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Thermomechanical characterization of asphalt mixtures modified with high contents of asphalt shingle modifier (ASM®) and reclaimed asphalt pavement (RAP)

机译:用高含量的沥青瓦改性剂(ASM®)和再生沥青路面(RAP)改性的沥青混合物的热机械特性

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The reuse of reclaimed asphalt pavements (RAP) in asphalt mixes at high substitution rates has become a major economical and environmental necessity. However, this reuse of RAP is technically limited by the impact of RAP on the behavior of the mixes and industrially limited by the incorporation capacity of RAP in plants. On the other hand, several studies and industrial experiences showed that the reuse of manufacturer-waste asphalt roofing shingles as a modifier in asphalt mixes enhances the behavior of the asphalt mixes at different levels (fatigue, rutting and stiffness) without having a negative impact on low-temperature cracking when an appropriate asphalt mix design is used. The objective of this paper is to assess the behavior of asphalt mixes using a combination of RAP and asphalt shingle modifier (ASM®) together at high substitution rates. An experimental program was set up and carried out at the Lafarge Research Center and the French Ecole Nationale des Travaux Publics de l’Etat. A reference mix, and other mixes, modified with different percentages of RAP and ASM® were evaluated. The experimental results showed that the mixes with up to 15 % of RAP and 5 % of RAS behave well compared to the reference mix. Beyond these limits, low-temperature cracking behavior could be altered. Certain technical solutions were then evaluated and are presented in this paper.
机译:以高替代率在沥青混合料中再利用再生沥青路面(RAP)已成为主要的经济和环境需求。但是,RAP的这种重复使用在技术上受到RAP对混合物行为的影响的限制,并且在工业上受到RAP在植物中的掺入能力的限制。另一方面,一些研究和工业经验表明,将制造商浪费的沥青屋面瓦作为沥青混合料的改性剂再利用,可以提高沥青混合料在不同水平(疲劳,车辙和刚度)的行为,而不会对沥青混合料产生负面影响。使用适当的沥青混合料设计时发生低温开裂。本文的目的是使用RAP和沥青瓦改性剂(ASM®)的组合,以高取代率评估沥青混合料的性能。建立了一个实验程序,并在拉法基研究中心和法国国立特拉维克国民高等专科学校进行。评价了参考混合物和其他混合物,并用不同百分比的RAP和ASM®进行了改性。实验结果表明,与参考混合物相比,具有15%RAP和5%RAS的混合物表现良好。超出这些限制,可以改变低温开裂行为。然后评估了某些技术解决方案,并在本文中进行介绍。

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