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Design of a Novel Road Pavement Using Steel and Plastics to Enhance Performance Durability and Construction Efficiency

机译:使用钢和塑料进行新颖的道路路面设计以提高性能耐用性和施工效率

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摘要

Durability is one important problem that pavement engineers need to address in pavement’s long service life. Furthermore, easily recycled pavement materials, and safe and efficient pavement construction are also important areas for development in road engineering. For these reasons, a new asphalt steel plastic (ASP) pavement structure was proposed with an asphalt mixture forming the surface layer, and steel plate and plastic materials functioning as the main load-bearing layers. Based on a comprehensive performance review and cost-benefit analysis, stone mastic asphalt (SMA) is recommended to be used as the surface layer; and A656 steel plate and acrylonitrile butadiene styrene (ABS) plastic materials should be the main load-bearing layer, on top of a foundation layer made with graded crushed stones. A glass fiber reinforced polymer (GFRP) insulation layer is recommended for use between the steel plate and ABS. Mechanical properties of the ASP pavement were analyzed using the finite element method. Laboratory tests were conducted to verify the thermal insulation performance of GFRP, the high-temperature stability and the fatigue resistance of ASP pavement. Results show that some of the mechanical properties of ASP pavement (with a structure of 80 mm SMA asphalt mixture, 8 mm steel plate, 140 mm ABS and 200 mm crushed stones) are comparable with conventional long-life pavement (with 350 mm asphalt layer overlaying 400 mm graded crushed stones). Dynamic stability of the ASP slab specimens can reach 10,000 times/mm, and the fatigue life is about twice that of SMA. Besides, the ASP pavement can be prefabricated and assembled on-site, and thus can greatly improve construction efficiency. From the lifecycle perspective, ASP pavement has many advantages over traditional pavements, such as durability, lower environmental footprint and recyclability, making it is worth further research.
机译:耐用性是路面工程师需要在路面长期使用寿命中解决的一个重要问题。此外,容易再循环的路面材料,安全高效的路面建设也是道路工程发展的重要领域。由于这些原因,提出了一种新的沥青钢塑料(ASP)路面结构,其具有形成表面层的沥青混合物,以及用作主要承载层的钢板和塑料材料。基于全面的绩效审查和成本效益分析,建议使用石棉沥青(SMA)作为表面层;和A656钢板和丙烯腈丁二烯苯乙烯(ABS)塑料材料应是主要承载层,在用碎石的碎石制成的基础层的顶部。建议使用玻璃纤维增​​强聚合物(GFRP)绝缘层,用于钢板和ABS之间。使用有限元法分析ASP路面的机械性能。进行实验室测试以验证GFRP的绝热性能,高温稳定性和ASP路面的疲劳性。结果表明,ASP路面的一些机械性能(具有80 mm SMA沥青混合物,8mm钢板,140mM ABS和200mM碎石的结构)与传统的长寿命路面相比(具有350mm沥青层覆盖400毫米分级碎石的石头)。 ASP板坯样本的动态稳定性可达到10,000次/ mm,疲劳寿命约为SMA的两倍。此外,ASP路面可以预制和组装在现场,从而可以大大提高施工效率。从生命周期的角度来看,ASP路面与传统人行道上有许多优势,如耐用性,降低环境足迹和可回收性,使其值得进一步研究。

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