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首页> 外文期刊>Journal of Composites for Construction >Composite Action and Adhesive Bond between Fiber- Reinforced Polymer Bridge Decks and Main Girders
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Composite Action and Adhesive Bond between Fiber- Reinforced Polymer Bridge Decks and Main Girders

机译:纤维增强的聚合物桥面与主梁之间的复合作用和胶粘剂粘结

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摘要

This paper describes the behavior of hybrid girders consisting of fiber-reinforced polymer (FRP) bridge decks adhesively connected to steel main girders. Two large-scale girders were experimentally investigated at the serviceability and ultimate limit state as well as at failure. One of the girders was additionally fatigue loaded to 10 million cycles. Compared to the behavior of a reference steel girder, deflections of the two girders at the SLS were decreased by 30% and failure loads increased by 56% due to full composite action in the adhesive layer. A ductile failure mode occurred: Deck compression failure during yielding of the steel girder. The adhesive connections were able to prevent buckling of the yielding top steel flanges. Thus, compared to the reference steel girder, the maximum deflections at failure could be increased up to 130%. No deterioration due to fatigue loading was observed. Based on the experimental results, a conceptual design method for bonded FRP/steel girders was developed. The proposed method is based on the well-established design method for hybrid girders with concrete decks and shear stud connections. The necessary modifications are proposed.
机译:本文描述了由纤维增强的聚合物(FRP)桥面板粘结到钢主梁的混合箱梁的性能。实验研究了两个大型梁的可使用性,极限状态以及失效状态。大梁之一还承受了1000万次疲劳载荷。与参考钢梁的行为相比,两个梁在SLS处的挠度降低了30%,并且由于在胶粘剂层中充分的复合作用,破坏载荷增加了56%。发生了延性失效模式:钢梁屈服期间甲板压缩失效。粘合连接能够防止屈服的顶部钢制法兰发生屈曲。因此,与参考钢梁相比,破坏时的最大挠度可以增加到130%。没有观察到由于疲劳载荷引起的劣化。基于实验结果,开发了一种粘结FRP /钢梁的概念设计方法。所提出的方法是基于已建立的具有混凝土面板和抗剪螺栓连接的混合大梁的设计方法。提出了必要的修改。

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