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Field performance evaluation of asphalt mixtures containing high percentage of RAP using LTPP data

机译:使用LTPP数据评估高RAP百分比的沥青混合料的现场性能评估

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Recycled asphalt pavement (RAP) has been used in production of new mixtures for many decades and has become a common practice in highway agencies. However, concerns about field performance of RAP mixtures have been lingering on since the beginning of RAP usage. In this study, the field performance of RAP was verified through the Long-Term Pavement Performance (LTPP) program. Particularly, pavement overlays constructed with virgin asphalt and those constructed with a significant RAP percentage were examined and compared regarding their field performance. To achieve this goal, data from the Specific Pavement Study experiment 5 (SPS-5) of LTPP were retrieved and statistically analyzed for comparison. A total of eighteen projects comprised of 162 sections were collected. Various performance measures were incorporated, including alligator cracking, longitudinal cracking (wheel path and non-wheel path), transverse cracking, patching, potholes, rutting, roughness, and pavement surface deflections. In addition to the key variables used in the SPS-5 experiment (thickness, materials and pre-overlay treatment), the impacts of other important factors, including climatic conditions, initial surface condition and subgrade soil classification, were also investigated. Exploratory data analyses and logistic regression were used to compare the performance of RAP and virgin asphalt overlays. Results from the analysis results show that RAP had little effects on longitudinal cracking, transverse cracking, and roughness, but slightly increased the risk of fatigue cracking and weakened pavement structure. As expected, use of RAP was beneficial in reducing the rutting potential of thick overlays. For both RAP and virgin asphalt overlays, thicker overlays performed better than thinner ones in all performance measures except for rutting. Pre-overlay treatment methods and subgrade soil types were found to be critical factors affecting fatigue cracking and roughness. The initial surface condition also showed significant effects on pavement structural capacity and fatigue cracking over the long run. (C) 2018 Elsevier Ltd. All rights reserved.
机译:再生沥青路面(RAP)在新混合物的生产中已经使用了数十年,并且已成为公路部门的一种普遍做法。然而,自从开始使用RAP以来,人们一直对RAP混合物的现场性能表示担忧。在这项研究中,通过长期路面性能(LTPP)程序验证了RAP的现场性能。特别是,检查并比较了用原始沥青构造的路面覆盖层和用显着的RAP百分比构造的路面覆盖层的田间性能。为了实现此目标,LTPP的“特殊路面研究”实验5(SPS-5)的数据被检索并进行统计分析以进行比较。总共收集了由162个部门组成的18个项目。纳入了各种性能指标,包括鳄鱼皮开裂,纵向开裂(车轮路径和非车轮路径),横向裂纹,修补,坑洼,车辙,粗糙度和人行道表面挠度。除了在SPS-5实验中使用的关键变量(厚度,材料和预覆盖处理)之外,还研究了其他重要因素的影响,包括气候条件,初始表面条件和路基土壤分类。探索性数据分析和逻辑回归用于比较RAP和原始沥青覆盖层的性能。分析结果表明,RAP对纵向开裂,横向开裂和粗糙度影响不大,但会稍微增加疲劳开裂的风险并削弱路面结构。不出所料,RAP的使用有利于减少厚覆盖层的车辙可能性。对于RAP和原始沥青外墙,除车辙外,在所有性能指标中,较厚的外墙性能均优于较薄的外墙。发现覆盖前的处理方法和路基土壤类型是影响疲劳裂纹和粗糙度的关键因素。从长远来看,初始表面状况也对路面结构能力和疲劳裂纹产生了重大影响。 (C)2018 Elsevier Ltd.保留所有权利。

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