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Conceptual design and FEM structural response of a suspended glass sphere made of reinforced curved polygonal panels

机译:悬浮弯曲多边形板制成的悬浮玻璃球体的概念设计和有限元结构响应

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The paper introduces a novel concept for structural glass shells that is based on the mechanical coupling of double curved heat-bent glass panels and a wire frame mesh, which constitutes a grid of unbonded edge-reinforcement. Additionally, this grid has the purpose of providing redundancy. The panels have load-bearing function, they are clamped at the vertices and dry-assembled. The main novelty lies in the use of polygonal curved panels with a nodal force transfer mechanism. This concept has been validated on an illustrative design case of a 6 m-diameter suspended glass sphere, in which regular pentagonal and hexagonal spherical panels are employed. The good strength and stiffness achieved for this structure is demonstrated by means of local and global FE models. Another fundamental feature of the concept is that the reinforcement grid provides residual strength in the extreme scenarios in which all panels are completely failed. A quantitative measure of redundancy is obtained by comparing this scenario with the ULS.
机译:本文介绍了一种基于双曲线热弯曲玻璃板和线框架网的机械联轴器的结构玻璃壳的新颖概念,该玻璃壳和线框架网构成了未粘附的边缘加固的栅格。此外,该网格具有提供冗余的目的。面板具有承载功能,它们夹在顶点并干燥组装。主要的新颖性在于使用具有节点力传递机制的多边形弯曲面板。该概念已经验证在6 M-直径悬浮玻璃球的说明性设计情况下,其中使用常规五边形和六边形球形板。通过本地和全球FE模型证明了这种结构实现的良好强度和刚度。该概念的另一个基本特征是加强网格在所有面板完全失败的极端情况下提供剩余强度。通过将这种情况与ULS进行比较来获得定量冗余度量。

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