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Experimental Study on Steel-Concrete Composite Twin I-Girder Bridges

机译:钢混凝土复合双梁桥的实验研究

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摘要

A large number of steel-concrete composite twin I-girder bridges have been built in both Europe and Japan, but the lack of redundancy has always been a concern in the US and many other countries. In addition, very few experimental studies have been performed on mechanical performance of such bridges, particularly for the intact twin I-girder bridges. On this background, a steel-concrete composite twin I-girder bridge specimen was designed according to the current highway bridge design specification in Japan. Static loading tests were performed, and two loading conditions including both symmetric loading and asymmetric loading were applied. The load versus deflection relationship and strain development on the steel main girders and concrete slab at key sections were measured. The flexural strains on the lateral beam were also measured and reported in this paper to confirm the load transfer between two main girders. In addition, the shear strain of shear connectors (stud, in this study) was also measured to investigate the shear force transmission on the steel-concrete interface. The theoretical values were also provided to compare with the test results from the twin girder specimen under symmetric loading condition. The experimental results indicate that the theoretical analysis can predict the behavior of the twin girders very well in the elastic stage by considering the effective width of the slab. The performances of each structural component and load transfer path in such bridges were also discussed.
机译:欧洲和日本都建造了大量钢混凝土综合双胞胎I梁桥,但缺乏冗余始终是美国和许多其他国家的关注。此外,已经对这种桥的机械性能进行了很少的实验研究,特别是对于完整的双梁桥。在此背景下,根据日本的当前公路桥梁设计规范设计了一种钢混凝土复合双梁桥标本。进行静态加载试验,并施加两个加载条件,包括对称负荷和不对称载荷。测量了钢材主要梁和混凝土板上的负荷与偏转关系和应变开发。在本文中还测量并报道了横梁上的弯曲菌株,以确认两个主要梁之间的负载转移。此外,还测量了剪切连接器(螺柱,本研究中的螺柱)以研究钢混凝土界面上的剪切力传递。还提供了理论值,以与对称负载条件下的双梁样品的测试结果进行比较。实验结果表明,理论分析可以通过考虑板坯的有效宽度来预测弹性阶段中的双梁的行为。还讨论了这种桥梁中的每个结构部件和负载转移路径的性能。

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