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Finite-element modelling and buckling analysis of anisogrid composite lattice cylindrical shells

机译:异网格复合格圆柱壳的有限元建模与屈曲分析。

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The paper investigates the buckling behaviour of anisogrid composite lattice cylindrical shells under axial compression, transverse bending, pure bending, and torsion. The lattice shells are modelled as three-dimensional frame structures composed of curvilinear ribs subjected to the tension/compression, bending in two planes and torsion. The specialised finite-element model generation procedure (model generator/design modeller) is developed to control the orientation of the beam elements allowing the original twisted geometry of the curvilinear ribs to be closely approximated. The effects of varying the length of the shells, the number of helical ribs and the angles of their orientation on the buckling behaviour of lattice structures are examined using parametric analyses. Buckling of the lattice shells with cutouts is also analysed. The results of these studies indicate that the modelling approach presented in this work can be successfully applied to the solution of design problems.
机译:本文研究了各向异性网格复合格圆柱壳在轴向压缩,横向弯曲,纯弯曲和扭转作用下的屈曲行为。晶格壳被建模为三维框架结构,该三维框架结构由经受拉伸/压缩,在两个平面中弯曲和扭转的曲线肋构成。开发了专门的有限元模型生成程序(模型生成器/设计建模器)以控制梁单元的方向,从而使曲线肋的原始扭曲几何形状更加接近。使用参数分析研究了改变壳的长度,螺旋肋的数量以及它们的取向角度对晶格结构屈曲行为的影响。还分析了带切口的格子壳的屈曲。这些研究的结果表明,这项工作中提出的建模方法可以成功地应用于解决设计问题。

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