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Can flexible pavements' waste (RAP) be utilized in cement concrete pavements? - A critical review

机译:柔性路面浪费(RAP)可以在水泥混凝土路面中使用吗? - 批判性评审

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摘要

Recycling of flexible pavement leads to the accumulation of an enormous quantity of Reclaimed Asphalt Pavement (RAP) aggregates which are generally dumped legally/illegally in the nearby vicinities causing several challenges to the agencies. Utilization of these aggregates in cement concrete pavements seem to be a novelistic approach and could facilitate with many socio-economic-environmental benefits. However, its inclusions may negatively affect structural and functional performance as well. Therefore, this paper presents an extensive and critical review of the suitability of RAP for the production of concrete mixes along with identifying the various gaps that need to be bridged to induce sustainability in pavements. The schematic flow of this paper is as follows: firstly, the RAP aggregates were characterized, followed by the fresh state RAP-concrete properties, and lastly, the mechanical and durability properties were investigated. The literature review depicted that the RAP aggregates are inferior to natural aggregates but it may not be a big concern from the point of fresh state properties. The presence of asphalt film and agglomerated particles in RAP were noted to be the primary factors responsible for the reduction in the overall strength properties; however, coarse and fine RAP (individually) up to 50% could be utilized since the minimum strength benchmarks could be met. In terms of durability, coarse RAP up to 50% may provide adequate chloride-ion penetration resistance and freeze-thaw durability. Benefits such as enhanced toughness and workability were positively identified by the incorporation of RAP, whereas, porous microstructure could be expected, which may provide passage to aggressive ions from nearby environments resulting in significant deterioration of the concrete. Including supplementary cementitious admixtures could not improve the mechanical performance due to the asphalt cohesion failure associated with these hybrid mixes, but durability performance could be enhanced slightly. On the other hand, surface treatment methods could improve the bonding potential between RAP and mortar paste. This review is expected to address several key issues on the utilization of RAP in cement concrete pavements and encourages academicians and highway agencies to form a framework for effective utilization of RAP for sustainable pavement systems. (C) 2020 Elsevier Ltd. All rights reserved.
机译:柔性路面的回收导致巨大数量的再生沥青路面(RAP)聚集体在附近的附近的法律/非法倾销造成几种挑战的机构。这些聚集体在水泥混凝土路面中的利用似乎是一种新颖的方法,可以促进许多社会经济环境的效益。然而,它的夹杂物可能对结构和功能性能产生负面影响。因此,本文对RAP的适用性进行了广泛的综述,用于制作混凝土混合物以及识别需要桥接以引起人行道可持续性的各种空隙。本文的示意性流动如下:首先,表征RAP聚集体,其次是新的状态RAP混凝土性能,最后,研究了机械和耐久性。文献综述描绘了RAP骨料不如自然聚集体,但它可能不是从新鲜状态特性的重点产生的重要问题。 RAP中存在沥青薄膜和附聚颗粒的存在,是负责整体强度特性降低的主要因素;然而,由于可以满足最小的强度基准,因此可以使用高达50%的粗糙和精细的Rap(单独)。在耐久性方面,粗糙的Rap可提供足够的氯离子渗透性和冻融耐久性。通过掺入RAP的持续鉴定诸如增强的韧性和可加工性等益处,而可以预期多孔微观结构,这可以提供来自附近环境的侵蚀性离子的通道导致混凝土的显着劣化。包括补充水泥的混合物不能提高由于与这些杂种混合物相关的沥青内聚失效而导致的机械性能,但可以略微增强耐用性性能。另一方面,表面处理方法可以改善RAP和砂浆浆料之间的粘接电位。该审查预计将解决水泥混凝土路面中饶纵型饶州的若干关键问题,并鼓励院士和公路机构为有效利用RAP为可持续路面系统的框架。 (c)2020 elestvier有限公司保留所有权利。

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