首页> 外文期刊>Journal of materials in civil engineering >Laboratory Performance of Asphalt Mixtures Containing Recycled Asphalt Shingles, Reclaimed Asphalt Pavement, and Recycling Agents
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Laboratory Performance of Asphalt Mixtures Containing Recycled Asphalt Shingles, Reclaimed Asphalt Pavement, and Recycling Agents

机译:包含再生沥青瓦,再生沥青路面和再生剂的沥青混合料的实验室性能

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摘要

As the price of liquid asphalt continuously climbs, methods are being sought to decrease material costs without compromising material or pavement performance while having a positive influence on sustainability. One potential method is the use of recycled materials, such as recycled asphalt shingles (RAS) and reclaimed asphalt pavements (RAP). The objective of this study was to characterize the laboratory performance of conventional asphalt mixtures and mixtures containing RAP and/or RAS, with and without recycling agents (RAs). The RAS type utilized in this study was postconsumer waste shingles. Six 12.5-mm asphalt mixtures were designed to meet certain criteria with four of the six mixtures containing no RAs and two mixtures containing RAs [Hydrogreen and soft asphalt binder (Asphalt & Wax Innovations, Pass Christian, Mississippi)]. A suite of laboratory tests was used to ascertain the mechanistic behavior of the mixtures evaluated against major distresses. Laboratory testing evaluated the high-, intermediate-, and low-temperature properties of laboratory produced mixtures using the Hamburg loaded-wheel tester, the semicircular bending test, and the thermal stress restrained specimen test in addition to the dynamic modulus test. Results indicated that the use of RAs improved the blending between aged and virgin binders, which adversely affected the intermediate- and low-temperature performance of the mixture. With the increase in availability of aged binder in the mix, the inclusion of RAP and/or RAS with and without RAs showed an improvement in rutting performance.
机译:随着液体沥青价格的不断攀升,人们正在寻求在不影响材料或路面性能的同时降低材料成本,同时又对可持续性产生积极影响的方法。一种潜在的方法是使用再生材料,例如再生沥青瓦(RAS)和再生沥青路面(RAP)。这项研究的目的是表征常规沥青混合料和含有RAP和/或RAS的混合料在有无回收剂(RA)的情况下的实验室性能。在这项研究中使用的RAS类型是消费后的垃圾木瓦。设计了六种12.5毫米沥青混合料,以满足某些标准,其中六种不含RA的混合物中的四种和两种含有RA的混合物(氢绿和软沥青粘合剂(沥青和蜡创新,Pass Christian,密西西比州))。使用了一套实验室测试来确定所评估的混合物对主要危险的力学行为。除动态模量测试外,实验室测试还使用汉堡式负载轮测试仪,半圆弯曲测试和热应力约束试样测试对实验室生产的混合物的高温,中温和低温性能进行了评估。结果表明,RA的使用改善了老化粘合剂和原始粘合剂之间的混合,从而不利地影响了混合物的中低温性能。随着混合物中陈化粘合剂利用率的提高,含有和不含RA的RAP和/或RAS显示出车辙性能的改善。

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