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首页> 外文期刊>Aerospace >A Numerical–Analytical Approach for the Preliminary Design of Thin-Walled Cylindrical Shell Structures with Elliptical Cut-Outs
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A Numerical–Analytical Approach for the Preliminary Design of Thin-Walled Cylindrical Shell Structures with Elliptical Cut-Outs

机译:具有椭圆形截止薄壁圆柱形壳体结构初步设计的数值分析方法

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The presence of cut-outs within thin-walled shell structures is unavoidable, holes being needed for the passage of electrical cables, fuel, or just to reduce the weight of the components. Nevertheless, the high stress concentration can lead to a premature collapse of the structure. For this reason, the preliminary design of cylindrical shell structures with holes needs a profound knowledge of the stress distribution for different loading conditions and constraints. In this paper, a parametric study of a fiber-reinforced composite shell cylinder with an elliptical cut-out has been performed. Three different loading conditions were analyzed: Tension, bending, and torsion. Ansys ? script, capable of easily generating and analyzing different geometrical configurations, was used to study the dependence of the geometry on the stress distribution near the cut-out. Finally, graphical and analytical relationships were tentatively extrapolated from numerical results, aimed at linking the geometrical parameters of the cut-out to the maximum stress near the cut-out.
机译:在薄壁壳体结构内的切口存在是不可避免的,电缆,燃料或仅用于减小组件的重量,所需的孔是不可避免的。然而,高应力浓度可导致结构过早塌陷。因此,具有孔的圆柱形壳结构的初步设计需要对不同的负载条件和约束的应力分布进行深刻的知识。在本文中,已经进行了具有椭圆形切口的纤维增强复合壳缸的参数研究。分析了三种不同的装载条件:张力,弯曲和扭转。 ansys?脚本,能够轻松地生成和分析不同的几何配置,用于研究几何形状对切出附近的应力分布的依赖性。最后,图形和分析关系暂时从数值结果推断,旨在将切口的几何参数连接到切口附近的最大应力。

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