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

机译:等距网格和等距网格圆柱壳的局部屈曲建模

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The paper deals with a refined analytical model for the local buckling failure modes of composite anisogrid lattice cylindrical shells made of a regular system of triangular cells. Such structures are preliminarily designed with the aid of closed-form solutions specifying the minimum mass and the corresponding optimal design variables under a set of formulated constraint equations. These equations address the main failure mechanisms that can be typically experienced by the structure due to axial compressive loads, namely, the global buckling of the shell, the local buckling of helical ribs, and the material failure of helical ribs. However, the local buckling of helical ribs is normally based on a simplified and qualitative approach. Thus, the scope of the present work is to improve the prediction of this failure mode by means of a rather accurate modelling which accounts for the interaction of intersecting hoop and helical ribs, the influence of the number of hoop sections of the shell, and the effect of the prebuckling tensile force in hoop ribs. The proposed model - that has been verified with the aid of finite-element analysis - lastly suggests the possibility to improve the preliminary design solution with respect to the fully analytical approach.
机译:本文针对由规则三角形单元组成的复合各向异性网格格子圆柱壳的局部屈曲破坏模式,提出了一种完善的分析模型。借助封闭形式的解决方案预先设计此类结构,这些解决方案在一组公式化的约束方程组下指定最小质量和相应的最佳设计变量。这些方程式解决了由于轴向压缩载荷而导致的结构通常会经历的主要破坏机理,即壳体的整体屈曲,螺旋肋的局部屈曲以及螺旋肋的材料破坏。但是,螺旋肋的局部屈曲通常是基于简化和定性的方法。因此,本工作的范围是通过相当精确的模型来改进对这种失效模式的预测,该模型考虑了相交的箍筋和螺旋肋的相互作用,壳体箍筋节数的影响以及箍筋中预屈曲张力的作用。所提出的模型-已通过有限元分析进行了验证-最后提出了相对于完全分析方法来改进初步设计解决方案的可能性。

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