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Coupled numerical investigation of structural glass panels with elastic materials injection and hyperelastic materials injection subjected to locally introduced axial compression

机译:弹性材料注射带有弹性材料的结构玻璃面板的数值研究和局部引入轴向压缩的超弹性材料

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摘要

Resisting in-plane loadings is an important issue in the field of glass structures. Glass structures are connected to each other in two ways, and then they connect to the substructure: 1) point supports; 2) linear support; where the first one is more common. Several point supports have been examined by researchers and their stress distribution and failure mechanisms are analysed, but point supports have not been analysed using hyperelastic materials. In this paper, a point support is studied numerically under axial load, then the specimen is modelled using hyperelastic material and the results are analysed and compared to each other. Considering stress distribution and load-displacement diagrams of glass frame model by hyperelastic contact, and comparing them with glass frames containing usual contacts leads to following result: according to hyperelastic materials' properties, which are the same as nonlinear elastic ones, the stress in support contact with glass is 50% lower, and also having less displacement in comparison with glass frames using normal contacts. Based on the results, the glass frames with hyperelastic materials resistance much more load than the ones with normal contacts.
机译:抵抗面内载荷是玻璃结构领域的重要问题。玻璃结构以两种方式彼此连接,然后它们连接到子结构:1)点支撑; 2)线性支撑;第一个更常见的地方。通过研究人员检查了几个点支持,分析了它们的应力分布和失效机制,但不使用超弹性材料分析点支持。在本文中,在轴向载荷下进行数字地研究点支撑,然后使用超弹性材料进行模型样本,并将结果彼此分析。考虑到超级弹性接触的玻璃框架模型的应力分布和负载 - 位移图,并将其与含有通常触点的玻璃框架进行比较,导致结果:根据超弹性材料的性质,与非线性弹性的性能相同,压力支持与使用正常触点的玻璃框架相比,与玻璃接触较低,并且具有较少的位移。基于结果,玻璃框架具有超弹性材料的负载比具有正常触点的负载得多。

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