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Design of hybrid bridge girders with adhesively bonded and compositely acting FRP deck

机译:胶粘结合复合作用FRP桥面的混合梁设计

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摘要

Analytical prediction methods for axial stresses and deflections at the serviceability limit state and for ultimate failure loads are proposed for hybrid bridge girders consisting of FRP bridge decks adhesively bonded to steel girders. The methods allow for the consideration of partial shear connection layers in hybrid cross-sections. It was found that the adhesive bond always provides full composite action between FRP decks and steel girders, even in the case of flexible polyurethane adhesives with a layer thickness up to 50 mm. For pultruded bridge deck systems, however, the webs or diagonals between the upper and lower face panels provide only partial shear connection of the upper face panels in the longitudinal bridge direction. The results of these prediction methods were compared to experimental results from full-scale girders with two different pultruded FRP bridge deck systems and were found to match well.
机译:提出了由FRP桥面板粘结到钢梁上的混合桥梁在使用极限状态下的轴向应力和挠度的分析预测方法以及极限破坏载荷的分析预测方法。该方法考虑了混合横截面中的局部剪切连接层。结果发现,即使在层厚最大为50 mm的柔性聚氨酯胶粘剂的情况下,胶粘剂始终能在FRP甲板和钢梁之间提供完全的复合作用。然而,对于拉挤式桥面板系统,上面板和下面板之间的腹板或对角线仅在纵向桥方向上提供了上面板的部分剪切连接。将这些预测方法的结果与带有两种不同的拉挤FRP桥面系统的全尺寸大梁的实验结果进行了比较,发现它们非常匹配。

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