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Buckling of intermediate ring supported cylindrical shells under axial compression

机译:中间环支撑圆柱壳在轴向压缩下的屈曲

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This paper is concerned with the elastic buckling of axially compressed, circular cylindrical shells with intermediate ring supports. The simple Timoshenko thin shell theory and the more sophisticated Fluegge thin shell theory have been adopted in the modeling of the cylindrical shells. We used these two representative theories to examine the sensitivity of the buckling solutions to the different degree of approximations made in shell theories. By dividing the shell into segments at the locations of the ring supports, the state-space technique is employed to derive the solutions for each shell segment and the domain decomposition method utilized to impose the equilibrium and compatibility conditions at the interfaces of the shell segments. First-known exact buckling factors are obtained for cylindrical shells of one and multiple intermediate ring supports and various combinations of boundary conditions. Comparison studies are carried out against benchmark solutions and independent numerical results from ANSYS and p-Ritz analyses. The influence of the locations of the ring supports on the buckling behaviour of the shells is examined.
机译:本文涉及带有中间环支撑的轴向压缩圆柱壳的弹性屈曲。在圆柱壳的建模中采用了简单的Timoshenko薄壳理论和更复杂的Fluegge薄壳理论。我们使用这两个代表性理论来检验屈曲解对壳理论中不同近似程度的敏感性。通过将壳在环形支撑件的位置处划分成段,采用状态空间技术来推导每个壳段的解,并使用域分解方法在壳段的界面处施加平衡和相容性条件。对于一个和多个中间环形支撑的圆柱壳以及边界条件的各种组合,可以获得众所周知的精确屈曲系数。针对基准解决方案以及ANSYS和p-Ritz分析的独立数值结果进行了比较研究。研究了环形支撑件的位置对壳体屈曲行为的影响。

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