首页> 外文期刊>Journal of materials in civil engineering >Integrated Design Procedure for Epoxy Asphalt Concrete-Based Wearing Surface on Long-Span Orthotropic Steel Deck Bridges
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Integrated Design Procedure for Epoxy Asphalt Concrete-Based Wearing Surface on Long-Span Orthotropic Steel Deck Bridges

机译:大跨度正交异性钢桥上环氧沥青混凝土基耐磨面的综合设计程序

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摘要

Wearing surfaces are integral parts for long-span orthotropic steel deck bridges and well-designed wearing surfaces will be able to carry the traffic crossing the bridge smoothly and maintain the operation of the bridge. However, until now a systematic procedure has still been necessary for designing such wearing surfaces. In this paper, an integrated procedure is proposed for designing the epoxy asphalt concrete (EAC)-based wearing surfaces. The proposed design procedure includes five major steps: data collection and preparation, epoxy asphalt concrete design, structure design, tolerance determination, and empirical validation. The design details for each step are described accordingly. In a case study, the proposed design procedure is demonstrated through applying this procedure on designing the wearing surface for the Second Nanjing Yangtze River Bridge located in Nanjing City, China. The case study results show that the proposed procedure can be applied to design a feasible wearing surface system on top of the long-span orthotropic steel bridge decks. Further investigations are recommended on extending the proposed procedure to accommodate other surfacing materials, advanced testing approaches, and local regulations, and a set of designing charts based on empirical evidences is also suggested to simplify and systemize further the design procedure.
机译:磨损面是大跨度正交异性钢桥的必不可少的部分,设计合理的磨损面将能够顺利通过桥架,并保持桥的正常运行。然而,直到现在,仍需要系统的程序来设计这种磨损表面。在本文中,提出了一种用于设计基于环氧沥青混凝土(EAC)的耐磨表面的集成程序。拟议的设计程序包括五个主要步骤:数据收集和准备,环氧沥青混凝土设计,结构设计,公差确定和经验验证。相应地描述了每个步骤的设计细节。在一个案例研究中,通过将该程序应用于位于中国南京市的南京第二长江大桥的耐磨面的设计,论证了所提出的设计程序。案例研究结果表明,所提出的程序可用于在大跨度正交异性钢桥面板顶部设计可行的磨损面系统。建议进一步研究,以扩大建议的程序以适应其他铺面材料,先进的测试方法和当地法规,并且还建议根据经验证据设计一套设计图,以简化和系统化设计程序。

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