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Torsional behavior of a hybrid FRP-aluminum space truss bridge: Experimental and numerical study

机译:FRP-铝质空间桁架混合桥的扭转行为:试验与数值研究

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A novel lightweight hybrid fiber-reinforced polymer (FRP) aluminum space truss structure that consists of two triangular deck-truss beams has been designed for rapid emergency bridging system. This paper reports a large-scale pure torsion test on a cantilever full-scale specimen to evaluate the detailed linear-elastic torsional behavior and the load-carrying mechanism of the hybrid twin-trackway spatial structure. Additionally, a structural computational finite element model (FEM) was constructed and validated against the experiments. To fully understand the load-carrying mechanism obtained from the experiments, numerical analyses were performed by equivalently converting the torsion reaction of the hybrid twin-trackway structure to the bending and torsion of its twin triangular deck-truss beams. The results indicate that the experimental structure exhibits a good and specific torsional response, which can be well described by FEM. The unidirectional pultruded FRP profiles are mainly subjected to axial forces and are thus appropriate for application to this unique twin-trackway space truss, unlike in the case of the alone single-trackway triangular beam under torsion. The vertical bending of the twin triangular deck-truss beams play a key role in the behavior of load-carrying of the entire bridge, unlike in the case of the conventional torsional calculation method for the separated box beam. In the initial design, the torsional calculation of such a novel bridge can be carried out using the flexural analytical and numerical models of the triangular deck-truss beam.
机译:设计了一种新颖的轻型混合纤维增强聚合物(FRP)铝制太空桁架结构,该结构由两个三角甲板桁架梁组成,用于快速应急桥接系统。本文报道了悬臂式满规模试件的大规模纯扭转试验,以评估详细的线弹性扭转行为和混合双轨道空间结构的承载机理。此外,构造了结构计算有限元模型(FEM),并针对实验进行了验证。为了充分理解从实验中获得的载荷机理,通过将混合双轨结构的扭转反应等效地转换为双三角甲板桁架梁的弯曲和扭转进行了数值分析。结果表明,实验结构表现出良好且特定的扭转响应,FEM可以很好地描述该结构。单向拉挤FRP型材主要承受轴向力,因此适用于这种独特的双轨空间桁架,与单独的单轨三角梁在扭转作用下不同。双三角甲板桁架梁的竖向弯曲在整个桥梁的承载特性中起着关键作用,这与传统的用于分离箱形梁的扭转计算方法不同。在初始设计中,可以使用三角形桥面桁架梁的挠曲分析和数值模型来进行这种新型桥梁的扭转计算。

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