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Nonlinear stability analysis of a radially retractable hybrid grid shell in the closed position

机译:闭合位置径向可伸缩式混合网格壳体的非线性稳定性分析

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摘要

The buckling capacity of a radially retractable hybrid grid shell in the closed position was investigated in this paper. The geometrically non-linear elastic buckling and elasto-plastic buckling analyses of the hybrid structure were carried out. A parametric study was done to investigate the effects rise-to-span ratio, beam section, area and pre-stress of cables, on the failure load. Also, the influence of the shape and scale of imperfections on the elasto-plastic buckling loads was discussed. The results show that the critical buckling load is reduced by taking account of material non-linearity. Furthermore, increasing the rise-to-span ratio or the cross-section area of steel beams notably improves the stability of the structure. However, the cross section area and pre-stress of cables pose negligible effect on the structural stability. It can also be found that the hybrid structure is highly sensitive to geometric imperfection which will considerably reduce the failure load. The proper shape and scale of the imperfection are also important.
机译:本文研究了径向可伸缩的混合栅壳的屈曲容量。进行了几何非线性弹性屈曲和混合结构的弹性塑料屈曲分析。完成了参数研究以研究失效负载上的跨跨度,光束部分,面积和电缆预应力的影响。而且,讨论了缺陷对缺陷的影响和规模对弹性塑料屈曲负荷的影响。结果表明,通过考虑材料非线性,减少了关键屈曲负荷。此外,增加跨越跨度比或钢梁的横截面区域显着提高了结构的稳定性。然而,横截面区域和电缆的预应力对结构稳定性施加可忽略不计。还可以发现,混合结构对几何缺陷非常敏感,这将大大降低故障负载。不完美的适当形状和规模也很重要。

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