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Buckling analysis of Levy-type orthotropic stiffened plate and shell based on different strain-displacement models

机译:基于不同应变位移模型的Levy型正交异性加劲板壳屈曲分析

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摘要

In the present work a model able to predict the buckling behavior of thin, orthotropic, stiffened plates and shells subject to axial compression is proposed. In the context of the Kirchhoff-Love plate theory and making use of different strain-displacement models - namely the von Karman model, the Koiter-Sanders shell model, an enhanced von Karman model and a spurious mode! commonly adopted in literature - the equilibrium equations have been solved by the Levy-type approach. The results obtained highlight the influence of each non-linear strain-displacement term and show that the von Karman model can noticeably overestimate the buckling load when the critical mode involves significant in-plane displacements.
机译:在目前的工作中,提出了一种能够预测受轴向压缩的正交各向异性的加劲薄板和壳体的屈曲行为的模型。在基尔霍夫-洛夫平板理论的背景下,并利用了不同的应变位移模型-von Karman模型,Koiter-Sanders壳模型,增强的von Karman模型和伪模式!文献中通常采用的-平衡方程已通过Levy型方法求解。所获得的结果突出了每个非线性应变位移项的影响,并表明当临界模式涉及较大的平面内位移时,von Karman模型可以明显高估屈曲载荷。

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