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The buckling of FGM truncated conical shells subjected to axial compressive load and resting on Winkler-Pasternak foundations

机译:FGM截顶圆锥壳的屈曲受轴向压缩载荷,位于Winkler-Pasternak基础上

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摘要

In this study, the buckling analysis of the simply supported truncated conical shell made of functionally graded materials (FGMs) is presented. The FGM truncated conical shell subjected to an axial compressive load and resting on Winkler-Pasternak type elastic foundations. The material properties of functionally graded shells are assumed to vary continuously through the thickness. The modified Donnell type stability and compatibility equations are solved by Galerkin's method and the critical axial load of FGM truncated conical shells with and without elastic foundations have been found analytically. The appropriate formulas for homogenous and FGM cylindrical shells with and without elastic foundations are found as a special case. Several examples are presented to show the accuracy and efficiency of the formulation. Finally, parametric studies on the buckling of FGM truncated conical and cylindrical shells on elastic foundations are being investigated. These parameters include; power-law and exponential distributions of FGM, Winkler foundation modulus, Pasternak foundation modulus and aspect ratios of shells.
机译:在这项研究中,提出了由功能梯度材料(FGM)制成的简单支撑的圆锥形壳体的屈曲分析。 FGM截顶圆锥壳承受轴向压缩载荷,并置于Winkler-Pasternak型弹性地基上。假定功能梯度壳的材料特性在整个厚度范围内连续变化。改进的Donnell型稳定性和相容性方程通过Galerkin方法求解,并通过分析发现了带有或不带有弹性基础的FGM截顶圆锥壳的临界轴向载荷。发现带有和不带有弹性基础的均质和FGM圆柱壳的适当公式是一个特例。给出了几个例子来说明配方的准确性和效率。最后,对FGM圆锥形和圆柱壳在弹性基础上屈曲的参数化研究进行了研究。这些参数包括: FGM的幂律和指数分布,Winkler基础模量,Pasternak基础模量和壳的长宽比。

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