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Advanced variable kinematics Ritz and Galerkin formulations for accurate buckling and vibration analysis of anisotropic laminated composite plates

机译:先进的可变运动学Ritz和Galerkin公式,用于各向异性层压复合板的精确屈曲和振动分析

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摘要

Accurate free-vibrations and linearized buckling analysis of anisotropic laminated plates with different lamination schemes and simply supported boundary condition are addressed in this paper. Approximation methods, such as Rayleigh-Ritz, Galerkin and Generalized Galerkin, based on Principle of Virtual Displacement are derived in the framework of Carrera's Unified Formulation (CUF). CUF widely used in the analysis of composite laminate beams, plates and shells, have been here formulated both for the same and different expansion orders, for the displacement components, in the thickness layer-plate direction. An extensive assessment of advanced and refined plate theories, which include Equivalent single Layer (ESL), Zig-Zag (ZZ) and Layer-wise (LW) models, with increasing number of displacement variables is provided. Accuracy of the results is shown to increase by refining the theories. Convergence studies are made in order to demonstrate that accurate results are obtained examining thin and thick plates using trigonometric approximation functions. The effects of boundary terms, upon frequency parameters and critical loads are evaluated. The effects of the various parameters (material, number of layers, fiber orientation, thickness ratio, orthotropic ratio) upon the frequencies and critical loads are discussed as well. Numerical results are compared with 3D exact solution when available from the open literature.
机译:本文研究了不同层压方案和简单支撑边界条件下各向异性层压板的精确自由振动和线性屈曲分析。在Carrera统一公式化(CUF)的框架中,得出了基于虚拟位移原理的近似方法,如Rayleigh-Ritz,Galerkin和Generalized Galerkin。在这里,CUF被广泛用于复合材料层合梁,板和壳的分析,在厚度层-板方向上,对于位移分量,已针对相同和不同的膨胀阶数制定了CUF。随着位移变量数量的增加,对先进和完善的板理论进行了广泛的评估,其中包括等效单层(ESL),之字形(ZZ)和逐层(LW)模型。通过完善理论,可以提高结果的准确性。进行收敛研究是为了证明使用三角逼近函数检查薄板和厚板可获得准确的结果。评估边界项对频率参数和临界载荷的影响。还讨论了各种参数(材料,层数,纤维取向,厚度比,正交异性比)对频率和临界载荷的影响。从公开文献中获得数值结果时,会将其与3D精确解进行比较。

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