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Shear friction performance between high strength concrete (HSC) and ultra high performance concrete (UHPC) for bridge connection applications

机译:高强度混凝土(HSC)和超高性能混凝土(UHPC)之间的桥梁连接应用的剪切摩擦性能

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摘要

Ultra high performance concrete (UHPC) has been typically used as grout material in the bridge connections or as a repairing material in the bridge deck applications due to outstanding mechanical properties, especially, superior bond strength with precast concrete. However, shear stresses due to mechanical, shrinkage, environmental loads, or any combination, usually develop at the interface between the two materials. Therefore, the interface should have enough capacity for these stresses at both early ages and during the service life. In this study, the interface bond performance between precast high strength concrete (HSC) and cast in place (UHPC) was examined under direct shear using the push-off test. The contribution of the shear reinforcement (SR) to the load transfer, before and after interface failure, was investigated. Results from this study were also compared with the predicted values from codes provisions. The test results indicate that UHPC has superior adhesion to the precast concrete, which exceeded the adhesion value of the monolithic surface specified by the provisions. A bond strength versus displacement model is proposed based on data analysis and could be used in the modeling of HSC-UHPC interface under a shear stress state. The shear reinforcement placed across the interface played a key role in reducing the slip at the interface before interface failure. The shear capacity from standard codes is highly conservative and could be used in the design.
机译:超高性能混凝土(UHPC)由于出色的机械性能,特别是与预制混凝土的优异粘结强度,通常被用作桥梁连接中的灌浆材料或桥梁桥面应用中的修补材料。然而,由于机械,收缩,环境负荷或任何组合而产生的剪切应力通常在两种材料之间的界面处产生。因此,在早期和使用寿命期间,接口都应具有足够的容量来应对这些压力。在这项研究中,预制高强度混凝土(HSC)与现浇混凝土(UHPC)之间的界面粘结性能使用推拉试验在直接剪切作用下进行了测试。在界面破坏之前和之后,研究了剪切增强(SR)对载荷传递的贡献。这项研究的结果也与规范规定的预测值进行了比较。测试结果表明,UHPC对预制混凝土具有优异的附着力,超过了规定中规定的整体表面的附着力值。基于数据分析,提出了结合强度与位移的模型,可用于剪切应力状态下的HSC-UHPC界面建模。放置在界面上的抗剪钢筋在减少界面失效之前在界面处的打滑起着关键作用。标准规范的剪切能力是非常保守的,可以在设计中使用。

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