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Effects of imperfections of the buckling response of composite shells

机译:复合壳屈曲响应缺陷的影响

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摘要

The results of an experimental and analytical study of the effects of initial imperfections on the buckling response and failure of unstiffened thin-walled compression-loaded graphite-epoxy cylindrical shells are presented. The shells considered in the study have six different shell-wall laminates two different shell-radius-to-thickness ratios. The shell-wall laminates include four different orthotropic laminates and two different quasi-isotropic laminates. The shell-radius-to-thickness ratios includes shell-radius-to-thickness ratios equal to 100 and 200. The numerical results include the effects of traditional and nontraditional initial imperfections and selected shell parameter uncertainties. The traditional imperfections include the geometric shell-wall mid-surface imperfections that are commonly discussed in the literature on thin shell buckling. The nontraditional imperfections include shell-wall thickness variations, local shell-wall ply-gaps associated with the fabrication process, shell-end geometric imperfections, nonuniform applied end loads, and variations in the boundary conditions including the effects of elastic boundary conditions. The cylinder parameter uncertainties considered include uncertainties in geometric imperfection measurements, lamina fiber volume fraction, fiber and matrix properties, boundary conditions, and applied end load distribution. Results that include the effects of these traditional and nontraditional imperfections and uncertainties on the nonlinear response characteristics, buckling loads and failure of the shells are presented. The analysis procedure includes a nonlinear static analysis that predicts the stable response characteristics of the shells, and a nonlinear transient analysis that predicts the unstable response characteristics. In addition, a common failure analysis is used to predict material failures in the shells.
机译:提出了一个初始缺陷对未加应力的薄壁石墨-环氧树脂圆柱壳的屈曲响应和破坏的影响的实验和分析研究的结果。研究中考虑的壳具有六个不同的壳壁层压板,两个不同的壳半径与厚度比率。壳壁层压板包括四个不同的正交各向异性层压板和两个不同的准各向同性层压板。壳半径与厚度的比率包括等于100和200的壳半径与厚度的比率。数值结果包括传统和非传统初始缺陷的影响以及选定的壳参数不确定性。传统缺陷包括薄壳屈曲文献中通常讨论的几何壳壁中表面缺陷。非传统缺陷包括壳壁厚度变化,与制造过程相关的局部壳壁层间隙,壳端几何缺陷,施加的端载荷不均匀以及边界条件的变化(包括弹性边界条件的影响)。所考虑的圆柱体参数不确定性包括几何缺陷测量中的不确定性,层状纤维体积分数,纤维和基体特性,边界条件以及施加的最终载荷分布。提出了包括这些传统和非传统缺陷和不确定性对非线性响应特性,屈曲载荷和壳体破坏的影响的结果。分析过程包括预测壳的稳定响应特性的非线性静态分析和预测不稳定响应特性的非线性瞬态分析。另外,常用的失效分析用于预测壳体中的材料失效。

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