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Micro-Structural Analysis of Moisture-Induced Damage Potential of Asphalt Mixes Containing RAP

机译:含RAP的沥青混合料的水致损伤势的微观结构分析

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This study was undertaken to evaluate the effects of reclaimed asphalt pavement (RAP) on moisture-induced damage potential of asphalt mixes using two different approaches: (ⅰ) micro-structural analysis of aggregate-asphalt bonding based on the surface free energy (SFE), and (ⅱ) mechanical testing of asphalt mixes using retained indirect tensile strength ratio (TSR) and Hamburg wheel tracking (HWT). This study involved two phases. In the first phase, the SFE (non-polar, acidic and basic) components of a virgin PG 64-22 binder mixed with 0, 25, and 40 % of simulated RAP binder and aggregates (limestone, rhyolite, RAP extracted aggregate) were measured using a dynamic contact angle (DCA) device and a universal sorption device (USD), respectively. Thereafter, composite work of adhesion and composite work of debonding, and composite energy ratios for each combination of asphalt binder and aggregates were determined to assess the moisture-induced damage potential of the mixes containing different percentages of RAP (0, 25, and 40 %). In the second phase, the TSR and HWT tests were conducted on asphalt mixes containing different percentages of RAP (0, 25, and 40 %) to evaluate their moisture-induced damage potential. Both the methods showed that the moisture-induced damage potential decreased with increasing amount of RAP in asphalt mixes. A strong correlation was found to exist between the moisture-induced damage potential predicted using the micro-structural method and laboratory performance tests. It was found that the micro-structural energy approach, as a mechanistic framework, can be successfully used as an indicator of moisture-induced damage potential of the asphalt mixes. It is expected that the present study would be helpful in understanding the moisture-induced damage potential of flexible pavements containing RAP.
机译:这项研究旨在通过两种不同的方法来评估再生沥青路面(RAP)对湿气引起的沥青混合料破坏潜力的影响:(ⅰ)基于表面自由能(SFE)的骨料-沥青粘结的微观结构分析(ⅱ)使用保留的间接拉伸强度比(TSR)和汉堡轮跟踪(HWT)对沥青混合料进行机械测试。这项研究涉及两个阶段。在第一阶段,将原始PG 64-22粘合剂的SFE(非极性,酸性和碱性)组分与0%,25%和40%的模拟RAP粘合剂和骨料(石灰石,流纹岩,RAP提取的骨料)混合分别使用动态接触角(DCA)设备和通用吸附设备(USD)进行测量。此后,确定粘合力的复合功和脱胶的复合功,以及沥青粘合剂和骨料的每种组合的复合能比,以评估含有不同百分比的RAP(0%,25%和40% )。在第二阶段中,对包含不同百分比的RAP(0%,25%和40%)的沥青混合料进行了TSR和HWT测试,以评估其受潮引起的破坏可能性。两种方法均表明,随着沥青混合料中RAP含量的增加,水分引起的破坏潜力降低。发现使用微观结构方法预测的湿气导致的潜在破坏与实验室性能测试之间存在很强的相关性。已经发现,微结构能量方法作为一种机理框架,可以成功地用作湿气引起的沥青混合料破坏潜力的指标。可以预期,本研究将有助于理解湿润引起的含有RAP的人行道损坏的可能性。

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