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Buckling solutions of clamped-pinned anisotropic laminated composite columns under axial compression using bifurcation approach and finite elements

机译:分叉法和有限元法对夹钉各向异性层合复合材料组合柱在轴向压缩下的屈曲解

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Following the bifurcation approach, a generalized closed form buckling solution for clamped-pinned anisotropic laminated composite columns under axial compression is developed using the energy method. The effective axial, coupling, and flexural rigidity coefficients of the anisotropic layups are determined following the generalized constitutive relationship using dimensional reduction by static condensation of 6 x 6 rigidity matrix. The presented analytical explicit formula reproduces Euler buckling expression in the case of isotropic or specially-orthotropic materials once the effective coupling term vanishes. On the other hand, the analytical formula furnishes two extra terms which are functions of the effective coupling, flexural and axial rigidity. The analytical buckling formula is confirmed against finite element Eigen value solutions for different anisotropic laminated layups yielding high accuracy for a wide range of stacking sequences. A parametric study is then conducted to examine the effect of ply orientations, material properties including hybrid carbon/glass fiber composites, FE element type, and column size. Relevance of the numerical and analytical results is discussed in comparison to previous results in literature for cross ply laminates.
机译:遵循分叉方法,使用能量方法开发了一种在轴向压缩下用于夹紧销钉各向异性层状复合材料柱的广义闭合形式屈曲解决方案。各向异性叠层的有效轴向,耦合和抗弯刚度系数是通过使用6 x 6刚度矩阵的静态缩合进行尺寸缩减,遵循广义本构关系来确定的。一旦有效的耦合项消失,在各向同性或正交异性材料的情况下,提出的解析显式公式将重现欧拉屈曲表达式。另一方面,分析公式提供了两个附加项,它们是有效联接的功能,即弯曲刚度和轴向刚度。针对不同的各向异性叠层,针对有限元特征值解确定了屈曲分析公式,可在各种堆叠顺序下产生高精度。然后进行参数研究,以检查层取向,材料特性(包括混合碳/玻璃纤维复合材料),有限元元件类型和柱尺寸的影响。与文献中的交叉层压板的先前结果相比,讨论了数值和分析结果的相关性。

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