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Two shear deferrable finite element models for buckling analysis of skew fibre-reinforced composite and sandwich panels

机译:用于斜交纤维增强复合材料和夹芯板屈曲分析的两个剪切可推迟有限元模型

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摘要

Two shear deformable finite element models, one based on first-order shear deformation theory and the other based on a higher order shear deformation theory, are developed for buckling analysis of skew laminated composite and sandwich panels. The procedure involves the development of transformation matrix between global and local degrees of freedom for the nodes lying on the skew edges and suitable transformation of element matrices. The accuracy of the present models is demonstrated by comparing with alternative solutions available in the literature. Extensive numerical results are presented for critical buckling loads of angle-ply and cross-ply skew laminates with various lamination parameters, boundary conditions and width-to-thickness ratios. New results on skew sandwiches, hitherto not reported in the literature, are obtained for different geometric parameters and skew angles.
机译:建立了两个剪切可变形的有限元模型,一个基于一阶剪切变形理论,另一个基于高阶剪切变形理论,用于斜交叠层复合材料和夹心板的屈曲分析。该过程涉及为偏斜边缘上的节点开发全局和局部自由度之间的转换矩阵,以及元素矩阵的适当转换。通过与文献中提供的替代解决方案进行比较,可以证明本模型的准确性。给出了具有各种层压参数,边界条件和宽厚比的斜角层和交叉层斜层板的临界屈曲载荷的大量数值结果。对于不同的几何参数和倾斜角度,可以获得迄今为止尚未在文献中报道的关于倾斜三明治的新结果。

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