The influence of the Gaussian curvature sign of the compound shell structure’s middle surface on local and overall buckling under combined loading

Pub Date : 2022-08-09 DOI:10.15407/knit2022.04.031
V. Gristchak, D. V. Hryshchak, N. Dyachenko, V. V. Baburov
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Abstract

The buckling problem of an elastic compound shell structure with a variable Gaussian curvature of the middle surface, especially the middle surface meridian curvature sign, under the action of external pressure and axial loading is considered. In continuation of the previous research of the authors, this paper is devoted, in particular, to examining the influence of the negative Gaussian curvature sign of one of its compartments on stability. The solution is based on using the method of finite differences for basic stability equations of each compartment in the case when one of them can have a negative curvature of the meridian, taking into account the discreteness of the intermediate rib location and their rigidity from the initial curvature plane as well. The obtained solution allows visualizing the buckling modes under various combinations of external loading and identifying rational, according to overall buckling modes, geometric and rigidity parameters of the system being investigated.
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复合壳体结构中表面高斯曲率符号对复合载荷下局部和整体屈曲的影响
研究了中面具有变高斯曲率,特别是中面子午曲率符号变高斯曲率的弹性复合壳结构在外压力和轴向载荷作用下的屈曲问题。在作者先前研究的基础上,本文特别研究了其中一个隔室的负高斯曲率符号对稳定性的影响。在考虑中间肋位置的离散性和初始曲率平面刚度的情况下,采用有限差分法求解各隔室的基本稳定性方程。所得到的解可以可视化各种外部载荷组合下的屈曲模式,并根据所研究系统的整体屈曲模式、几何和刚度参数识别合理的屈曲模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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