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Buckling analysis of composite panels and shells with different material properties by discrete singular convolution (DSC) method

机译:用离散奇异卷积(DSC)方法分析具有不同材料特性的复合板和壳体的屈曲

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The main purpose of this study is to give a numerical solution for static buckling problem of circular cylindrical panels, conical panels, conical shells and circular cylindrical shells under axial load. Isotropic, laminated composite, functionally graded material (FGM) and carbon nanotube (CNT) reinforced functionally graded cases are taken into consideration. By using the Donnell's shell theory and first-order shear deformation (FSDT) shell theory, the related equations have been obtained for buckling phenomena of shells. Then, the method of discrete singular convolution (DSC) based on the Shannon's kernel is applied for the solution of these equations. Convergence and comparison studies are carried out to check the validity and accuracy of the DSC method. The effects of shell geometric quantities and material properties on buckling are examined and results are presented for isotropic, FGM, CNT reinforced FGM and laminated composite conical and cylindrical shells and panels. Performance and convergence conditions of the method of DSC have also been investigated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的主要目的是为圆形圆柱板,圆锥板,圆锥壳和圆柱壳在轴向载荷下的静态屈曲问题提供一个数值解。考虑了各向同性,层压复合材料,功能梯度材料(FGM)和碳纳米管(CNT)增强的功能梯度情况。利用唐纳尔壳理论和一阶剪切变形(FSDT)壳理论,获得了壳屈曲现象的相关方程。然后,将基于香农核的离散奇异卷积(DSC)方法应用于这些方程的求解。进行了收敛和比较研究,以检验DSC方法的有效性和准确性。研究了壳几何数量和材料特性对屈曲的影响,并给出了各向同性,FGM,CNT增强的FGM以及层压复合圆锥和圆柱壳和面板的结果。还研究了DSC方法的性能和收敛条件。 (C)2016 Elsevier Ltd.保留所有权利。

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