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Flexible hinges in orthotropic cylindrical shells facilitated by nonlinear elastic deformations

机译:通过非线性弹性变形促进的正交圆柱壳中的柔性铰链

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Flexible hinges enable the design of folding structures without using mechanisms by making use of intrinsic structural characteristics in the action of folding. This technology introduces potential benefits including weight reduction, omission of lubrication and potentially better system reliability. To achieve such technology, we exploit a well-known structural instability characteristic of thin-walled structures under bending: the Brazier effect. Composite materials play a key role in this problem since they enable the critical load for folding to be tuned. Moreover, the minimisation of the Brazier moment is material dependent, offering extra degrees of freedom for morphing purposes. The present work considers the minimisation of the Brazier moment providing insights on its material dependency. For this purpose, an analytical solution for cylindrical shells made of unidirectional laminates and an empirical expression useful for design purposes, comprising 4-ply symmetric laminates, are presented with validation accomplished using finite element analysis.
机译:灵活的铰链使得能够设计折叠结构,而无需使用机制,通过在折叠的作用中使用固有的结构特征。该技术引入了潜在的益处,包括减肥,省略润滑和潜在的系统可靠性。为了实现这种技术,我们利用诸如弯曲的薄壁结​​构的众所周知的结构不稳定特性:致力于效果。复合材料在此问题中发挥关键作用,因为它们能够调整折叠的临界负载。此外,火盆矩的最小化是依赖的材料,为变形目的提供额外的自由度。目前的工作考虑了最大限度地,最大限度地提供了对其物质依赖性了解的洞察力。为此目的,通过使用有限元分析完成的验证,提出了一种由单向层压板制成的圆柱形壳体的分析方法和用于设计目的的实证表达,并使用有限元分析完成验证。

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