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Comparative evaluation of moisture susceptibility of modified/foamed asphalt binders combined with different types of aggregates using surface free energy approach

机译:改性/发泡沥青粘合剂的水分敏感性的比较评价结合不同类型的聚集体使用表面自由能量方法

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Moisture damage in asphalt pavement is a major concern for the state and federal highway agencies for many years. The surface free energy (SFE) is demonstrated to be a reliable mechanistic approach for evaluating the moisture-induced damage potential of asphalt mixes. The objective of this study was to use SFE approach to evaluate the effects of foamed/modified asphalt binders and aggregate type on the moisture susceptibility of asphalt mixes. The SFE components (polar and dispersion) of PG 64-22 asphalt binders, modified with 2-4% SBS, 2-4% nanoclay, 2-4% fly ash, 3.5% devulcanized rubber (DVR), or foamed by injecting water, were estimated from contact angle measurement. Also, the SFE components of five types of aggregates, namely limestone, gravel, basalt, granite, and sandstone were obtained from the literature. The energy ratio parameters calculated from the work of cohesion and adhesion were used to estimate the moisture-induced damage potential of various asphalt mixtures. The results showed that the total SFE and work of cohesion of PG 64-22 increased with the addition of SBS, nanoclay, and fly ash while decreased with the use of DVR and foaming process in asphalt binder. Based on the energy ratio parameters, the combination of asphalt binder with different types of aggregates has been recommended with the resistance to moisture-induced damage potential. The results presented herein are expected to assist in selecting appropriate asphalt binder and aggregates with desirable moisture resistance. (C) 2020 Published by Elsevier Ltd.
机译:沥青路面的水分损坏是国家和联邦公路机构多年来的主要关注点。表面自由能(SFE)被证明是一种可靠的机械方法,用于评估沥青混合物的水分诱导的损伤电位。本研究的目的是使用SFE方法来评估发泡/改性沥青粘合剂和骨料类型对沥青混合物的水分敏感性的影响。 PG 64-22沥青粘合剂的SFE组分(极性和分散体),用2-4%SBS,2-4%纳米粘土,2-4%飞灰,3.5%透明橡胶(DVR),或通过注入水发泡,从接触角测量估计。此外,从文献中获得了五种聚集体,即石灰石,砾石,玄武岩,花岗岩和砂岩的SFE组分。从内聚力和粘合性计算的能量比参数用于估计各种沥青混合物的水分诱导的损伤潜力。结果表明,通过在沥青粘合剂中使用DVR和发泡过程,加入SBS,纳米粘土和飞灰,PG 64-22的凝聚力的总SFE和工作量增加。基于能量比参数,建议使用不同类型的聚集体的沥青粘合剂的组合,耐受水分诱导的损伤潜力。预期本文提出的结果有助于选择适当的沥青粘合剂和具有理想的耐湿性的聚集体。 (c)2020由elestvier有限公司发布

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