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Experimental and numerical collapse properties of externally pressurized egg-shaped shells under local geometrical imperfections

机译:局部几何缺陷下外部加压蛋形壳体的实验性和数值塌陷性能

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摘要

The present investigation is devoted to the nonlinear elastic collapse properties of externally pressurized egg shaped shells under local geometrical imperfections. The shells have nominal major axis, nominal minor axis, and nominal wall thickness of 256 mm, 180 mm, and 2 nun, respectively. Nine resin egg-shaped shells are manufactured, measured accurately, tested hydrostatically, and analysed numerically. Of these, three each have nominally identical perfect geometries, nominally identical geometries with local flat imperfections, and local dimple imperfections. Furthermore, the effect of local and eigenmode imperfection depths on the collapse pressures of egg-shaped shells are studied numerically using nonlinear elastic buckling analysis. Both experimental and numerical data are presented and compared through graphs and tables.
机译:本发明的研究致力于局部几何缺陷下外部加压蛋形壳的非线性弹性塌陷性能。 壳体分别具有标称长轴,标称短轴,标称壁厚,分别为256毫米,180毫米和2尼尼。 制造九个树脂蛋形壳,精确测量,静静压,并在数值上进行分析。 其中,每个三个都有名义上完美的几何形状,名义上相同的几何形状,局部平坦的缺陷,以及当地的凹坑缺陷。 此外,使用非线性弹性屈曲分析在数值上研究了局部和特征模型缺陷深度对蛋形壳体塌陷的影响。 通过图形和表格显示和比较实验和数值数据。

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