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The Evaluation of Short- and Long-Term Performance of Cold-Mix Asphalt Patching Materials

机译:冷混合沥青贴片材料短期和长期性能的评价

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摘要

Potholes, one of the major types of distress on pavement surfaces, damage vehicles and are a safety hazard for the travelling public. In order to mitigate the effect of potholes, cold-mix asphalt (CMA) patching materials are commonly used for urgent repair of pavement surfaces before resurfacing can be undertaken. Therefore, the short-term (initial stability) and long-term (in-service durability) performance evaluation of CMA patching materials is necessary. This study conducted several curing conditions in the laboratory to investigate short-term, long-term, and moisture effects on pavement surfaces. Moreover, this study compared the Marshall stability of samples prepared under various compaction conditions. Marshall stability, Cantabro abrasion, and UK wheel tracking tests were conducted to evaluate the performance of CMA patching materials. The results indicated that the Marshall stability of dense-gradation (DG) CMA patching materials was higher than that of open-graded (OG) CMA patching materials and the Marshall stability of OG CMA patching materials was highly influenced by the coarse aggregate proportion. The DG and OG CMA patching materials exhibited comparable abrasion resistance, and the Cantabro abrasion ratio was highly correlated to the estimated asphalt film thickness for the OG CMA patching materials. A moisture indicator (MI) was proposed, and the effect of moisture damage on Marshall stability and Cantabro abrasion ratio was related to the proposed MI. The rutting resistance of the DG CMA patching materials was higher than that of the OG CMA patching materials, which is consistent with the Marshall stability result.
机译:坑洼是路面表面,损坏车辆的主要类型的痛苦之一,是旅行公众的安全危险。为了减轻坑孔的效果,冷混合物沥青(CMA)贴片材料通常用于在重新架构之前进行迫切地修复路面表面。因此,需要短期(初始稳定性)和长期(适用于耐久性)CMA修补材料的性能评估。该研究在实验室进行了几种固化条件,以研究对路面表面的短期,长期和水分效应。此外,该研究比较了在各种压实条件下制备的样品的马歇尔稳定性。进行了马歇尔稳定性,CantaBro磨损和英国轮式跟踪测试,以评估CMA修补材料的性能。结果表明,致密灰度(DG)CMA修补材料的马歇尔稳定性高于开放式(OG)CMA修补材料,OG CMA修补材料的马歇尔稳定性受到粗骨料比例的高度影响。 DG和OG CMA贴片材料表现出相当的耐磨性,并且触鸣与OG CMA贴片材料的估计沥青膜厚度高度相关。提出了一种水分指示剂(MI),水分损伤对马歇尔稳定性和坎塔布罗磨损比的影响与提出的MI有关。 DG CMA贴片材料的车辙抗性高于OG CMA贴片材料的抵抗力,这与Marshall稳定性结果一致。

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