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首页> 外文期刊>Engineering journal >Influences of Particle Size and Content on Deformation Resistance of Crumb Rubber Modified Asphalt using Dry Process Mix
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Influences of Particle Size and Content on Deformation Resistance of Crumb Rubber Modified Asphalt using Dry Process Mix

机译:粒度和含量对干法混合料对胶粒改性沥青的抗变形性的影响

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Crumb Rubber Modified (CRM) is one of techniques for improving asphalt mixture performance. There are two alternatives for applying crumb rubber (CR) to Hot Mix Asphalt (HMA), “Wet” and “Dry”. In the wet process, CR is added into hot asphalt cement in a factory, then CR-asphalt cement infusion is transported to a HMA plant for blending with hot aggregates. In the Dry process, CR is blended with hot aggregates and asphalt cement directly in a HMA plant. Although the dry process is considered less efficient due to lower infusion with asphalt cement, it offers some advantages that CR content can be independently controlled and higher amount of CR can be added into the HMA. This study focuses on dry process that uses CR modification by replacing some aggregate particles in mixture. HMA is blended with CR in 3 different sizes: 1.18 - 2.36 mm, 0.6 - 1.18 mm and smaller than 0.6 mm. The x-sized CR is added to the mixture in substitution of the same x-sized aggregate particles at the amount of 1% and 2% by the whole aggregate volume in the mixture. The mixtures’ performance in deformation resistance is represented by Wheel Tracking Slope (WTS). The results of Wheel Tracking tests on the specimens are enlightening. The mixture with CR particles smaller than 0.6mm shows excellent performance on deformation resistance, indicated by significantly lower WTS than others. Secondly, mixtures with higher amounts of CR have better performance than those with lower amounts. The mixture with 2% CR with smaller than 0.6 mm provides optimal performance at 2.1 times better than conventional HMA.
机译:碎橡胶改性(CRM)是改善沥青混合料性能的技术之一。有两种方法可以将碎橡胶(CR)涂到热拌沥青(HMA)上:“湿”和“干”。在湿法工艺中,将CR添加到工厂的热沥青水泥中,然后将CR沥青水泥注入的水泥输送到HMA工厂与热骨料混合。在干法工艺中,CR直接在HMA工厂中与热骨料和沥青水泥混合。尽管由于较少地注入沥青水泥而使干法效率低下,但它具有一些优势,可以独立控制CR含量,并且可以向HMA中添加更多的CR。这项研究的重点是通过替代混合物中的一些聚集颗粒而使用CR改性的干法。 HMA和CR以3种不同尺寸混合:1.18-2.36 mm,0.6-1.18 mm和小于0.6 mm。将x尺寸的CR以混合物中总聚集体积的1%和2%的量代替相同的x尺寸的聚集颗粒添加至混合物中。混合物的抗变形性能由车轮跟踪斜率(WTS)表示。对样本进行车轮跟踪测试的结果令人鼓舞。 CR颗粒小于0.6mm的混合物表现出优异的抗变形性能,其WTS明显低于其他。其次,CR含量较高的混合物的性能要优于CR含量较低的混合物。具有2%CR且小于0.6 mm的混合物可提供最佳性能,是传统HMA的2.1倍。

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