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Effects of Aging and Rejuvenation on Surface-Free Energy Measurements and Adhesion of Asphalt Mixtures

机译:老化和恢复活化对无表面能量测量的影响和沥青混合物的粘附性

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摘要

This paper presents the results of a study that was conducted to understand the impacts of aging and rejuvenation on fundamental properties of asphalt binders. A Performance Grade (PG) 64-22 binder was aged to simulate the aging of asphalt mixes during construction and in-service conditions. The binders' surface tension property, i.e., contact angles between binder and three probe liquids, was measured using a sessile drop device. This property was then used to estimate surface free energy components of the control binder, aged binders, and rejuvenated binders using the Good-van Oss-Chaudhury postulation. Cohesive and adhesive bond energies of asphalt-aggregate systems under dry and wet conditions were also analyzed. The aggregates considered in this study were limestone and granite; these aggregates have different moisture affinities. The data showed that as asphalt ages, the contact angle between a liquid (distilled water) and the asphalt surface increases; however, for the other two probe liquids (formamide and glycerol), no pattern was observed. For the surface free energy components of the control binder, the aged binders, and the binders with rejuvenators, the contribution from Lifshitz-van der Waals components were comparatively much higher than those from acidic and basic components. The rejuvenators seemed to be effective at improving the cohesive energy of asphalt binder, suggesting an improvement in the water damage resistance of the mix. In general, the limestone-based asphalt concrete mixture showed a higher moisture damage resistance than the asphalt concrete mixture with granite. (C) 2019 American Society of Civil Engineers.
机译:本文介绍了一项研究的结果,以了解老化和恢复对沥青粘合剂的基本性质的影响。老化性能等级(PG)64-22粘合剂以模拟在施工和在职条件下模拟沥青混合物的老化。使用无柄滴装置测量粘合剂的表面张力特性,即粘合剂和三个探针液之间的接触角。然后使用这种性质来估计使用Good-Van OSS-Chaudhury假设的对照粘合剂,老化剂和恢复活力的粘合剂的表面自由能量。还分析了干燥和潮湿条件下沥青骨料系统的粘性和粘合剂能量。本研究中考虑的聚集体是石灰石和花岗岩;这些聚集体具有不同的水分亲和力。数据显示,作为沥青时代,液体(蒸馏水)和沥青表面之间的接触角增加;然而,对于另外两个探针液体(甲酰胺和甘油),没有观察到图案。对于对照粘合剂的表面自由能量,老化粘合剂和具有再融化器的粘合剂,Lifshitz-van der WaAss成分的贡献比来自酸性和碱性组分的贡献远高得多。再融化器似乎有效地改善沥青粘合剂的粘性能量,这表明混合物的水损伤阻力有所改善。通常,基于石灰石的沥青混凝土混合物显示出比带花岗岩的沥青​​混凝土混合物更高的防潮性。 (c)2019年美国土木工程学会。

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  • 来源
    《Journal of materials in civil engineering》 |2019年第7期|04019125.1-04019125.9|共9页
  • 作者单位

    Mem Univ Dept Civil Engn 240 Prince Philip Dr St John NF A1B 3X5 Canada;

    Univ Illinois Dept Civil & Environm Engn 205 N Mathews Ave Urbana IL 61801 USA;

    Arkansas State Univ Dept Civil Engn Jonesboro AR 72467 USA;

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