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Skid Resistance Performance against Temperature Change of Hot-Mix Recycled Asphalt Pavement with Added Crumb Rubber

机译:抗胶囊橡胶热混合再生沥青路面温度变化的防滑性能

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Skid resistance is the result of friction between the road surface and vehicle tires. Vehicle safety is affected by the skid resistance value, and increased road surface friction can be achieved at a high slip resistance. In the present study, crumb rubber (CR) and Refined Buton Asphalt (RBA) blend is examined as additives for recycled asphalt mixtures, known as reclaimed asphalt pavement (RAP) in gap-graded aggregates. The percentages of CR used were 0% and 1.0%, with two sample types namely before and after being crossed by the vehicle wheel. Skid resistance testing was carried out using a British pendulum tester at temperatures of 25°C, 30°C, 35°C, 40~°C, 45~°C, and 50~°C, which are the most common road surface temperatures in Indonesia. The test values were derived from the British pendulum number and skid number (SN). The effect of the CR on the SN value is not significant, with an increase in the SN value at a temperature of 45 ~°C, which then decreases at a higher temperature. The addition of CR affects the SN value only at low temperatures. This is consistent with the performance of the gap-graded RAP mixture, particularly in terms of the Marshall stability compared to the asphalt mixture without CR. The RAP mixture with the gap-graded aggregate and the addition of CR exhibits no impact on the SN value of the wheel trajectory resistance owing to temperature changes.
机译:防滑是路面与车辆轮胎之间摩擦的结果。车辆安全受到防滑电阻值的影响,并且可以以高防滑性实现增加的道路表面摩擦。在本研究中,将Crumb橡胶(Cr)和精制的Buton沥青(RBA)混合物被检查为再生沥青混合物的添加剂,称为间隙分级聚集体中的再生沥青路面(RAP)。所用的CR的百分比为0%和1.0%,其中由车轮交叉之前和之后的两个样品类型。在25°C,30°C,35°C,40°C,45℃,45°C和50°C的温度下使用英国摆锤测试仪进行耐抗性测试。这是最常见的道路表面温度在印度尼西亚。测试值源自英国摆锤号码和SPLID号(SN)。 Cr对Sn值的影响不显着,在45〜℃的温度下的Sn值增加,然后在更高的温度下降低。添加CR仅在低温下影响SN值。这与间隙分级说唱混合物的性能一致,特别是与没有Cr的沥青混合物相比的马歇尔稳定性。随着温度变化,具有间隙分级骨料的RAP混合物与间隙分级骨料和添加CR的加入对车轮轨迹阻力的SN值没有影响。

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