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Geometrically Nonlinear Analysis of Cross-ply Laminated Composite Beams Subjected to Uniform Temperature Rise

机译:经受均匀温度升高的交叉层叠复合梁的几何非线性分析

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On the basis of Reddy's higher order shear deformation plate theory and the von Karman's geometry nonlinear theory, governing equations for nonlinear thermal buckling and post-buckling of cross-ply laminated composite beam subjected to a temperature rise are derived, in which the stretching-bending coupling terms produced by the non-homogenous distribution of the material properties are included. By using the shooting method to solve the corresponding nonlinear boundary value problem, numerical solutions for thermal post-buckling of cross-ply shear deformation laminated composite beam with its both ends immovably simply supported under uniform temperature rise are obtained. As an example, equilibrium paths and configurations for laminated composite beam paved in term of 0/90/0 are presented and characteristic curves of the nonlinear deformation changing with the thermal load were plotted. The effects of the geometric and physical parameters on the deformation of the beam are also examined. The theoretical analysis and numerical results show that different thermal expansion coefficient ratio, elastic moduli ratio, shear stiffness ratio will influence of the non-dimension critical buckling temperature.
机译:在Reddy的高阶剪切变形板理论和von Karman的几何非线性理论的基础上,推导出对温度升高的非线性热屈曲和交叉层叠复合梁的非线性热屈曲和后屈曲的控制方程,其中拉伸弯曲包括通过材料性能的非均匀分布产生的偶联术语。通过使用拍摄方法来解决相应的非线性边值问题,获得了在均匀的温度升高的均匀地支撑其两端的交叉层剪切变形层压复合梁的热后屈曲的数值溶液。作为一个示例,绘制了在0/90/0期间铺设的层压复合梁的平衡路径和配置,并绘制了热负荷的非线性变形的特性曲线。还检查了几何和物理参数对光束变形的影响。理论分析和计算结果表明,不同的热膨胀系数比,弹性模量比率,剪切刚度比会影响非维临界屈曲温度。

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