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Characterization and prediction of rutting resistance of rock asphalt mixture under the coupling effect of water and high-temperature

机译:水和高温耦合效应下岩石沥青混合料轨道阻力的特征与预测

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摘要

In recent years, the use of rock asphalt as modifier has attracted research interests because of the advantage in improving the thermal stability of asphalt mixture, which is conducive to the rutting resistance of asphalt pavement in high-temperature regions. However, due to a large rainfall in most of high-temperature regions (e.g., China southeastern coastal areas and south China areas), the high-temperature effects and water effects explain interdependently the rutting decay of rock asphalt mixture, which is neglected in existing studies. It is necessary to investigate the coupling effect of high-temperature and water on the rutting resistance of rock asphalt mixture. In response to the above questions, water saturated characteristics of rock asphalt mixture at high-temperature are investigated to determine the water absorption conditions via a new index, namely the water saturated ratio. Moreover, a total of sixty groups of modified wheel tracking tests for rock asphalt mixtures are implemented to reveal the coupling effect of water and high-temperature on the rutting resistance with the change of water conditions, temperatures and rock asphalt dosages. The temperature and water play an important role in the rutting resistance of rock asphalt mixture. Finally, a Bayesian approach for modelling the dynamic stability is also established to predict the rutting resistance of rock asphalt mixture and evaluate the effect degree of different factors. (C) 2020 Elsevier Ltd. All rights reserved.
机译:近年来,由于改善沥青混合料热稳定性的优势,使用岩石沥青作为改进剂的使用,这有利于高温区域中沥青路面的沥青路面的车辙抗性。然而,由于大多数高温区域(例如,中国东南沿海地区和华南地区)的降雨量大,高温效应和水效均说明相互依存的岩石沥青混合料的车辙衰变,在现有的情况下被忽视学习。有必要探讨高温和水对岩石沥青混合料管辙抗性的耦合效应。响应于上述问题,研究了高温下岩石沥青混合物的水饱和特性,以通过新指标确定吸水条件,即水饱和比。此外,实施了岩石沥青混合物的60组改性车轮跟踪试验,以揭示水和高温对水条件,温度和岩石沥青剂量变化的耦合效应。温度和水在岩石沥青混合料的车辙抗性中起重要作用。最后,还建立了一种用于建模动态稳定性的贝叶斯方法,以预测岩石沥青混合料的车辙抗性,评价不同因素的效果程度。 (c)2020 elestvier有限公司保留所有权利。

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