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Buckling Instability of Sectional Noncircular Cylindrical Composite Shells under Axial Compression

机译:截面非圆形圆柱复合壳在轴向压缩下的屈曲不稳定性

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摘要

The problem of buckling instability of cylindrical shells under axial compression is considered. The shells consist of cylindrical sections of smaller radius. The geometrical parameters of the shells are approximated by Fourier series on a discrete point set. A Timoshenko-type shell theory is used. The solution is obtained in the form of trigonometric series. It is shown that shells consisting of cylindrical sections have considerable advantages over circular ones. At a constant shell weight, the choice of suitable parameters of shell sections leads to a significant increase in the critical load. The composite shells considered possess higher efficiency indices in comparison with isotropic ones.
机译:考虑了圆柱壳在轴向压缩下的屈曲不稳定性问题。壳体由半径较小的圆柱部分组成。壳的几何参数由离散点集上的傅立叶级数近似。使用季莫申科型壳理论。该解决方案以三角级数形式获得。结果表明,由圆柱部分组成的壳体比圆形壳体具有明显的优势。在恒定的壳体重量下,选择合适的壳体截面参数会导致临界载荷的显着增加。与各向同性相比,所考虑的复合壳具有更高的效率指标。

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