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Load Testing of an FRP Bridge Deck on a Truss Bridge

机译:桁架桥上的FRP桥面板的载荷测试

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New York State has constructed a fiber reinforced polymer (FRP) bridge deck as an experimental project. The goal of the project was to improve the load rating of a 50-yr old truss bridge located in Wellsburg, New York. The FRP deck weighs approximately 80-percent less than the deteriorated concrete bridge deck it replaced. Reducing the dead load increased the allowable live load capacity of the bridge without significant repair work to the existing superstructure, thus lengthening its service life. Load testing was conducted after installation of the FRP deck to study the conservativeness of the design, ascertain the assumptions made on composite action between the deck and the superstructure, and examine the effectiveness of joints in load transfer. This report describes the testing and discusses the results. The results indicate that the design was conservative. The design assumed no composite action between the deck and the superstructure, and the experimental data confirms that assumption. The study also shows that the joints are only partially-effective in load transfer between panels. Peak strains under the test loads were only a very small fraction of the ultimate strength of the FRP deck.
机译:纽约州已经建造了纤维增强聚合物(FRP)桥面作为一项实验项目。该项目的目标是提高位于纽约韦尔斯堡的一座有50年历史的桁架桥的额定载荷。 FRP甲板的重量比其更换的老化混凝土桥面板轻约80%。减少静载增加了桥梁的允许活载能力,而无需对现有的上部结构进行大量修理,从而延长了其使用寿命。在安装FRP甲板之后进行了载荷测试,以研究设计的保守性,确定关于甲板与上部结构之间的复合作用的假设,并检查接头在载荷传递中的有效性。该报告描述了测试并讨论了结果。结果表明该设计是保守的。设计假定甲板与上部结构之间没有复合作用,实验数据证实了这一假设。研究还表明,在面板之间的荷载传递中,接头仅部分有效。试验载荷下的峰值应变仅是FRP甲板极限强度的很小一部分。

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