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The Stability of Cylindrical Shells Containing an FGM Layer Subjected to Axial Load on the Pasternak Foundation

机译:圆柱壳的稳定性,该圆柱形壳体在Pasternak基础上进行轴向载荷的FGM层

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In this study, the stability of cylindrical shells that composed of ceramic, FGM, and metal layers subjected to axial load and resting on Winkler-Pasternak foundations is investigated. Material properties of FGM layer are varied continuously in thickness direction according to a simple power distribution in terms of the ceramic and metal volume fractions. The modified Donnell type stability and compatibility equations on the Pasternak foundation are obtained. Applying Galerkin’s method analytic solutions are obtained for the critical axial load of three-layered cylindrical shells containing an FGM layer with and without elastic foundation. The detailed parametric studies are carried out to study the influences of thickness variations of the FGM layer, radius-to-thickness ratio, material composition and material profile index, Winkler and Pasternak foundations on the critical axial load of three-layered cylindrical shells. Comparing results with those in the literature validates the present analysis.
机译:在该研究中,研究了由经受轴向载荷和依赖于Winkler-Pasternak基础的陶瓷,FGM和金属层构成的圆柱形壳的稳定性。根据陶瓷和金属体积分数的简单功率分布,FGM层的材料特性在厚度方向上连续变化。获得了Pasternak基础上的改进的Donnell型稳定性和相容性方程。应用Galerkin的方法分析解决方案对于包含具有和无弹性地基的FGM层的三层圆柱形壳的临界轴向载荷。进行详细的参数研究以研究FGM层,半径 - 厚度比,材料组成和材料曲线指数,Winkler和Pasternak基础的影响,对三层圆柱形壳的临界轴向载荷进行影响。将结果与文献中的结果进行比较验证本分析。

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