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Thermoelastic analysis of laminated and functionally graded sandwich cylindrical shells with two refined higher order models

机译:具有两个改进的高阶模型的层状和功能梯度夹层圆柱壳的热弹性分析

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摘要

Analytical solutions for laminated and functionally graded sandwich open cylindrical shells under mechanical and thermal loads are presented using a refined higher order shear and normal deformation theory. Temperature variation through thickness is assumed as thickness coordinate polynomial. Present study also extends the classical thickness criteria with more reliable extension to moderately thick shells. Navier solution method is used to solve system of equations derived using principle of minimum potential energy for all edges diaphragm supported. Two kinds of sandwich panels with core or face sheets made of thickness graded material are studied. Several examples are numerically evaluated to establish the accuracy of present models.
机译:使用改进的高阶剪切和法向变形理论,给出了在机械和热负荷下层压和功能梯度的夹心开口圆柱壳的解析解。通过厚度的温度变化被假定为厚度坐标多项式。目前的研究还通过对中厚壳的更可靠扩展来扩展了经典厚度标准。 Navier求解法用于求解方程式系统,该方程式是使用最小势能原理对所有支撑的边缘振膜推导的。研究了两种夹心板,这些夹心板的芯或面板由厚度渐变材料制成。对几个示例进行了数值评估,以建立当前模型的准确性。

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