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On the buckling of composite conical shells resting on the Winkler-Pasternak elastic foundations under combined axial compression and external pressure

机译:在轴向压缩和外力共同作用下基于Winkler-Pasternak弹性地基的复合圆锥壳的屈曲

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The article discusses the buckling analysis of composite orthotropic truncated conical shells under a combined axial compression and external pressure and resting on a Pasternak foundation. The governing equations have been obtained for the orthotropic truncated conical shell resting on a Pasternak foundation and solved by applying the Superposition and Galerkin methods. The novelty of present work is to achieve closed-form solutions for critical combined loads. Finally, the effects of the Winkler and Pasternak elastic foundations, shell characteristics and material orthotropy on the values of critical combined loads have been studied. Comparison of results with those available in the literature has been presented.
机译:本文讨论了在轴向压缩和外部压力共同作用下并基于Pasternak基础的复合正交异性截断圆锥形壳体的屈曲分析。已经获得了基于Pasternak地基的正交各向异性截头圆锥壳的控制方程,并通过应用叠加法和Galerkin方法进行求解。当前工作的新颖性是为关键组合载荷实现封闭形式的解决方案。最后,研究了Winkler和Pasternak弹性地基,壳体特性和材料正交性对临界组合载荷值的影响。已经提出了将结果与文献中的结果进行比较。

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