Cold in-place recycling of asphalt pavement: A case study with laboratory and in-situ testing for a highway project in Southern Vietnam

IF 3.9
Huu-Bang Tran , Vu To-Anh Phan
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Abstract

This paper provides a comprehensive analysis of the implementation of Cold In-Place Recycling (CIR) for asphalt mixtures, covering on-site investigations, reclaimed asphalt materials, laboratory testing, structural design, and field evaluations. In the CIR process, foamed asphalt and Portland cement were used as additives. The foamed bitumen was produced by combining bitumen with 3 % water at a flow rate of 10.8 m³/s, resulting in an expansion ratio of 8 and a minimum half-life of 6 s. CIR properties, such as indirect tensile strength under dry, wet, and equilibrium humidity conditions, were investigated. The results indicated that CIR with a foamed bitumen content of 1.9 % met the relevant requirements set by current standards. Additionally, incorporating 1 % cement into the foamed bitumen significantly enhanced the indirect tensile strength of the CIR by approximately 45.1 %. The combination of 1.9 % foamed bitumen and 1 % cement notably improved the tensile strength ratio, thereby increasing durability compared to other mixtures. Field construction was conducted, and test results confirmed that the in-situ CIR samples met the key requirements of AASHTO MP31-22, demonstrating the method's suitability for sustainable road construction.
冷就地回收沥青路面:越南南部公路项目的实验室和现场测试案例研究
本文对沥青混合料就地冷回收(CIR)的实施进行了全面的分析,包括现场调查、再生沥青材料、实验室测试、结构设计和现场评估。在CIR工艺中,采用泡沫沥青和波特兰水泥作为外加剂。在10.8 m³/s的流速下,将沥青与3 %的水混合,产生泡沫沥青,膨胀比为8,最小半衰期为6 s。研究了CIR在干、湿、平衡湿度条件下的间接抗拉强度。结果表明,发泡沥青含量为1.9 %的CIR符合现行标准的相关要求。此外,在泡沫沥青中掺入1 %的水泥可显著提高CIR的间接抗拉强度,约为45.1% %。1.9 %泡沫沥青与1 %水泥的组合显著提高了抗拉强度比,从而提高了耐久性。进行了现场施工,试验结果证实,原位CIR样品满足AASHTO MP31-22的关键要求,证明了该方法适用于可持续道路施工。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.60
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