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首页> 外文期刊>International journal of non-linear mechanics >Transient and steady state stability of cylindrical shells under harmonic axial loads
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Transient and steady state stability of cylindrical shells under harmonic axial loads

机译:轴向载荷作用下圆柱壳的瞬态和稳态稳定性

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The transient and steady-state instability of an axially loaded cylindrical shell is discussed in the present paper. Donnell's shallow shell theory is used and the shell spatial discretization is obtained by the Galerkin method. First, an alternative vision of the buckling problem through the evolution and erosion of safe basins using energy and geometric considerations is presented, using an autonomous conservative low dimensional but qualitatively consistent model. Then, the response of the corresponding dissipative system is studied in terms of transient and steady-state behavior. Based on these results, the behavior of the shell under harmonic axial load is investigated through the evolution of basins of attraction. Both parametric instability and escape from a safe pre-buckling well are considered. It is shown that damping has a beneficial influence on the magnitude of the steady-state basins of attraction but must be considered with care when transient stability is of concern. Basin boundaries of forced dissipative systems usually become fractal leading to a complex topological structure and swift erosion under increasing forcing amplitude. We argue that the analysis of the evolution of safe steady-state and transient basins and the specification of appropriate measures of their robustness is an essential step in the derivation of safe design procedures for multi-well and multi-attractor systems. The methodology presented in this work is particularly suited to structural systems liable to unstable bifurcation.
机译:本文讨论了轴向加载圆柱壳的瞬态和稳态不稳定性。使用唐纳尔的浅壳理论,并通过Galerkin方法获得壳的空间离散化。首先,使用自主的保守的低维但质量上一致的模型,提出了利用能量和几何考虑因素通过安全盆地的演化和侵蚀对屈曲问题的另一种看法。然后,根据瞬态和稳态行为研究了相应耗散系统的响应。基于这些结果,通过吸引盆的演化研究了壳在谐波轴向载荷下的行为。考虑参数不稳定性和从安全的预屈曲井中逃逸。结果表明,阻尼对稳态吸引盆的大小有有益的影响,但是在考虑瞬态稳定性时必须谨慎考虑。强迫耗散系统的盆地边界通常变成分形的,导致复杂的拓扑结构并在强迫幅度增大的情况下迅速侵蚀。我们认为,对安全稳态和瞬态盆地演化的分析以及对鲁棒性的适当度量的规范是推导多井和多吸引器系统安全设计程序的重要步骤。这项工作中介绍的方法特别适用于易于产生不稳定分叉的结构系统。

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