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Finite Element Modeling of Concrete Bridge Deck Slabs Reinforced with FRP Bars

机译:用FRP条加固混凝土桥式板坯的有限元建模

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This paper presents the results of a finite element analysis for three different bridges that have been recently constructed and tested in North America. In these bridges, different types of reinforcement (steel and FRP reinforcing bars) were used as reinforcement for the concrete deck slabs. Two bridges, Magog Bridge and Cookshire-Eaton Bridge, are located in Quebec, Canada, while the third one, Morristown Bridge, is located in Vermont, USA. The three bridges are girder-type with main girders made of either steel or prestressed concrete. The main girders were either simply or continuously supported over spans ranging from 26.2 to 43.0 m. The deck was a 200 to 230 mm thickness concrete slab continuous over spans of 2.30 to 2.8 m. Different types, sizes, and reinforcement ratios of glass and carbon FRP reinforcing bars were used. Furthermore, the three bridges are located on different road or highway categories, which mean different traffic volumes and environments. The bridges were tested for service performance using calibrated truckloads. The results of the field load tests were used to verify the finite element model. Comparisons showed that FEM can predict the behavior of such elements. Then, the model was used to investigate the effect of the FRP-reinforcement type and ratio on the service and ultimate behavior of these bridge decks. According to the findings, a proposed reinforcement ratio was recommended and verified using the FEM to meet the strength and serviceability requirements of the design codes.
机译:本文介绍了三种不同桥梁的有限元分析的结果,该桥梁最近在北美建造和测试。在这些桥梁中,使用不同类型的加固(钢和FRP加固棒)作为混凝土甲板板坯的增强件。两座桥梁,Magog Bridge and Cookshire-Eaton Bridge位于加拿大魁北克,而第三个莫里斯敦大桥位于美国佛蒙特州。这三座桥梁是带有由钢或预应力混凝土制成的主要梁的梁型。主要的梁或连续支持超过26.2至43.0米的跨度。甲板为200至230毫米厚度的混凝土板,连续超过2.30至2.8米。使用玻璃和碳FRP加强棒的不同类型,尺寸和增强比率。此外,三座桥梁位于不同的道路或公路类别上,这意味着不同的交通卷和环境。使用校准的卡车测试进行桥接进行服务性能。现场载荷测试的结果用于验证有限元模型。比较表明,FEM可以预测这种元素的行为。然后,该模型用于研究FRP加强型和比率对这些桥甲板的服务和最终行为的影响。根据调查结果,建议提出的强化比例,并使用FEM验证,以满足设计代码的强度和可维护性要求。

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