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Behavior of FRP Link Slabs in Jointless Bridge Decks

机译:无接缝桥面玻璃钢连接板的性能

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The paper investigated the use of fiberglass-reinforced plastic (FRP) grid for reinforcement in link slabs for jointless bridge decks. The design concept of link slab was examined based on the ductility of the fiberglass-reinforced plastic grid to accommodate bridge deck deformations. The implementation of hybrid simulation assisted in combining the experimental results and the theoretical work. The numerical analyses and the experimental work investigated the behavior of the link slab and confirmed its feasibility. The results indicated that the technique would allow simultaneous achievement of structural need, lower flexural stiffness of the link slab approaching the behavior of a hinge, and sustainability need of the link slab. The outcome of the study supports the contention that jointless concrete bridge decks may be designed and constructed with fiberglass-reinforced plastic grid link slabs. This concept would also provide a solution to a number of deterioration problems associated with bridge deck joints and can be used during new construction of bridge decks. The federal highway administration provided funds to Louisiana Department of Transportation through the innovative bridge research and development program to implement the use of FRP grid as link slab.
机译:本文研究了玻璃纤维增​​强塑料(FRP)网格在无接缝桥面连接板中的增强作用。基于玻璃纤维增​​强塑料网格的延展性,以适应桥面板变形,检验了连接板的设计概念。混合仿真的实施有助于将实验结果与理论工作相结合。数值分析和实验工作研究了连接板的性能并证实了其可行性。结果表明,该技术将允许同时满足结构需求,降低连接板的挠曲刚度,使其接近铰链的性能以及保持连接板的可持续性。研究结果支持这样的论点,即无接缝的混凝土桥面可以用玻璃纤维增​​强塑料网格连接板设计和建造。这个概念还将为桥梁桥面连接处的许多劣化问题提供解决方案,并且可以在桥梁桥面的新建筑中使用。联邦公路管理局通过创新的桥梁研究和开发计划向路易斯安那州交通运输部提供了资金,以实现将FRP网格用作连接板。

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