首页> 外文会议>Symposium on Composite Structures: Theory and Practice, May 17-18, 1999, Seattle, Washington >The Effects of Initial Imperfections on the Buckling of Composite Cylindrical Shells
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The Effects of Initial Imperfections on the Buckling of Composite Cylindrical Shells

机译:初始缺陷对复合圆柱壳屈曲的影响

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The results of an experimental and analytical study of the effects of initial imperfections on the buckling response of thin unstiffened graphite-epoxy cylindrical shells with and without a cutout, and with three different shell-wall laminates, are presented. Results that identify the individual and combined effects of traditional initial geometric shell-wall imperfections, and nontraditional shell-wall thickness variations, shell-end geometric imperfections, and variations in loads applied to the ends of the shells on the shell buckling and nonlinear responses, are included. The shells have been analyzed with a robust nonlinear finite-element analysis code for shells that accurately accounts for these effects on the buckling and nonlinear responses of the shells. The analysis results generally correlate well with the experimental results. The nonlinear analysis results are also compared with the results from a traditional linear bifurcation buckling analysis that is commonly used for shell design. The results suggest that the nonlinear analysis procedure can be used for determining accurate, high-fidelity, design knockdown factors for shell buckling and collapse. A discussion of how this high-fidelity nonlinear analysis procedure can be used to form the basis for a shell analysis and design approach that addresses some of the critical shell-buckling design criteria and design considerations for composite shell structures is included.
机译:给出了一个初始缺陷对带有和不带有切口,具有三种不同的壳壁层压板的薄的未加硬石墨-环氧圆柱壳的屈曲响应的影响的实验和分析研究的结果。识别传统初始几何壳壁缺陷,非传统壳壁厚度变化,壳端几何缺陷以及施加到壳端部的载荷在壳屈曲和非线性响应上的变化的个体和综合影响的结果,被包含在内。壳体已使用健壮的非线性有限元分析代码对壳体进行了分析,该代码可准确说明这些对壳体的屈曲和非线性响应的影响。分析结果通常与实验结果很好地相关。还将非线性分析结果与通常用于壳体设计的传统线性分叉屈曲分析的结果进行比较。结果表明,非线性分析程序可用于确定准确的,高保真的,设计的击倒因数,以用于壳的屈曲和塌陷。讨论了如何使用这种高保真度非线性分析程序来构成壳分析和设计方法的基础,该方法解决了一些关键的壳屈曲设计标准以及复合壳结构的设计注意事项。

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