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Optimal design of shells against buckling subjected to combined loadings

机译:组合载荷作用下壳体的抗屈曲优化设计

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摘要

In this paper, the problem of optimal design of shells against instability is considered. A thin-walled shell is loaded, in general, by overall bending moment, constant or varying along an axis of a shell, by the appropriate shearing force and by an axial force and a constant torsional moment. We look for the shape of middle surface as well as the thickness of a shell, which ensures the maximum critical value of the loading parameter. The volume of material and the capacity of a shell are considered as equality constraints. The concept of a shell of uniform stability is applied.
机译:在本文中,考虑了针对不稳定性的壳的优化设计问题。通常,薄壁壳体通过沿壳体的轴线恒定或变化的总弯曲力矩,适当的剪切力,轴向力和恒定的扭转力矩加载。我们寻找中间表面的形状以及壳体的厚度,以确保载荷参数的最大临界值。材料的体积和壳体的容量被视为相等约束。应用具有均匀稳定性的壳的概念。

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