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Experimental Characterization of Rutting Performance of HMA Designed with Aggregate Gradations According to Superpave and Marshall Methods

机译:根据Superpave和Marshall方法设计的具有聚合渐变的HMA车辙性能的实验表征

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The permanent deformation (rutting) of pavement is a major distress in flexible pavement. It is related to vehicles properties and/or pavement materials and conditions. This article presents an extensive experimental investigation in order to compare between the aggregate gradation according to Superpave and Marshall methods of asphalt concrete mix design on pavement rutting and to examine the sensitivity of rutting resistance to aggregate gradation. A wheel truck machine has been used for measurement of pavement rutting (permanent deformation). The tests were carried out at two controlled different air temperature 55℃ and 25℃. The results obtained showed that the adopting of aggregate gradation procedure of Superpave method of pavement mix design for Marshall method of asphalt concrete mix design can reduce the pavement rutting by about 50%. This achievement may be related to missing of three sieves in aggregate gradation procedure of Marshall method which controls rounded and finer aggregate particles. These sieves provide more continuity for aggregate gradation to ensure filling unnecessary gaps and produce more contact points between the aggregates in Hot Mix Asphalt (HMA). The outputs of the research support modifying Marshall method of asphalt concrete mix design by adopting aggregate gradation proposed in Superpave method. The results of study also showed that the coarser aggregate provided more resistance to pavement rutting.
机译:路面的永久变形(车辙)是柔性路面的主要困扰。它与车辆的性能和/或路面材料及状况有关。本文进行了广泛的实验研究,目的是比较Superpave和Marshall沥青混凝土配合比设计在路面车辙上的骨料级配,并检验耐车辙性对骨料等级的敏感性。轮式卡车机械已用于测量路面车辙(永久变形)。测试是在两种不同的空气温度55℃和25℃下进行的。所得结果表明,采用马斯霍尔法的沥青混凝土配合料设计采用Superpave路面配合料设计的骨料级配工艺可以使路面车辙减少约50%。这一成就可能与控制圆形和较细聚集体颗粒的Marshall方法的聚集级配过程中缺少三个筛网有关。这些筛子为骨料的分级提供了更大的连续性,以确保填充不必要的间隙,并在热拌沥青(HMA)中的骨料之间产生更多的接触点。研究成果通过采用Superpave方法中提出的集料级配来支持修改Marshall方法的沥青混凝土配合比设计。研究结果还表明,粗骨料对路面车辙的抵抗力更大。

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