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首页> 外文期刊>Journal of materials in civil engineering >New Approach to Recycling Asphalt Shingles in Hot-Mix Asphalt
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New Approach to Recycling Asphalt Shingles in Hot-Mix Asphalt

机译:热拌沥青中再生沥青瓦的新方法

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The objective of this study is to introduce a new approach to recycling asphalt shingles in asphalt paving construction in which recycled asphalt shingles (RAS) are ground to ultrafine particle sizes and blended with asphalt binder through a wet process. In the proposed wet process, the ground recycled material is blended with the binder at a high temperature prior to mixing with the aggregates. Two unmodified binders that are classified as PG 64-22 and PG 52-28 were blended with two contrasting sources of RAS at a modification content ranging from 10-40% by weight of the binder. The use of RAS modification through the proposed wet process was successful in the laboratory. Based on the results of the experimental program, the use of RAS modification through the proposed wet process would generally improve or not influence the high temperature grade of the binder, but it may reduce the low temperature grade of the binder. As demonstrated in this study, an optimum shingle content may be identified that will improve the high temperature grade without influencing the low temperature grade of the binder. Using confocal laser-scanning microscopy (CLSM), wax crystals ranging from 4-8 μm in size were successfully detected. However, wax crystals were not detected in the RAS-modified binder, which may indicate that the wax molecules are absorbed by the RAS material. Results of high-pressure gel permeation chromatography (HP-GPC) showed that the proposed wet method of modification produced a slight increase in the high molecular weight (HMW) (>3,000 daltons) content in the prepared blends at higher RAS contents, suggesting that a fraction of the RAS binder contributes to the blend properties.
机译:这项研究的目的是介绍一种在沥青摊铺施工中回收沥青瓦的新方法,其中将回收的沥青瓦(RAS)研磨至超细颗粒尺寸,并通过湿法与沥青粘合剂混合。在所提出的湿法中,在与骨料混合之前,将研磨的再循环材料在高温下与粘合剂共混。将两种分类为PG 64-22和PG 52-28的未改性粘合剂与两种对比的RAS来源混合,改性含量为粘合剂重量的10-40%。通过提议的湿法工艺使用RAS改性在实验室中是成功的。根据实验程序的结果,通过提议的湿法工艺使用RAS改性通常会改善或不影响粘合剂的高温等级,但可能会降低粘合剂的低温等级。如本研究中所示,可以确定最佳的带状瓦含量,该含量将改善高温等级而不会影响粘合剂的低温等级。使用共聚焦激光扫描显微镜(CLSM),成功检测到大小为4-8μm的蜡晶体。但是,在RAS改性的粘合剂中未检测到蜡晶体,这可能表明蜡分子已被RAS材料吸收。高压凝胶渗透色谱法(HP-GPC)的结果表明,拟议的湿法改性方法在较高的RAS含量下,制备的共混物中的高分子量(HMW)(> 3,000道尔顿)含量略有增加,这表明一部分RAS粘合剂有助于混合性能。

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