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Local buckling modelling of isogrid and anisogrid lattice cylindrical shells with hexagonal cells

机译:具有六边形单元格的等距网格和异网格网格圆柱壳的局部屈曲建模

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摘要

The analytical modelling of the local buckling failure mode for composite anisogrid lattice cylindrical shells with the typical system of hexagonal cells is here discussed. The aim is to complement the set of constraint equations that are associated with the preliminary design phase of such structures under axial compressive loads, and to prospectively improve the final solutions. The basic constraint equations for anisogrids without the skin are focused on the global buckling of the shell, the local buckling of helical ribs, and the material failure of these ribs. However, the local buckling of helical ribs is normally based on a simplified and qualitative approach. Conversely, the developed modelling, which is based on the Ritz method, accounts for the helical angle of the periodic cell, the stiffness of intersecting hoop and helical ribs, and the positive effect of the prebuckling tensile force in hoop ribs. This model has been verified with the aid of finite-element analysis, demonstrating a noteworthy accuracy. Thanks to the comparison with the parallel study on anisogrid shells with triangular cells, the effect of hoop rib positioning on the local buckling strength (i.e., hexagonal or triangular system of cells) is finally assessed.
机译:本文讨论了具有典型六边形单元系统的复合各向异性网格格子圆柱壳的局部屈曲破坏模式的解析模型。目的是补充与此类结构在轴向压缩载荷下的初步设计阶段相关的约束方程组,并前瞻性地改善最终解决方案。没有外皮的等距格栅的基本约束方程集中在壳体的整体屈曲,螺旋肋的局部屈曲以及这些肋的材料破坏上。但是,螺旋肋的局部屈曲通常是基于简化和定性的方法。相反,基于Ritz方法的已开发建模考虑了周期单元的螺旋角,相交的箍筋和螺旋肋的刚度以及箍筋中预屈曲张力的积极影响。该模型已经借助有限元分析进行了验证,显示出显着的准确性。得益于与对带有三角形单元格的等距网格壳的平行研究的比较,最终评估了箍筋位置对局部屈曲强度(即单元格的六边形或三角形系统)的影响。

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