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Characteristics of Water-Foamed Asphalt Mixture under Multiple Freeze-Thaw Cycles: Laboratory Evaluation

机译:多次冻融循环下水发泡沥青混合料的特性:实验室评估

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A major concern with the application of water-foamed asphalt mixtures is the possible performance degradation caused by the presence of inclusion water during production. Inclusion water left in the asphalt mixture after compaction affects the performance of the asphalt mixture. The objectives of this study are to investigate the impact of different foaming conditions on the performance of water-foamed asphalt mixtures prepared using oven-dried aggregates, examine the freeze-thaw resistance of water-foamed asphalt mixtures, and assess the water-foamed asphalt mixture damage level after multiple freeze-thaw cycles through an ultrasonic direct test. The samples for this study were prepared in the laboratory based on the method of Superpave mix design. The control groups were mixed and compacted at 135 degrees C and 148 degrees C, respectively. The water-foamed asphalt binders were prepared at different foaming temperatures, i.e.,120 degrees C and 135 degrees C, and the amount of water agent used in this process was 0.0%-2.0% by mass of asphalt binder. The water-foamed asphalt samples were mixed at various foaming temperatures but compacted at 135 degrees C. Based on the laboratory test results, the foaming temperature and the inclusion water from the foaming process significantly affected the air void and the tensile strength of the asphalt mixture and the void in the mineral aggregate. The freeze-thaw cycle accelerated the destruction of the internal structure of the asphalt mixture and resulted in an increase in porosity and decrease in cohesive strength between the asphalt binder and aggregate. The ultrasonic direct test method was found to be a feasible approach to assessing the potential damage in water-foamed asphalt mixtures.
机译:使用水发泡沥青混合物的主要问题是在生产过程中可能由于夹杂水的存在而导致性能下降。压实后残留在沥青混合物中的夹杂水会影响沥青混合物的性能。这项研究的目的是研究不同发泡条件对使用烤箱干燥的骨料制备的水发泡沥青混合物的性能的影响,检查水发泡沥青混合物的抗冻融性,以及评估水发泡沥青通过超声直接测试,经过多次冻融循环后,混合物损坏程度。本研究的样品是在实验室根据Superpave混合料设计方法制备的。对照组分别在135℃和148℃下混合和压实。在不同的发泡温度,即120℃和135℃下制备水发泡的沥青粘合剂,在该过程中使用的水剂的量为沥青粘合剂的质量的0.0%-2.0%。将水发泡的沥青样品在各种发泡温度下混合,但在135摄氏度下压实。根据实验室测试结果,发泡温度和发泡过程中的夹杂水显着影响了沥青混合物的空隙和拉伸强度和矿物骨料中的空隙。冻融循环加速了沥青混合物内部结构的破坏,并导致孔隙率的增加和沥青粘合剂与骨料之间的内聚强度的降低。超声直接测试方法被认为是评估水发泡沥青混合物潜在损害的可行方法。

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