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Post-buckling and first-ply failure of thin-walled frames and columns made of composite materials

机译:后屈曲和第一层薄壁框架和由复合材料制成的柱的故障

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First-ply failure (FPF) of composite thin-walled columns and frames is investigated in the buckled structure Elastic behavior is assumed during the pre-buckling and buckling states, and along part of the post-buckling equilibrium path. The Tsai-Hill criterion is employed to identify failure of one ply at one specific location. The technique of analysis is based on evaluation of the post-buckling elastic path, and using FPF as a constraint in the analysis. The structure is modeled using a few degrees of freedom to include local and/or overall buckling modes. The theoretical results are compared with experimental bounds and show good agreement for local buckling of isolated columns There are no experimental results for frames in the literature, but theoretical results are presented for a simple case with asymmetric bifurcation.
机译:在预屈曲和屈曲的状态下,在弯曲结构弹性行为中研究了复合薄壁柱和框架的第一帘布层次(FPF),以及沿后屈曲的平衡路径的一部分。 Tsai-hill标准用于识别在一个特定位置的帘布层的失效。分析技术基于对后屈曲弹性路径的评估,并在分析中使用FPF作为约束。使用几种自由度建模该结构以包括局部和/或整体屈曲模式。理论结果与实验界限进行比较,并且对孤立的柱的局部屈曲吻合良好的一致性,文献中没有实验结果,但是在不对称分叉的简单情况下呈现理论结果。

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