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Higher order static analysis of truncated conical sandwich panels with flexible cores

机译:截断圆锥形夹芯板的高阶静力分析

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A higher order analytical solution for static analysis of a truncated conical composite sandwich panel subjected to different loading conditions was presented in this paper which was based on a new improved higher order sandwich panel theory. Bending analysis of sandwich structures with flexible cores subjected to concentrated load, uniform distributed load on a patch, harmonic and uniform distributed loads on the top and/or bottom face sheet of the sandwich structure was also investigated. For the first time, bending analysis of truncated conical composite sandwich panels with flexible cores was performed. The governing equations were derived by principle of minimum potential energy. The first order shear deformation theory was used for the composite face sheets and for the core while assuming a polynomial description of the displacement fields. Also, the in-plane hoop stresses of the core were considered. In order to assure accuracy of the present formulations, convergence of the results was examined. Effects of types of boundary conditions, types of applied loads, conical angles and fiber angles on bending analysis of truncated conical composite sandwich panels were studied. As, there is no research on higher order bending analysis of conical sandwich panels with flexible cores, the results were validated by ABAQUS FE code. The present approach can be linked with the standard optimization programs and it can be used in the iteration process of the structural optimization. The proposed approach facilitates investigation of the effect of physical and geometrical parameters on the bending response of sandwich composite structures.
机译:基于一种新的改进的高阶夹心板理论,本文提出了一种在不同载荷条件下截断圆锥形复合夹芯板进行静力分析的高阶解析解。还研究了具有挠性芯的夹心结构的弯曲分析,该结构承受了集中载荷,贴片上的均匀分布载荷,夹心结构的顶部和/或底部面板上的谐波和均匀分布载荷。首次对具有柔性芯的截头圆锥形复合夹芯板进行了弯曲分析。控制方程是根据最小势能原理导出的。一阶剪切变形理论用于复合面板和岩心,同时假设位移场为多项式描述。此外,还考虑了岩心的面内环向应力。为了确保本发明制剂的准确性,检查了结果的收敛性。研究了边界条件类型,施加载荷的类型,圆锥角和纤维角对截顶圆锥形复合夹芯板弯曲分析的影响。由于没有对具有柔性芯的圆锥形夹芯板进行高阶弯曲分析的研究,因此通过ABAQUS FE代码验证了结果。本方法可以与标准优化程序链接,并且可以在结构优化的迭代过程中使用。所提出的方法有助于研究物理和几何参数对夹心复合结构弯曲响应的影响。

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