Buckling and post-buckling of cylindrical shells under combined torsional and axial loads

IF 4.4 2区 工程技术 Q1 MECHANICS
Lu Lu, Sophie Leanza, Yang Liu, Ruike Renee Zhao
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引用次数: 0

Abstract

The buckling behavior of cylindrical shells has gained significant interest over the past century due to its rich nonlinear behavior and broad engineering applications. While the buckling of cylindrical shells under a single load (e.g., compression or torsion) has been extensively studied, the buckling behavior under combined torsional and axial loads remains largely unexplored. In this paper, based on a combination of experiments, theoretical modeling, and finite element simulations, we systematically investigate the buckling and post-buckling behavior of cylindrical shells under combined torsional and axial loads. Three different types of combined loads are considered: compression with pre-torsion, torsion with pre-tension, and torsion with pre-compression. The theoretical model is established within the framework of the Donnell shell theory and solved using the Galerkin method, through which the critical buckling load, critical circumferential wavenumber, buckling pattern, and post-buckling equilibrium path of clamped-clamped thin cylindrical shells under various types of loads can be determined. The theoretical predictions agree well with finite element simulations and qualitatively capture the various buckling phenomena observed in the experiments. It is found that cylindrical shells exhibit quite different post-buckling behavior under combined loads compared to under a single compressive or torsional load. For instance, when a clamped-clamped thin cylindrical shell is subjected to pure torsion or torsion with a relatively small pre-compression, it consistently shows a diagonal-shaped pattern during deformation. However, with a relatively large pre-compression, the shell transitions from a diagonal-shaped pattern to a twisted diamond-shaped pattern. Our work reveals the role of torsion-compression/tension coupling in the buckling instabilities of cylindrical shells, which can guide the design of cylindrical shell buckling-inspired foldable structures such as origami systems driven by combined loads.
轴扭联合载荷作用下圆柱壳的屈曲和后屈曲
圆柱壳的屈曲行为由于其丰富的非线性特性和广泛的工程应用,在过去的一个世纪中引起了人们极大的兴趣。虽然圆柱壳在单一载荷(如压缩或扭转)下的屈曲行为已经得到了广泛的研究,但在扭转和轴向联合载荷下的屈曲行为仍未得到广泛的研究。本文基于实验、理论建模和有限元模拟相结合的方法,系统地研究了圆柱壳在扭转和轴向联合载荷作用下的屈曲和后屈曲行为。考虑了三种不同类型的组合载荷:压缩与预扭转,扭转与预张力,扭转与预压缩。在Donnell壳理论框架下建立理论模型,采用伽辽金法求解,确定了夹紧-夹紧薄圆柱壳在各种载荷作用下的临界屈曲载荷、临界周向波数、屈曲模式和后屈曲平衡路径。理论预测与有限元模拟结果吻合较好,定性地捕捉到了实验中观察到的各种屈曲现象。研究发现,圆柱壳在复合载荷作用下的后屈曲行为与在单一压缩或扭转载荷作用下的后屈曲行为大不相同。例如,当夹紧-夹紧的薄圆柱壳受到纯扭转或预压较小的扭转时,其在变形过程中始终呈现对角线形状。然而,在较大的预压缩下,壳体由对角线形状转变为扭曲的菱形形状。我们的工作揭示了扭转-压缩/拉伸耦合在圆柱壳屈曲失稳中的作用,这可以指导组合载荷驱动的圆柱壳屈曲可折叠结构(如折纸系统)的设计。
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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来源期刊
CiteScore
7.00
自引率
7.30%
发文量
275
审稿时长
48 days
期刊介绍: The European Journal of Mechanics endash; A/Solids continues to publish articles in English in all areas of Solid Mechanics from the physical and mathematical basis to materials engineering, technological applications and methods of modern computational mechanics, both pure and applied research.
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