1 in the assumed distributions of the displacements and mechanical properties through the thickness of the layer leads to the robust FG plate formulation. The SaS are located inside each layer at Chebyshev polynomial nodes that makes it possible to minimize uniformly the error due to the Lagrange interpolation. As a result, the SaS formulation can be applied efficiently to obtaining the analytical solutions for layered and FG plates, which asymptotically approach the 3D exact solutions of elasticity as the number of SaS tends to infinity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文讨论了最近开发的采样表面(SaS)方法及其在具有嵌入式功能梯度(FG)层的层板的三维(3D)自由振动分析中的实现。 SaS方法基于以下选择:在第n层I-n内部选择不平行于平板中间表面的等距SaS,以便将这些表面的位移作为基本平板变量引入。通过在层的厚度范围内位移和机械性能的假设分布中随后使用I-n-1级拉格朗日多项式来进行未知数的这种选择,可形成坚固的FG板配方。 SaS位于Chebyshev多项式节点的每一层内部,这使得均匀地最小化由于Lagrange插值引起的误差成为可能。结果,可以将SaS配方有效地应用于获得层状和FG板的分析溶液,随着SaS数量趋于无穷大,其渐近地接近3D弹性的精确解。 (C)2016 Elsevier Ltd.保留所有权利。

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