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Field Performance of the Fiber-Reinforced Polymer Deck of a Truss Bridge

机译:桁架桥的纤维增强聚合物桥面的现场性能

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摘要

The MD 24 Bridge over Deer Creek in Harford County, Md., was one of the projects chosen by the Federal Highway Administration's Innovative Bridge Research and Construction Program for bridge deck replacement by fiber-reinforced polymer (FRP) composites. A thorough discussion is presented on Maryland State Highway Administration's first bridge rehabilitation project utilizing a FRP deck. The discussion includes design details, installation procedure, construction methods and in situ load testing with a wireless monitoring system. The research team installed a monitoring system to record the effects of live loads on the bridge system, including truss members, steel stringers, and plate action of the FRP deck. Finite-element models were also used in this phase. Dynamic effects of the FRP system, composite action between steel stringers and the FRP deck as well as the effective width and distribution factors of stringers were obtained and compared with the AASHTO specifications. Recommendations are also offered on improving the design details based on this experience.
机译:马里兰州哈福德县迪尔克里克的MD 24桥是联邦公路管理局创新桥梁研究与建设计划选择的项目之一,该项目旨在用纤维增强聚合物(FRP)复合材料替代桥面板。关于马里兰州高速公路管理局使用FRP甲板的第一个桥梁修复项目,进行了详尽的讨论。讨论内容包括设计细节,安装过程,施工方法以及使用无线监控系统进行的现场负载测试。研究团队安装了一个监视系统,以记录活荷载对桥梁系统的影响,包括桁架构件,钢桁架和FRP甲板的板作用。在此阶段也使用了有限元模型。获得了FRP系统的动态效果,钢桁架与FRP甲板之间的复合作用以及桁架的有效宽度和分布因子,并将其与AASHTO规范进行了比较。根据这些经验,还提供了有关改进设计细节的建议。

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