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Impact of High Recycled Mixes on HMA Overlay Crack Development Rate

机译:高再生混合物对HMA覆盖裂纹发展速度的影响

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Illinois has many years of experience using various reclaimed materials in highway construction, and in recent years, recycled asphalt shingles (RAS) have been adopted for use in hot-mix asphalt (HMA), along with much higher amounts of reclaimed asphalt pavement (RAP). These reclaimed asphalt materials usually contain aged asphalt binders, which may increase the mix brittleness and hence, pose a challenge for maintaining a flexible pavement and ensuring good performance. To counter these hard asphalt binders, softer asphalts are incorporated into the HMA. The goal is for the final mix to provide acceptable mix properties for the life of the pavement. To determine the impact of recycled materials on pavement performance, this study monitored nine field projects in terms of the testing, construction, and performance of surface mixes that have a variety of asphalt binder replacement (ABR) levels from RAP and RAS which used different virgin asphalt binder grades. Simple performance tests (Hamburg wheel tracking test and the Illinois flexibility index test (I-FIT)) were used to evaluate the mix designs. Flexibility index (FI) from the 1-FTT showed good correlation with field crack development, especially after first year performance of the mix. Early-age field performance showed that placing the HMA overlay directly over existing bare concrete pavement or milling off all the HMA and placing the new overlay on concrete pavement results in higher extents of cracking in early age than the sections that left an HMA layer in place. Regardless of which mix type is designed and what material sources are used, the performance of the mix should be evaluated to ensure it has sufficient flexibility to resist cracking before the mix is used in road construction. This allows owners and contractors to use low-cost reclaimed and recycled materials to the extent possible without negatively impacting pavement performance.
机译:伊利诺伊州拥有多年在公路建设中使用各种再生材料的经验,近年来,再生沥青瓦(RAS)已被用于热拌沥青(HMA),以及大量的再生沥青路面(RAP)。 )。这些再生的沥青材料通常包含老化的沥青粘合剂,这可能会增加混合料的脆性,因此对保持柔性路面和确保良好的性能提出了挑战。为了抵抗这些硬质沥青粘合剂,将较软的沥青掺入HMA中。目的是使最终混合料在路面的使用寿命内提供可接受的混合料性能。为了确定再生材料对路面性能的影响,本研究监测了9个现场项目的测试,施工和性能,这些表面混合物具有多种RAP和RAS沥青混合料替代(ABR)含量,而RAP和RAS使用了不同的原始材料。沥青粘合剂等级。简单的性能测试(汉堡车轮跟踪测试和伊利诺伊州柔韧性指数测试(I-FIT))用于评估混合料设计。 1-FTT的柔韧性指数(FI)与现场裂纹的发展具有良好的相关性,尤其是在混合物的第一年性能之后。早期的现场性能表明,将HMA覆盖层直接放置在现有裸露的混凝土路面上或将所有HMA铣掉,然后将新覆盖层放置在混凝土路面上,比将HMA层保留在适当位置的断面在早期产生更高程度的开裂。无论设计哪种混合料类型以及使用哪种材料来源,都应评估混合料的性能,以确保在将混合料用于道路施工之前,它具有足够的柔韧性来抵抗开裂。这使业主和承包商可以在不对路面性能造成负面影响的情况下,尽可能地使用低成本的再生和再生材料。

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