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Buckling Imperfection Sensitivity of Axially Compressed Orthotropic Cylinders

机译:轴向压缩正交各向异性圆柱的屈曲缺陷敏感性

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摘要

Structural stability is a major consideration in the design of lightweight shell structures. However, the theoretical predictions of geometrically perfect structures often considerably over predict the buckling loads of inherently imperfect real structures. It is reasonably well understood how the shell geometry affects the imperfection sensitivity of axially compressed cylindrical shells; however, the effects of shell anisotropy on the imperfection sensitivity is less well understood. In the present paper, the development of an analytical model for assessing the imperfection sensitivity of axially compressed orthotropic cylinders is discussed. Results from the analytical model for four shell designs are compared with those from a general-purpose finite-element code, and good qualitative agreement is found. Reasons for discrepancies are discussed, and potential design implications of this line of research are discussed.
机译:结构稳定性是轻质壳体结构设计中的主要考虑因素。但是,几何上完美的结构的理论预测通常大大超过了固有缺陷的真实结构的屈曲载荷。外壳几何形状如何影响轴向压缩的圆柱壳的不完美灵敏度,这是众所周知的。然而,壳各向异性对缺陷敏感性的影响尚不十分清楚。在本文中,讨论了用于评估轴向压缩正交各向异性圆柱体的缺陷敏感性的分析模型的开发。将四种壳体设计的分析模型的结果与通用有限元代码的结果进行比较,发现了良好的定性一致性。讨论了差异的原因,并讨论了该研究系列的潜在设计含义。

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