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首页> 外文期刊>Journal of bridge engineering >Joint Design Optimization for Accelerated Construction of Slab Beam Bridges
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Joint Design Optimization for Accelerated Construction of Slab Beam Bridges

机译:平板梁桥接施工的联合设计优化

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The Florida Slab Beam (FSB) has been developed by the Florida Department of Transportation (FDOT) to be used for short-span bridges [less than about 19.8 m (65 ft) long]. The FSB system consists of shallow precast, prestressed concrete inverted-tee beams that are placed adjacent to each other and then involve reinforcement and concrete being placed in the inner joints and deck all in one single cast. Ultra-high-performance concrete (UHPC) is becoming more widely used in bridge construction applications as a result of its remarkable structural performance. Many departments of transportation have tested and deployed the use of UHPC in bridges around the United States. Most of these applications have been to connect precast members (e.g., slabs to beams and slabs, adjacent beams, caps to columns, etc.). A modified FSB design is desired to eliminate the cast-in-place (CIP) deck and allow for UHPC to be used in the joint region, which will allow for accelerated construction and decrease the impact of construction on traffic. Different joint details and cross-section geometries were analyzed and experimentally evaluated to determine feasible joint details with UHPC for slab beam bridges used in accelerated construction. Results from numerical modeling, strength, and fatigue experimental testing of the transverse joint performance of four different UHPC joints in two different depth slab beam bridges are presented. Straight-side and shear-key UHPC joint details were found to behave similar to or better than the current FSB joint detail.
机译:佛罗里达平板梁(FSB)已由佛罗里达州运输部(FDOT)开发,用于短跨度桥梁[小于约19.8米(65英尺)]。 FSB系统由浅预制的预应力混凝土倒置式倒置式倒置,然后彼此相邻放置,然后涉及加强和混凝土在一个单一的铸件中放置在内接头和甲板中。由于其显着结构性能,超高性能混凝土(UHPC)正越广泛地用于桥梁施工应用。许多交通部门已经过测试并部署了UHPC在美国桥梁的使用。这些应用中的大多数都是将预制成员(例如,平板,横梁,相邻的光束,帽到列等)连接。期望改性的FSB设计是为了消除原始的(CIP)甲板,并允许UHPC用于接合区域,这将允许加速结构并降低建设对交通的影响。分析和实验评估了不同的关节细节和横截面几何形状,以确定用于加速结构的平板梁桥的UHPC可行的关节细节。提出了两种不同深度板梁桥中四种不同UHPC接头的横向关节性能的数值建模,强度和疲劳实验测试。发现直边和剪切键UHPC联合细节表现得类似于或优于当前的FSB联合细节。

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