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Evaluation of performance-based mix design for asphalt mixtures containing Reclaimed Asphalt Pavement (RAP)

机译:评价基于性能的混合料设计,用于再生沥青路面(RAP)的沥青混合料

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In this research, the possibility of producing asphalt mixtures containing Reclaimed Asphalt Pavement (RAP) that perform well from both fatigue and rutting points of view was studied. For this, seven asphalt mixtures with varying RAP percentage and total binder content were produced. All other variables, including the gradation and binder type, were kept constant. To better control for the production variables, the mixtures were produced in the laboratory. Fatigue and rutting properties of the mixtures were evaluated using the Simplified Viscoelastic Continuum Damage (S-VECD) model and Triaxial Stress Sweep (TSS) test, respectively. Next, FIexPAVE (TM) software was utilized to predict the long-term fatigue and rutting behavior of the study mixtures. Fatigue and rutting predictions were then assessed simultaneously to determine the suggested performance-based optimum binder contents. The results showed that increasing the RAP content and/or reducing the binder content deteriorates the fatigue resistance while improves the rutting performance. Also, the suggested performance-based optimum binder content slightly increased as the RAP percentage increased, but it was still below the optimum binder content suggested by the Superpave volumetric mix design for the RAP percentages up to 40 percent. The study indicated that it is possible to produce an economical well-performing asphalt mixture by balancing fatigue and rutting performances. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了从疲劳和车辙的角度出发,生产含有再生沥青路面(RAP)的沥青混合料的可能性。为此,生产了7种具有不同RAP百分比和总粘合剂含量的沥青混合物。所有其他变量,包括灰度和粘合剂类型,均保持不变。为了更好地控制生产变量,在实验室中生产了混合物。分别使用简化的粘弹性连续体损伤(S-VECD)模型和三轴应力扫描(TSS)试验评估了混合物的疲劳和车辙性能。接下来,利用FIexPAVE(TM)软件预测研究混合物的长期疲劳和车辙行为。然后同时评估疲劳和车辙预测,以确定建议的基于性能的最佳粘合剂含量。结果表明,增加RAP含量和/或降低粘合剂含量会降低耐疲劳性,同时改善车辙性能。同样,建议的基于性能的最佳粘合剂含量随RAP百分比的增加而略有增加,但仍低于Superpave体积混合料设计建议的RAP百分比高达40%的最佳粘合剂含量。研究表明,通过平衡疲劳和车辙性能,可以生产经济,性能良好的沥青混合料。 (C)2019 Elsevier Ltd.保留所有权利。

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