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Thermal buckling analysis of functionally graded sandwich cylindrical shells

机译:功能分级夹层圆柱壳的热屈曲分析

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Thermal buckling of functionally graded sandwich cylindrical shells is presented in this study. Material properties and thermal expansion coefficient of FGM layers are assumed to vary continuously through the thickness according to a sigmoid function and simple power-law distribution in terms of the volume fractions of the constituents. Equilibrium and stability equations of FGM sandwich cylindrical shells with simply supported boundary conditions are derived according to the Donnell theory. The influences of cylindrical shell geometry and the gradient index on the critical buckling temperature of several kinds of FGM sandwich cylindrical shells are investigated. The thermal loads are assumed to be uniform, linear and nonlinear distribution across the thickness direction. An exact simple form of nonlinear temperature rise through its thickness taking into account the thermal conductivity and the inhomogeneity parameter is presented.
机译:本研究介绍了功能梯度夹层圆柱壳的热屈曲。假设FGM层的材料特性和热膨胀系数根据组分的体积分数,根据Sigmoid函数和简单的动力法分布,厚度连续变化。根据Donnell理论导出具有简单支持的边界条件的FGM夹层圆柱形壳的平衡和稳定方程。研究了圆柱形外壳几何形状的影响及梯度指数对几种FGM夹层圆柱壳的关键屈曲温度。在厚度方向上假设热负载是均匀,线性和非线性分布。通过其厚度考虑导热率和不均匀性参数,通过其厚度确切的非线性温度升高的简单形式。

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