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Postbuckling analysis of shear-deformable composite laminated plates on two-parameter elastic foundations

机译:两参数弹性地基上可变形变形复合材料叠层板的屈曲后分析

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摘要

Postbuckling analysis is presented for a simply supported, shear-deformable, composite laminated plate subjected to uniaxial compression and resting on a two-parameter (Pastennak-type) elastic foundation. The initial geometric imperfection of the plate is taken into account. Two cases of in-plane boundary conditions are considered. The formulations are based on Reddy's higher-order shear-deformation plate theory, including plate-foundation interaction. The analysis uses a deflection-type perturbation technique to determine buckling loads and postbuckling equilibrium paths. Numerical examples are presented that relate to the performance of perfect and imperfect, antisymmetric angle-ply and symmetric cross-ply laminated plates resting on Pasternak-type elastic foundations from which results for Winkler elastic foundations are obtained as a limiting case. The effects played by foundation stiffness, transverse shear deformation, the character of the in-plane boundary conditions, plate aspect ratio, total number of plies, fiber orientation, and initial geometric imperfections are studied.
机译:提出了一种屈曲后分析方法,该方法是对承受单轴压缩并置于两参数(Pastennak型)弹性基础上的简单支撑,可剪切变形的复合层压板进行的。考虑了板的初始几何缺陷。考虑平面内边界条件的两种情况。这些公式基于Reddy的高阶剪切变形板理论,包括板-基础相互作用。该分析使用挠曲型微扰技术确定屈曲载荷和屈曲后的平衡路径。给出了数值示例,这些示例涉及基于Pasternak型弹性地基的完美和不完美,反对称的角层和对称的交叉层合板的性能,从中获得了Winkler弹性地基的结果作为极限情况。研究了基础刚度,横向剪切变形,面内边界条件的特征,板的长宽比,层的总数,纤维方向和初始几何缺陷等因素的影响。

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