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Effective Width of Integral Bent Caps in Reinforced-Concrete Box-Girder Bridges

机译:钢筋混凝土箱梁桥中整体弯曲盖的有效宽度

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The objective of this paper is to revise the effective slab width of integral bent cap beams in reinforced concrete box-girder bridges. Currently, a conservative code-based value of 12 times the slab width plus the cap beam width is used to define the beam's top and bottom flange widths to account for the box-girder slab contribution as part of the cap beam analysis and design. A comprehensive experimental study was utilized to revise the integral bent cap beam effective slab width for more accurate design and capacity estimation. Two large-scale column-cap beam-box-girder bridge subassemblages were tested under combined vertical and lateral loading. The first specimen was tested using quasi-static cyclic loading and the second was tested using hybrid simulation earthquake loading. A strain-based approach was used to estimate the bent cap effective slab width at different loading levels. The study concluded that 12 times the slab width is a conservative estimate for the box-girder slab contribution to the bent cap stiffness and capacity, and 18 times the slab width is a more accurate representation.
机译:本文的目的是在钢筋混凝土箱梁桥中修改整体弯曲帽梁的有效板坯宽度。目前,基于保守的基于板坯宽度加上盖束宽度的基于守则的值为12倍,用于定义光束的顶部和底部法兰宽度,以解释盒式梁板的贡献,作为帽束分析和设计的一部分。用于修改整体弯曲盖梁有效板坯宽度的综合实验研究,以实现更准确的设计和容量估计。在组合的垂直和横向载荷下测试了两个大型柱帽梁箱梁子组件。使用准静态循环载荷测试第一样品,使用混合模拟地震载荷测试第二个样品。基于应变的方法用于估计不同负载水平的弯曲帽有效板坯宽度。该研究得出结论,板坯宽度为12倍,保守估计箱梁板与弯曲帽刚度和容量的贡献,并且板坯宽度的18倍是更准确的表示。

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