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Buckling of Laminated Composite and Sandwich Plates Using Radial Basis Function Collocations

机译:径向基函数搭配的层合复合材料和夹层板屈曲

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摘要

In this paper, buckling analysis of isotropic, orthotropic, laminated composite and sandwich plates utilizing trigonometric shear deformation theory and meshless method based on the finite point formulation using thin plate, polynomial and inverse multiquadric radial basis function is presented. The convergence of the present method is studied for isotropic and laminated composite plates for different radial basis functions with optimal value of shape parameter. Numerical examples of laminated and sandwich plates subjected to various types of in-plane loads are solved to demonstrate accuracy and applicability of present method. Several new results for variety of composite and sandwich plates are presented. The present results are observed to be in good agreement with those available in literature. The effects of orthotropy ratio of material, span to thickness ratio, number of layers, core thickness and lamination scheme on the critical load of plates are also presented.
机译:本文基于三角板剪切变形理论和无网格方法,基于薄板,多项式和逆多二次径向基函数的有限点公式,提出了各向同性,正交各向异性,层压复合材料和夹层板的屈曲分析。研究了各向同性和层合复合板在不同径向基础上具有最佳形状参数的方法的收敛性。求解了承受各种类型的面内载荷的层压板和夹层板的数值示例,以证明本方法的准确性和适用性。介绍了多种复合板和夹心板的一些新结果。据观察,目前的结果与文献中的结果非常吻合。还介绍了材料的正交各向异性比率,跨度与厚度比率,层数,芯厚度和层压方案对板的临界载荷的影响。

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