压实能对使用再生沥青路面 (RAP) 和再生添加剂的热拌沥青机械性能的影响

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Pedro Limón-Covarrubias, L. Ochoa-Ambriz, David Ávalos-Cueva, José Roberto Galaviz-González, M. Perez-Rea, M. A. Gallardo-Sánchez
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引用次数: 0

摘要

由于再生沥青路面(RAP)在经济和环境方面的优势,墨西哥沥青摊铺行业对使用再生沥青路面生产热拌沥青(HMA)越来越感兴趣。然而,将 RAP 纳入 HMA 混合料设计的方法并不明确,这阻碍了 RAP 的使用。本文研究了压实能量对再生和非再生再生 HMA 混合料的影响。使用 Superpave 回旋压实机确定最佳粘结剂含量,并在柔性和刚度之间找到平衡点,以满足抗开裂和抗车辙的要求。按照混合图,对各种再生 HMA 混合物进行了不同的压实能级(75、100 和 125 转)、不同的 RAP 含量(15%、30% 和 45%)以及不同剂量(10%、15% 和 36%)的再生添加剂 Maro-1000®。性能评估采用了汉堡车轮跟踪试验(HWTT)和断裂能柔性指数试验(I-FIT)。结果表明,含有 RAP、再生外加剂和不同压实能的混合料表现出良好的机械性能。然而,含有 15% RAP 的再生和未再生混合料的性能与传统混合料相当。它们将刚度提高了 46%,同时将柔度指数降低到 25%,在抗车辙能力和易开裂性之间实现了平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Compaction Energy on the Mechanical Performance of Hot Mix Asphalt with a Reclaimed Asphalt Pavement (RAP) and Rejuvenating Additive
The Mexican asphalt paving industry is increasingly interested in using reclaimed asphalt pavement (RAP) to produce hot mix asphalt (HMA) due to its economic and environmental advantages. However, an ill-defined methodology for integrating RAP into the HMA mix design has hindered its use. This paper investigates how compaction energy affects both rejuvenated and non-rejuvenated recycled HMA mixtures. A Superpave gyratory compactor was used to determine the optimal binder content and find a balance between flexibility and stiffness that meets cracking and rutting resistance requirements. Various recycled HMA mixtures were subjected to different compaction energy levels (75, 100, and 125 gyros), different RAP contents (15%, 30%, and 45%), and various dosages (10%, 15%, and 36%) of the rejuvenating additive Maro-1000®, following the blending chart. Performance was evaluated using the Hamburg wheel tracking test (HWTT) and the fracture energy flexibility index test (I-FIT). The results demonstrate that mixtures with RAP, a rejuvenating admixture, and varying compaction energies exhibit favorable mechanical behavior. However, both rejuvenated and non-rejuvenated mixes with 15% RAP showed performance comparable to conventional mixtures. They improved stiffness by up to 46% while reducing the flexibility index to 25%, striking a balanced equilibrium between rutting resistance and cracking susceptibility.
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
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