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首页> 外文期刊>Journal of bridge engineering >Shape Optimization of UHPC Shear Keys for Precast, Prestressed, Adjacent Box-Girder Bridges
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Shape Optimization of UHPC Shear Keys for Precast, Prestressed, Adjacent Box-Girder Bridges

机译:预制,预应力,邻近箱梁桥的UHPC剪力键的形状优化

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摘要

Adjacent box-girder bridges are a popular choice for short-to intermediate-span bridges in several states because they are easy, quick to build, and cost-effective. Although longitudinal shear keys filled with grout between the girders and transverse posttensioning (TPT) ties ensure a monolithic behavior for the bridge, the durability of longitudinal shear keys still concerns researchers and engineers. Ultrahigh-performance concrete (UHPC) has been adopted as a new grout material for connections between bridge components. However, there is not yet any guidance or specification on the design of UHPC shear key configuration for adjacent box-girder bridge connections. The aim of this study was to use experimental results and finite-element (FE) modeling of direct shear, flexural, and direct tension tests to optimize a UHPC shear key configuration. These models were calibrated and validated with laboratory experimental results previously published by the authors. The models, along with different shear key configurations, were used to investigate the load transfer through previously proposed connections. After comparing the simulated shear keys in terms of the maximum load capacity, the optimized shear key shape (Type OPT) was designed to obtain a desired balance between economy and strength effects. The results demonstrated the contribution of the shear key configuration to the joint strength, and suggest that Type OPT shear key significantly increased load transfer, resulting in an enhanced serviceability. Therefore, use of Type OPT shear keys in a bridge may reduce the number of transverse shear reinforcement bars required, which in turn would improve the constructability of the bridge and reduce material and construction costs. (C) 2018 American Society of Civil Engineers.
机译:相邻的箱梁桥在一些州是中短跨度桥梁的普遍选择,因为它们简单,易于建造且具有成本效益。尽管在梁和横向后张拉力(TPT)系结之间充满灌浆的纵向剪切键确保了桥梁的整体性能,但纵向剪切键的耐用性仍使研究人员和工程师感到担忧。超高性能混凝土(UHPC)已被用作桥梁组件之间连接的新型灌浆材料。但是,对于相邻箱梁桥连接的UHPC剪力键配置的设计,尚无任何指导或规范。这项研究的目的是利用直接剪切,弯曲和直接拉伸测试的实验结果和有限元(FE)建模来优化UHPC剪切关键配置。这些模型已通过作者先前发表的实验室实验结果进行了校准和验证。这些模型以及不同的剪切键配置用于研究通过先前建议的连接进行的载荷传递。在比较模拟的剪切键的最大负载能力之后,设计了优化的剪切键形状(OPT型),以在经济性和强度效果之间获得所需的平衡。结果表明剪切键配置对接头强度的贡献,并表明OPT型剪切键显着增加了载荷传递,从而提高了可维修性。因此,在桥梁中使用OPT型剪力键可以减少所需的横向抗剪钢筋的数量,从而提高桥梁的可施工性并降低材料和建造成本。 (C)2018美国土木工程师学会。

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