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Effects of structural openings on the buckling strength of cylindrical shells

机译:结构开口对圆柱壳屈曲强度的影响

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摘要

Computational models, which follow numerical assessment strategies codified by current European rules for shell buckling, were developed so as to study the buckling and post-buckling response of a large set of cylindrical steel thin-shell prototypes with structural openings. Behavioural changes as a consequence of variations in the cutout configuration, that is, shape, size, location and number, were predicted and the obtained numerical estimates were related to the test data of previous experiments in order to explore critical design aspects. Damage modes and axial force-axial displacement response curves were presented and discussed, decoupling the roles played by material nonlinearity and geometrical nonlinearity, as well as the contribution of initial geometrical imperfections to the buckling mechanism of axially compressed cylindrical thin shells.
机译:开发了一种计算模型,该模型遵循了根据当前欧洲壳体屈曲规则编纂的数值评估策略,以便研究带有结构开口的大量圆柱钢薄壳原型的屈曲和屈曲后响应。可以预测由于切口形状变化而导致的行为变化,即形状,大小,位置和数量,并且将获得的数值估算值与先前实验的测试数据相关,以探索关键的设计方面。提出并讨论了损伤模式和轴向力-轴向位移响应曲线,从而将材料非线性和几何非线性以及初始几何缺陷对轴向压缩圆柱薄壳屈曲机理的贡献解耦。

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