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Laboratory Study to Evaluate the Influence of Reclaimed Asphalt Content on Performance of Recycled Porous Asphalt

机译:评价再生沥青含量对再生多孔沥青性能影响的室内研究

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摘要

Road-pavement maintenance and rehabilitation are more frequently performed on porous asphalt (PA) surface layers because of their inherent low durability. Such activities lead to the production of a considerable amount of reclaimed asphalt (RA), mainly from PA layers and from the heavy use of virgin non-renewable natural resources, because of the fact that the use of RA is not usually allowed in PA. In this sense, the use of milled materials from old PA wearing courses in new PA layers promotes an important cycle of re-use that should be encouraged. The experimental study aims to investigate the performance of recycled PA mixtures prepared by partly substituting virgin aggregates with selected coarse RA from a milled PA wearing course. A reference PA mixture (without RA) and six recycled PA mixtures prepared with two amounts of RA (20 % and 25 %) and three total binder contents (5.25 %, 5.50 %, and 5.75 %) were investigated in terms of compactability, durability, and water resistance. In this sense, indirect tensile strength (ITS) tests, particle loss (Cantabro) tests, semicircular bending (SCB) tests, and repeated indirect tensile tests were carried out in both dry and wet conditions. Moreover, compactability properties of the reference PA mixture and the recycled PA mixtures were compared. Results showed that recycled PA mixtures with 20 % and 25 % of RA can perform as well as the reference PA mixture in terms of moisture resistance and durability if an accurate mix design is performed. The optimum total binder content was found to increase as the amount of RA increases, because of the fact that a prominent part of the aged binder acts as "black aggregate." Finally, on the basis of a performance-based equivalence principle, a reliable approach for a practical method able to predict the amount of "re-activated" binder within the RA is proposed.
机译:由于其固有的低耐久性,因此经常在多孔沥青(PA)表面层上进行路面维护和修复。此类活动导致大量的再生沥青(RA)的产生,主要是从PA层以及大量使用原始的不可再生自然资源中产生的,这是因为通常不允许在PA中使用RA。从这个意义上讲,在新的PA层中使用旧的PA磨损过程中的铣削材料将促进重要的重复使用周期,应予以鼓励。该实验研究旨在研究通过用研磨过的PA磨损过程中的部分粗RA替代原始骨料而制备的PA再生混合物的性能。在压实性,耐久性方面,研究了参考PA混合物(不含RA)和六种由两种量的RA(20%和25%)和三种粘合剂总量(5.25%,5.50%和5.75%)制备的再生PA混合物。 ,以及耐水性。从这个意义上说,在干燥和潮湿条件下均进行了间接拉伸强度(ITS)测试,颗粒损失(Cantabro)测试,半圆弯曲(SCB)测试以及重复的间接拉伸测试。此外,比较了参比PA混合物和再循环PA混合物的压实性。结果表明,如果进行精确的混合设计,则具有20%和25%RA的再生PA混合物在耐湿性和耐用性方面可以达到与参考PA混合物相同的性能。发现最佳总粘合剂含量随RA含量的增加而增加,这是因为老化粘合剂的显着部分起“黑色聚集体”的作用。最后,基于基于性能的等效原理,提出了一种实用方法的可靠方法,该方法能够预测RA中“重新活化的”结合剂的量。

著录项

  • 来源
    《Journal of testing and evaluation》 |2015年第6期|1308-1322|共15页
  • 作者单位

    Dept of Civil and Building Engineering and Architecture, Universita Politecnica delle Marche, Via Brecce Bianche, 60131 Ancona, Italy;

    Dept. of Civil and Building Engineering and Architecture, Universita Politecnica delle Marche, Via Brecce Bianche, 60131 Ancona, Italy;

    Dept. of Civil and Building Engineering and Architecture, Universita Politecnica delle Marche, Via Brecce Bianche, 60131 Ancona, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hot recycling; porous asphalt; durability; fracture resistance; water damage; compactability; working binder;

    机译:热回收;多孔沥青耐久性抗断裂性水损害;压实性工作粘合剂;

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