Experimental Behavior of a Prototype 3m-Span Modular Glass Pedestrian Bridge

Joseph Robert Yost, Jorge Huisa Chacon, Yoa Lu, Masoud Akbarzadeh, Damon Bolhassani, Fahimeh Yavartanoo, Phillipp Amir Chhadeh, Jens Schneider
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Abstract

This research is related to the structural performance of a shell-type system made of hollow glass units (HGU) that utilizes glass as the primary structural material. The efficient structural function of the proposed shell-type system is designed using Polyhedral Graphic Statics to achieve a system geometry that maximizes in-plane compression and limits the presence of tension. The large-scale shell structure is constructed using a modular assembly of individual hollow glass units. To date, the research team has completed studies on individual HGU strength and stiffness, and the performance of the interface material necessary to transmit the high in-plane compression forces between neighboring HGUs. As well, the feasibility of the proposed modular system has also been demonstrated through the successful assembly and disassembly of a 3 m span prototype pedestrian bridge known as Tortuca. Tortuca is comprised of 13 individual interlocking HGUs assembled into a compression-dominant form supported on steel abutments. In the current research study, the physical performance of Tortuca is experimentally investigated under controlled laboratory testing and using an extensive assortment of displacement and strain sensors. Significant findings related to experimental testing of Tortuca will be reported.
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3 米跨度模块化玻璃人行桥原型的实验性能
本研究涉及以玻璃为主要结构材料的中空玻璃单元(HGU)壳型系统的结构性能。利用多面体图形静力学设计了拟议的壳型系统的高效结构功能,以实现最大化面内压缩和限制拉力存在的系统几何形状。大型壳体结构采用单个中空玻璃单元的模块化组装。迄今为止,研究团队已经完成了对单个中空玻璃单元强度和刚度的研究,以及对相邻中空玻璃单元之间传递高平面内压缩力所需的界面材料性能的研究。此外,通过成功组装和拆卸一座跨度为 3 米、名为 Tortuca 的人行天桥原型,也证明了所提议的模块化系统的可行性。Tortuca 由 13 个独立的互锁 HGU 组成,组装成以压缩为主的形式,支撑在钢制桥墩上。在当前的研究中,我们使用大量位移和应变传感器,在受控实验室测试中对 Tortuca 的物理性能进行了实验研究。将报告与托尔图卡实验测试相关的重要发现。
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