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BUCKLING OF STIFFENED CURVED PANELS AND CYLINDRICAL SHELLS: A STUDY OF COMPARISON AMONG VARIOUS THEORIES

机译:加强弯曲板和圆柱壳的屈曲:各种理论的比较研究

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Formulation is derived for buckling of the circular cylindrical shell with multiple orthotropic layers and eccentric stiffeners acting under axial compression, lateral pressure, and/or combinations thereof, based on Sanders-Koiter theory. Buckling loads of circular cylindrical laminated composite shells are obtained using Sanders-Koiter, Love, and Donnell shell theories. These theories are compared for the variations in the stiffened cylindrical shells. To further demonstrate the shell theories for buckling load, the following particular case has been discussed: Cross-Ply with N odd (symmetric) laminated orthotropic layers. For certain cases the analytical buckling loads formula is derived for the stiffened isotropic cylindrical shell, when the ratio of the principal lamina stiffness is F=E_2/E_1=1. Due to the variations in geometrical and physical parameters in theory, meaningful general results are complicated to present. Accordingly, specific numerical examples are given to illustrate application of the proposed theory and derived analytical formulas for the buckling loads. The results derived herein are then compared to similar published work.
机译:制剂衍生为具有多个正交各向异性层和下轴向压缩,侧向压力作用偏心加强件,和/或它们的组合,基于桑德斯-Koiter理论的圆柱壳的屈曲。圆柱形的屈曲载荷层压复合壳体使用桑德斯-Koiter,爱,和唐奈壳理论而获得。这些理论在肋圆柱壳中的变化相比较。为了进一步证明壳理论为屈曲载荷,以下特定情况下已经讨论:交迭层用N奇数(对称)层叠各向异性层。对于某些情况下的解析屈曲载荷公式推导用于加筋各向同性圆柱壳,当主叶片的刚度之比为F = E_2 / E_1 = 1。由于在理论几何和物理参数中的变化,一般有意义的结果是复杂的存在。因此,给出了具体的数值例子来说明用于屈曲载荷所提出的理论的应用和衍生的解析公式。本文所获得的结果进行比较,以类似发表的作品。

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