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Laboratory investigation of moisture susceptibility of long-term saturated warm mix asphalt mixtures

机译:长期饱和温拌沥青混合料水分敏感性的室内研究

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Moisture damage in flexible pavements might cause stripping in asphalt pavements and ultimately result in premature failure. Warm mix asphalt (WMA) technology as a means to decrease the energy consumption and emissions associated with conventional hot mix asphalt production is broadly being used recently. However, the utilisation of the hydrated lime and liquid anti-strip additives in WMA mixtures makes these issues more complicated. The objective of this study was to investigate and evaluate the moisture susceptibility of mixtures containing anti-stripping agents (ASAs) and WMA additives after long-term saturated durations. The experimental design for this study included the utilisations of one binder source (PG 64-22), three ASA additives and control, two WMA additives and hot mix, and three aggregate sources. A total of 36 types of mixtures and 540 specimens were fabricated and tested in this study. The performed properties included indirect tensile strength (ITS), tensile strength ratio, flow and toughness. The results indicated that the aggregate source has an effect on dry ITS and flow values but had no effect on wet ITS, wet flow and toughness values. In addition, hot mixture generally had higher dry and wet ITS values, and there were significant differences in flow and toughness values between hot and warm mixtures. Moreover, the hydrated lime exhibited the best moisture resistance in WMA mixtures; the liquid ASA additives could increase the ITS values of mixtures but exhibited a weak moisture resistance in this study. Furthermore, the storage and saturated duration generally had no effect on ITS values, and statistical analysis results did not show any differences among these mixtures.
机译:柔性路面的水分损坏可能会导致沥青路面剥离,最终导致过早损坏。最近,广泛使用热混合沥青(WMA)技术来减少与常规热混合沥青生产相关的能耗和排放。但是,在WMA混合物中使用熟石灰和液体防剥离添加剂会使这些问题更加复杂。这项研究的目的是研究和评估含有防剥离剂(ASAs)和WMA添加剂的混合物在长期饱和后的水分敏感性。这项研究的实验设计包括利用一种粘合剂源(PG 64-22),三种ASA添加剂和对照,两种WMA添加剂和热混合以及三种骨料来源。在这项研究中,总共制造并测试了36种混合物和540个样品。性能包括间接拉伸强度(ITS),拉伸强度比,流动性和韧性。结果表明,骨料来源对干ITS和流动值有影响,而对湿ITS,湿流动和韧性值没有影响。此外,热混合物通常具有较高的干和湿ITS值,并且热混合物和热混合物之间的流动性和韧性值存在显着差异。此外,熟石灰在WMA混合物中表现出最佳的耐湿性。液体ASA添加剂可以提高混合物的ITS值,但在这项研究中显示出较弱的耐湿性。此外,储存和饱和持续时间通常对ITS值没有影响,统计分析结果没有显示这些混合物之间的任何差异。

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