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Field Evaluation of Cross-Frame and Girder Live-Load Response in Skewed Steel I-Girder Bridges

机译:斜钢工字形桥跨框架和箱梁活荷载响应的现场评估

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A better understanding of the relationships among girder stresses, cross-frame design, and skew angle of two steel I-girder bridges, which have moderate and high levels of skew and differing cross-frame designs, was revealed via field testing under various load passes of a weighed load vehicle. Strains were measured at approximately 100 points on the two structures, and the majority of the instrumentation was located on the cross-frames. The data were analyzed in terms of vertical bending, lateral bending, and warping in the girders, and in the magnitudes and distribution of stresses in the cross-frames of the two structures. These metrics were compared between the two bridges and in relation to the assumptions typically used in contemporary bridge analysis. This comparison revealed the following: the magnitudes of lateral stresses were higher than current design guidance suggests in some cases when staggered cross-frames were used; significant magnitudes of warping stresses in the girder webs, which state-of-the-art analysis methods generally fail to consider; and cross-frame stresses that exceeded the values typically considered in design.
机译:通过在各种载荷传递下进行的现场测试,可以更好地理解两座钢制I形梁桥的梁应力,横梁设计和偏斜角之间的关系,这些桥梁具有中等偏高的偏斜度和不同的横梁设计。称重的车辆。在两个结构的大约100个点上测量了应变,大部分仪器位于交叉框架上。根据梁的竖向弯曲,横向弯曲和翘曲,以及两种结构的横向框架中应力的大小和分布对数据进行了分析。这些指标在两个桥梁之间进行了比较,并与当代桥梁分析中通常使用的假设进行了比较。这种比较揭示了以下内容:在某些情况下,当使用交错的交叉框架时,侧向应力的大小高于当前的设计指南所建议的水平;大梁腹板的翘曲应力幅度很大,而最新的分析方法通常都没有考虑这些翘曲应力;跨框架应力超过设计中通常考虑的值。

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