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Fiber Reinforced Polymer Bridge Decks

机译:纤维增强聚合物桥甲板

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摘要

The overarching goal of this study was to perform a comprehensive evaluation of various issues related to the strength and serviceability of the FRP deck panels that are available in the industry. Specific objectives were to establish critical limit states to be considered in the design of FRP deck panel, to provide performance specifications to designers, and to develop evaluation techniques for the deck panels in service.Two different FRP panels were studied during the research project: a sandwich panel and a pultruded panel. The sandwich panel was initially selected for the rehabilitation case study bridge. However, for a variety of reasons outside of the scope of this study, both the sandwich panel and the initial case study bridge were dropped from consideration. A new case study bridge was selected, and new proposals from FRP deck manufacturers were solicited. At that time, the pultruded deck was selected. Analysis and experimental results related to both FRP deck panels are included in this report, as information from both decks is relevant to the overarching goal of this study.In November 2009, Sugar Creek Bridge became the first bridge in Indiana to be rehabilitated with an FRP bridge deck. An extensive study, including literature review, analysis, and load tests, suggest that the installed deck should perform well, with web buckling as the ultimate failure mode at a factor of safety of 5. Deflection limits, generally an issue with FRP decks, are satisfied with the installed deck. Meanwhile, some combination of acoustic emission methods, infrared thermography and a newly developed traveling truck deflection method show promise for non-destructive evaluation of the deck in-situ and identification of damage such as delamination of the wearing surface or web buckling. However, such methods have shown variability and could be prohibitively labor-intensive. Therefore, further evaluation is needed if such methods are to be pursued.
机译:本研究的总体目标是综合评估与行业中可用的FRP甲板面板的强度和可维护性有关的各种问题。具体目标是建立在FRP甲板小组设计中考虑的关键限额状态,为设计人员提供性能规范,并在研究项目中研究了不同的FRP面板的甲板面板的评估技术:a三明治面板和拉挤板。最初选择夹心板,用于康复案例研究桥。然而,出于本研究范围之外的各种原因,夹层面板和初始案例研究桥都从考虑中删除。选择了一个新的案例研究桥,征求了FRP甲板制造商的新提案。那时,选择了拉挤甲板。与两种FRP甲板面板有关的分析和实验结果包括在本报告中,因为这两个甲板的信息与本研究的总体目标相关。2009年11月,甘蔗桥成为印第安纳州第一座桥梁,以便用FRP恢复康复桥式甲板。一个广泛的研究,包括文献综述,分析和负载测试,表明已安装的甲板应该良好,Web屈曲作为最终的故障模式,安全性为5.偏转限制,通常是FRP甲板的问题满意已安装的甲板。同时,声发射方法,红外热成像和新开发的旅行卡车偏转方法的一些组合显示了对甲板的非破坏性评估的承诺和识别磨损表面或腹板屈曲等损坏。然而,这种方法表现出可变性,并且可能是劳动密集型的。因此,如果要追求这些方法,则需要进一步评估。

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