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Structural behavior of symmetric spindle-shaped Tensairity girders with reinforced chord coupling

机译:对称弦轴形加强筋弦杆的结构性状

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Two new designs for spindle-shaped Tensairity girders with a reinforced coupling between the chords are proposed. The first one uses a continuous coated-fabric web and the second one a discrete reinforcement composed of 23 steel wire ropes to facilitate the load transfer between the chords. Both girders are studied experimentally and numerically and compared to the original design. A simple analytical model is proposed for the homogeneous load case. Results show that the behavior of the Tensairity girders is significantly improved by the integration of a reinforcement for all tested load configurations. Under homogeneous distributed load at 25 kPa the coupling increases the stiffness and the ultimate load by about a factor 3 and 2, respectively, while the weight of the girder increases due to the fabric web or the cables by only 12% and 29%, respectively. At 50 kPa a live load to dead load ratio of 95 has been achieved, which is twice as much as for the original design.
机译:提出了两种新的主轴形张紧梁设计,在弦之间加强了连接。第一个使用连续的涂层织物网,第二个使用由23条钢丝绳组成的离散增强件,以促进弦之间的载荷传递。对两个大梁进行了实验和数值研究,并与原始设计进行了比较。针对均质载荷工况,提出了一种简单的分析模型。结果表明,通过为所有测试的载荷配置集成钢筋,可以显着改善Tensairity大梁的性能。在25 kPa的均匀分布载荷下,联轴器的刚度和极限载荷分别增加了约3倍和2倍,而由于纤维网或电缆,大梁的重量仅分别增加了12%和29% 。在50 kPa时,实现了95的活载与空载之比,这是原始设计的两倍。

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