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Mechanical Properties of High-Modulus Asphalt Concrete Containing Recycled Asphalt Pavement: A Parametric Study

机译:含有再生沥青路面的高模量沥青混凝土的力学性能:参数研究

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摘要

The recycling of asphalt pavement is a widespread practice around the world owing to its significant social, economic, and environmental advantages. High-modulus asphalt concrete (HMAC) possesses excellent rutting resistance and has received increased attention around the world. While many studies have been conducted on the performance of hot mix asphalt (HMA) containing reclaimed asphalt pavement (RAP), gaps remain in knowledge about producing HMAC containing RAP. This paper aims to investigate the performance of HMAC containing high percentages of RAP by conducting parametric laboratory tests. Design factors, including aggregate gradation, asphalt binder content, recycling agent dosage, and asphalt binder type, are evaluated in the laboratory. Tests conducted include dynamic modulus test, Marshall immersion test, modified Lottman test, three-point bending test, and rutting test. A modified regeneration method with adjusted mixing sequence is adopted to produce a mixture. It was found that low-penetration virgin-grade asphalt binder could produce good-quality HMA, though low-temperature cracking resistance remains a problem. Adjusting aggregate gradation and increasing asphalt binder content could improve its overall performance but not low-temperature cracking resistance, Increasing the dosage of aromatic extract recycling agent could improve HMA's low-temperature cracking resistance, and a maximum dosage of 6% was proposed. Increasing the penetration grade of virgin asphalt binder with the addition of high-modulus additive could significantly improve its low-temperature and overall performance.
机译:由于其显着的社会,经济和环境优势,沥青路面的再循环是世界各地的普遍实践。高模量沥青混凝土(HMAC)具有优异的抵抗抵抗力,并在全球增加了更多的关注。虽然已经对含有再生沥青路面(RAP)的热混合沥青(HMA)的性能进行了许多研究,但仍然存在关于含有RAP的HMAC的知识。本文旨在通过进行参数化实验室检验来研究HMAC含有高百分比的HMAC的性能。在实验室中评估了设计因素,包括聚集级级,沥青粘合剂含量,再循环剂剂量和沥青粘合剂型。进行的测试包括动态模量试验,Marshall浸渍试验,改进的乐园测试,三点弯曲试验和车辙试验。采用具有调节混合序列的改性再生方法来产生混合物。结果发现,低渗透的原始级沥青粘合剂可以产生优质的HMA,但低温开裂阻力仍然存在问题。调整骨料级级和增加沥青粘合剂含量可以提高其整体性能但不是低温裂解抗性,增加芳族提取物回收剂的剂量可以改善HMA的低温开裂性,并提出最大剂量为6%。增加维珍沥青粘合剂的渗透等级随着添加高模量添加剂,可以显着提高其低温和整体性能。

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