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Buckling analysis of orthotropic rectangular plate resting on Pasternak elastic foundation under biaxial in-plane loading

机译:双轴面内载荷作用下基于Pasternak弹性地基的正交异性矩形板的屈曲分析

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摘要

In this study, buckling of rectangular orthotropic plates resting on a Pasternak elastic foundation under biaxial in-plane loading by the power series method (the method of Frobenius) was analyzed. Similar to many studies, two opposite edges of loading are simply supported and two other edges are assumed clamped. In order to extract the characteristic equations of orthotropic rectangular plate under in-plane loading resting on a Pasternak elastic foundation, the classical plate theory, by considering the interaction between plate and foundation, is used. The results showed that in the aspect ratio of less than 2, the existing Pasternak foundation caused the buckling load to increase severely, but by increasing the aspect ratio, the effect of the foundation is negligible. Applying the in-plane load in the y-direction caused the buckling load to decrease, but by increasing the aspect ratios the effect of the load is negligible.
机译:在这项研究中,通过幂级数方法(Frobenius方法)分析了双轴平面内载荷作用下位于Pasternak弹性地基上的矩形正交异性板的屈曲。与许多研究相似,简单地支撑了负载的两个相对边缘,并假定其他两个边缘被夹紧。为了提取面内载荷作用于Pasternak弹性地基上的正交异性矩形板的特征方程式,采用了考虑板与地基相互作用的经典板理论。结果表明,当纵横比小于2时,现有的Pasternak地基会导致屈曲载荷急剧增加,但通过增加纵横比,基础的影响可以忽略不计。在y方向上施加面内载荷会导致屈曲载荷减小,但是通过增加纵横比,载荷的影响可以忽略不计。

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