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Use of Ultra-High-Performance Fiber-Reinforced Concrete (UHP-FRC) for Fast and Sustainable Repair of Rigid Pavements

机译:使用超高性能纤维混凝土(UHP-FRC)进行刚性路面的快速和可持续修复

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This paper presents a new methodology, which enables streets, roads, highways, bridges, and airfields to use an advanced fiber-reinforced concrete material, which can delay or prevent the deterioration of these transportation infrastructure when subjected to traffic and environmental loadings. The major problem of plain concrete is that its service life can considerably reduce due to weather and loading. As a result, it requires frequent repair and eventual replacement, which consumes more natural resources. Ultra-high-performance fiber-reinforced concrete (UHP-FRC) introduces significant enhancement in the sustainability of concrete structures due to its dense microstructure and damage-tolerance characteristics. These characteristics can significantly reduce the amount of repair, rehabilitation, and maintenance work, thereby giving the transportation infrastructure a longer service life. This research addresses the strong need to develop fast and sustainable UHP-FRC materials for pavement repair that can be easily cast onsite without special treatments. This avoids any major changes to current concrete production practice and accelerates the use of UHP-FRC materials. This research investigated a new method for concrete repair by combining precast UHP-FRC panels with a small quantity of cast-in-place UHP-FRC for pavement repair without any dowel bars. Experimental results proved the feasibility of using this new method for fast pavement repair.
机译:本文介绍了一种新的方法,它使街道,道路,公路,桥梁和机场能够使用先进的纤维钢筋混凝土材料,该混凝土材料可以延迟或防止在经过交通和环境载荷时延迟或防止这些运输基础设施的恶化。普通混凝土的主要问题是,由于天气和装载,其使用寿命可以大大减少。因此,它需要经常修复和最终更换,这消耗了更多的自然资源。超高性能纤维钢筋混凝土(UHP-FRC)由于其致密的微观结构和损伤特性,在混凝土结构的可持续性方面引入了显着提高。这些特性可以显着减少修复,康复和维护工作量,从而使交通基础设施更长的使用寿命。本研究解决了开发快速和可持续的UHP-FRC材料的强烈需要,用于路面修复,可以在没有特殊治疗的情况下轻松铸造现场。这避免了对当前混凝土生产实践的任何重大变化,并加速了UHP-FRC材料的使用。本研究通过将预制的UHP-FRC面板与少量铸造的UHP-FRC组合,对路面维修组合而没有任何销钉杆来调查了一种新的混凝土修复方法。实验结果证明了使用这种新方法快速路面修复的可行性。

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