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A generalized higher-order theory for buckling of thick multi-layered composite plates with normal and transverse shear strains

机译:法向和横向剪切应变的多层复合板屈曲的广义高阶理论

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摘要

The onset of buckling in square laminated multi-layered composite plates, subject to unidirectional in-plane loads, is investigated within the framework of a generalized higher-order shear deformation theory suitable to capture significant transverse shear and thickness-wise deformation effects. The displacement field is expanded in a Taylor series of the thickness coordinate with arbitrary polynomial degree; in turn, the series coefficients, expressed as a superposition of admissible functions, are determined according to the Rayleigh-Ritz method. Truly higher-order polynomial terms, along with a sufficient number of in-plane admissible functions, are shown to be necessary for convergence towards the fundamental buckling load multiplier. As a by-product, reduced-order models are identified for various plate geometries and lamination schemes. The sensitivity of the lowest buckling load with respect to the nondimensional parameters (the thickness ratio, the ratio between the elastic moduli, the ply angle) is investigated. In particular, the attention is focused on the cross-over phenomenon between the lowest two buckling eigenvalues in multi-layered composite square plates with different lamination schemes. The presented results shed light onto the buckling behavior of thick shear-deformable multi-layered plates.
机译:在适用于捕获显着的横向剪切和厚度方向变形效应的广义高阶剪切变形理论的框架内,研究了单向平面内载荷作用下方形叠层多层复合板屈曲的发生。位移场以任意多项式以厚度坐标的泰勒级数展开;依次,根据Rayleigh-Ritz方法确定表示为可允许函数的叠加的级数系数。事实证明,真正的高阶多项式项以及足够数量的面内允许函数对于收敛到基本屈曲载荷乘数是必要的。作为副产品,针对各种板几何形状和层压方案确定了降序模型。研究了最小屈曲载荷对无量纲参数(厚度比,弹性模量之比,帘布层角)的敏感性。特别地,注意力集中在具有不同层压方案的多层复合方板中最低的两个屈曲特征值之间的交叉现象。提出的结果揭示了厚的可剪切变形多层板的屈曲行为。

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