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Rutting performance of asphalt-rubber gap-graded mixtures: evaluation through statistical and reliability approaches

机译:沥青 - 橡胶间隙分级混合物的车辙性能:通过统计和可靠性方法进行评估

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摘要

The objective of this study was to evaluate the rutting performance of asphalt-rubber gap-graded (AR-Gap) mixtures using wheel tracking tests and further explain the permanent deformation characteristics of those special materials through statistical and reliability approaches. A total of 28 asphalt mixtures covering over 200,000 data points were utilised, including: 27 AR-Gap mixtures and one conventional dense-graded (DG) mixture. Statistical analysis confirmed the significance of binder type, aggregate gradation, and binder content on the superior rutting resistance of AR-Gap mixtures than the DG mix. Selection of the best combination of all the three variables resulted in a significantly rut-resistant AR-Gap mixture. Reliability analysis on mixtures' rutting performance was accomplished using Weibull distribution function. Weibull model parameters and derived factors aided in a better interpretation of the rutting performance of AR-Gap mixtures. Overall, it is envisaged that this research study would further the state-of-the-art in designing rut-resistant asphalt-rubber gap-graded mixtures.
机译:本研究的目的是评估使用轮式跟踪试验的沥青 - 橡胶间隙渐变(AR-GAP)混合物的车辙性能,并通过统计和可靠性方法进一步解释这些特殊材料的永久变形特性。共使用28种含有超过200,000个数据点的沥青混合物,包括:27个Ar-Gap混合物和一种常规的致密梯度(DG)混合物。统计学分析证实了粘合剂型,聚集级别和粘合剂含量对比DG混合的高射流抗性对AR隙混合物的显着性抗性的重要性。选择所有三个变量的最佳组合导致耐抗抗轨道间隙混合物。使用Weibull分布函数完成了混合物的可靠性分析。 Weibull模型参数和衍生因子辅助辅助Ar-Gap混合物的车辙性能更好地解释。总的来说,预计这项研究将进一步设计RUT抗性沥青 - 橡胶间隙分级混合物的最先进。

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