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Shear Buckling of Flat Orthotropic Stiffened Panels with Application to Glare Material

机译:正交异性加筋平板的剪切屈曲及其在眩光材料中的应用

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This paper investigates the shear buckling of flat, stiffened panels of specially orthotropic skin material, for which the stiffeners are assumed to possess both flexural and torsional rigidity. It is shown that the shear buckling behavior can be captured by four generic, nondimensional panel parameters, two of which relate to the skin orthotropy, the other ones representing the flexural and torsional stiffness of the stiffeners. Several design curves, showing the nondimensional shear buckling load as a function of these four panel parameters, are generated using the STAGS FEM code. The validity of the FEM method is demonstrated through comparison with an analytical procedure based on the Rayleigh-Ritz and Lagrangian multiplier methods. Furthermore, to assess the accuracy of the design curves a number of Glare panels containing stiffeners of different shapes and attachment methods typically applied in aerospace structures are analyzed as well. These particular FEM analyses are more realistic than the ones used to generate the design curves in the sense that the exact shape of the stiffeners is modeled and the attachment method is explicitly accounted for. It is shown that the predictions from the design curves are in reasonable agreement with the detailed FEM results.
机译:本文研究了特殊正交各向异性蒙皮材料的平坦,加劲板的剪切屈曲,假定这些加劲肋同时具有弯曲和扭转刚度。结果表明,剪切屈曲行为可以通过四个通用的无量纲面板参数来捕捉,其中两个参数与蒙皮正交各向异性有关,另一个参数则表示加劲肋的抗弯刚度和抗扭刚度。使用STAGS FEM代码生成了几条设计曲线,这些曲线显示了这四个面板参数的函数,无量纲的剪切屈曲载荷。通过与基于Rayleigh-Ritz和Lagrangian乘数法的分析程序进行比较,证明了FEM方法的有效性。此外,为了评估设计曲线的准确性,还分析了许多眩光板,这些眩光板包含通常用于航空航天结构的不同形状的加劲肋和固定方法。这些特定的FEM分析比用于生成设计曲线的分析更实际,因为在这种情况下,对加劲肋的精确形状进行了建模,并明确考虑了附着方法。结果表明,设计曲线的预测结果与详细的有限元分析结果基本吻合。

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