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Explicit local buckling analysis of rotationally-restrained orthotropic plates under uniform shear

机译:均布剪切力作用下正交各向异性正交异性板的局部屈曲分析

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The explicit closed-form local buckling solution of in-plane shear-loaded orthotropic plates with two opposite edges simply supported and other two opposite edges either both rotationally restrained or one rotationally restrained and the other free is presented. Based on the boundary condition of the other two opposite edges, two types of plates are considered: the RR (both the edges rotationally restrained) and RF (one edge restrained and the other free) plate elements. Different plate buckled shape functions are proposed, and the approximate explicit expressions for the buckling loads are derived using the Ray-leigh-Ritz method for the plate with the generic rotationally-restrained (R) boundary conditions which can be reduced to two extreme cases, i.e., simply supported (S) and clamped (C). The accuracy of the derived explicit solutions is verified by comparing the predictions with the existing solutions and numerical finite element analysis, and excellent agreements are obtained. The effects of material and boundary restraining parameters on the local shear buckling behavior of the plate elements are discussed. The derived explicit formulas for the shear buckling loads are straightforward, efficient and reliable for preliminary engineering design and analysis of composite structures under primarily shear-dominant loading conditions.
机译:提出了平面内受剪力正交异性板的显式闭合形式局部屈曲解,其中两个相对边缘被简单支撑,而另两个相对边缘要么受旋转约束,要么受旋转约束,而另一自由。根据其他两个相对边缘的边界条件,考虑两种类型的板:RR(两个边缘均受旋转约束)和RF(一个边缘受约束而另一自由)板元件。提出了不同的板屈曲形状函数,并通过具有通用旋转约束(R)边界条件的板的Ray-leigh-Ritz方法推导了屈曲载荷的近似显式,可以将其简化为两种极端情况,即,简单地支撑(S)和夹紧(C)。通过将预测结果与现有解决方案进行比较并进行数值有限元分析,验证了导出的显式解决方案的准确性,并获得了良好的一致性。讨论了材料和边界约束参数对板单元局部剪切屈曲行为的影响。剪切屈曲载荷的导出明确公式对于主要在剪切载荷作用下的复合结构的初步工程设计和分析而言,是简单,有效和可靠的。

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