论文标题

轴对称山脊和旋转革命的圆周屈曲

Axisymmetric Ridges and Circumferential Buckling of Indented Shells of Revolution

论文作者

Taffetani, Matteo, Walker, Martin G.

论文摘要

当戳薄薄的壳状结构(例如塑料水瓶)时,体验表明,在压痕点附近形成了初始轴对称凹痕。该酒窝的山脊随着凹痕的增加,最终将其扣成多边形的形状。多边形秩序通常会随着进一步的凹痕而继续增加。在球形壳的情况下,已经详细研究了潜在的轴对称变形和屈曲进化。但是,对一般几何形状的行为知之甚少。在这项工作中,我们描述了轴对称脊的几何和机械特征,该脊形成了横幅的革命壳,具有非阴性高斯曲率以及该山脊的圆周屈曲条件。我们表明,在“镜子屈曲”的假设下,如果问题是使用山脊径向位置中未构造的壳体中部原理的局部斜率,可以写出该山脊的单个统一描述。以维度形式,对于不同的中间原理,山脊特性以完全不同的方式发展。我们使用恒定高斯曲率的革命浅层壳的凹痕,我们使用理论框架来研究脊的特性,在圆周屈曲阈值下,评估了镜屈曲假设对浅层壳方程上的线性稳定性分析的有效性,显示出很好的一致性。我们的结果表明,凹痕薄壳中的圆周屈曲受山脊中的几何形状和应力状态之间的复杂相互作用控制。我们的研究结果将为薄壳的力学提供更多的了解。这可以使凹痕用于测量各种壳几何形状的机械性能,或用于设计具有特定机械行为的壳。

When poking a thin shell-like structure, like a plastic water bottle, experience shows that an initial axisymmetric dimple forms around the indentation point. The ridge of this dimple, with increasing indentation, eventually buckles into a polygonal shape. The polygon order generally continues to increase with further indentation. In the case of spherical shells, both the underlying axisymmetric deformation and the buckling evolution have been studied in detail. However, little is known about the behaviour of general geometries. In this work we describe the geometrical and mechanical features of the axisymmetric ridge that forms in indented general shells of revolution with non-negative Gaussian curvature and the conditions for circumferential buckling of this ridge. We show that, under the assumption of `mirror buckling' a single unified description of this ridge can be written if the problem is non-dimensionalised using the local slope of the undeformed shell mid-profile at the ridge radial location. In dimensional form the ridge properties evolve in quite different ways for different mid-profiles. Focusing on the indentation of shallow shells of revolution with constant Gaussian curvature, we use our theoretical framework to study the properties of the ridge at the circumferential buckling threshold and evaluate the validity of the mirror buckling assumption against a linear stability analysis on the shallow shell equations, showing very good agreement. Our results highlight that circumferential buckling in indented thin shells is controlled by a complex interplay between the geometry and the stress state in the ridge. The results of our study will provide greater insight into the mechanics of thin shells. This could enable indentation to be used to measure the mechanical properties of a wide range of shell geometries or used to design shells with specific mechanical behaviours.

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