功能梯度夹层柱的温度相关屈曲分析

Y. Mohammadi, M. Rahmani
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引用次数: 2

摘要

本研究仅限于具有功能梯度面板和均质芯的夹层圆柱壳的屈曲分析研究。高阶夹层板理论通过考虑在夹层结构分析中通常被忽略的核心面内应力而得到改进。假设面板和核心的所有属性都依赖于温度。利用非线性Von-Karman关系得到应变分量。利用最小势能原理推导了平衡方程。采用Navier解对具有功能梯度面板的简支夹层锥形壳在轴向面内压缩载荷和温度环境下的静力分析进行了解析解。结果表明:临界无量纲静态轴向载荷受材料结构、成分分布、温度和夹层几何形状的影响;计算结果与数值计算结果吻合较好。
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Temperature-Dependent Buckling Analysis of Functionally Graded Sandwich Cylinders
This study is limited to study of buckling analysis of a sandwich cylindrical shell with functionally graded face sheets and homogenous core. High-order sandwich plate theory is improved by considering the in-plane stresses of the core that usually are ignored in the analysis of sandwich structures. Assume that all properties of the face sheets and the core are temperature dependent. Strain components are obtained by using the nonlinear Von-Karman type relations. The equilibrium equations are derived via principle of minimum potential energy. Analytical solution for static analysis of simply supported sandwich conical shells with functionally graded face sheets under axial in-plane compressive loads and in the temperature environments is performed by using Navier’s solution. The results show the critical dimensionless static axial loads are affected by the configurations of the constituent materials, compositional profile variations, temperature and the variation of the sandwich geometry. The comparisons show that the present results are in the good agreement with the numerical results.
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