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Combined effects of elastic foundations and shear stresses on the stability behavior of functionally graded truncated conical shells subjected to uniform external pressures

机译:弹性地基和剪应力对功能梯度平顶圆锥壳在均匀外压作用下的稳定性行为的综合影响

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According to the framework of the Donnell's shell theory the stability behavior of functionally graded (FG) truncated conical shell interacting with two-parameter elastic foundations within the shear deformation theory (SDT) is investigated. The major goal of this research was to obtain a closed form of the solution for critical external pressures associated with the problem outlined above. The basic equations of FG truncated conical shell shells subjected to the external pressures are derived within the SDT. By using the Galerkin method to resulting basic equations are obtained the expressions for critical hydrostatic and lateral pressures of FG truncated conical shell interacting with two-parameter elastic foundations within the SDT. In particular, similar expressions within the classical shell theory (CST) are obtained, also. Comparison the current results and those available in the literature demonstrates the availability and accuracy of solutions. Finally, the calculation and presentation of the effects of many parameters included in the analysis conclude the goals to be reached in the study. (C) 2016 Elsevier Ltd. All rights reserved.
机译:根据Donnell壳理论的框架,研究了剪切变形理论(SDT)中功能梯度(FG)截顶圆锥形壳与两参数弹性基础相互作用的稳定性。这项研究的主要目的是获得与上述问题相关的关键外部压力的封闭式解决方案。在SDT中推导了承受外部压力的FG截头圆锥形壳的基本方程式。通过使用Galerkin方法得出基本方程,得到了FG截顶圆锥壳与SDT中的两参数弹性基础相互作用的临界静水压力和侧向压力的表达式。特别地,也获得了经典壳理论(CST)内的类似表达。将当前结果与文献中的结果进行比较,可以证明解决方案的可用性和准确性。最后,分析中包括的许多参数的影响的计算和表示得出了研究中要达到的目标。 (C)2016 Elsevier Ltd.保留所有权利。

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