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首页> 外文期刊>Journal of bridge engineering >Laboratory Evaluation of Ultrahigh-Performance Concrete Shear Key for Prestressed Adjacent Precast Concrete Box Girder Bridges
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Laboratory Evaluation of Ultrahigh-Performance Concrete Shear Key for Prestressed Adjacent Precast Concrete Box Girder Bridges

机译:预应力相邻预制混凝土箱梁桥超高性能混凝土剪力键的室内评估

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摘要

Precast adjacent box girder bridges have become a preferred solution in several states due to their simple structure, economy, and ease of construction. However, longitudinal cracks often appear along the shear keys between adjacent box girders. With its superior strength and durability, ultrahigh-performance concrete (UHPC) has been used as an alternative grout material to reduce shear key cracking and enhance load transfer. The objective of the present research was to evaluate the performance of UHPC in shear keys using direct shear, direct tension, and flexural tests. Also, this study determined the effectiveness and functionality of shear reinforcement bars by applying direct shear load on specimens with shear reinforcement. In the direct shear test, a steel frame was placed around the specimens to allow the shear key to experience pure shear force. The direct shear test established the cracking threshold and ultimate shear strength of each shear key with and without shear reinforcement bars. The test results show that the average maximum shear capacity for the UHPC shear key without shear reinforcement bars exceeded that determined from past research for any grout material and any shear key configuration. Furthermore, the average maximum shear capacity increased by a factor of 1.81 with shear reinforcement bars. The enhanced shear strength of the UHPC shear key may have an impact on the analysis and design of UHPC connections in bridges. (C) 2016 American Society of Civil Engineers.
机译:预制的邻近箱形箱梁桥由于其简单的结构,经济的结构和易于施工的优点,已在多个州成为首选解决方案。但是,纵向裂纹通常会沿着相邻箱梁之间的剪力键出现。凭借其卓越的强度和耐久性,超高性能混凝土(UHPC)已被用作替代灌浆材料,以减少剪切键裂缝并增强荷载传递。本研究的目的是使用直接剪切,直接拉伸和弯曲测试来评估UHPC在剪切键中的性能。此外,这项研究通过在具有剪切增强作用的试样上施加直接剪切载荷,确定了剪切增强钢筋的有效性和功能性。在直接剪切试验中,将钢框架放置在样品周围,以使剪切键承受纯剪切力。直接剪切试验确定了在有和没有抗剪钢筋的情况下每个剪力键的开裂阈值和极限抗剪强度。测试结果表明,不使用抗剪钢筋的UHPC剪切键的平均最大剪切能力超过了以往对任何灌浆材料和剪切键配置的研究得出的最大剪切能力。此外,抗剪钢筋的平均最大抗剪能力提高了1.81倍。 UHPC剪力键的增强抗剪强度可能会影响桥梁中UHPC连接的分析和设计。 (C)2016年美国土木工程师学会。

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