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Potential use of reclaimed asphalt pavement and recycled concrete aggregate in base/subbase layers of flexible pavements

机译:柔性路面基层/基层可能使用再生沥青路面和再生混凝土骨料

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In current road and pavement engineering practices, the lack of fresh natural aggregate (granular material) supplies with increasing processing costs have led to use various reclaimed recycled materials from old structures as a source of construction materials. Reclaimed Asphalt Pavement (RAP), and Recycled Concrete Aggregate (RCA) have been used as aggregates for pavement construction for some time. This study is focused on the characterization of blended materials containing 50% and 75% of RAP with fresh granular materials and RCA to evaluate whether they are suitable for granular base/subbase layers of flexible pavements. A series of laboratory tests was performed to determine the resilient modulus (M-R) and the constrained modulus (M-c) for both fresh granular materials and their blends. Statistically, the notable increase was found in the M-R values of the blended samples containing 75% RAP material and 25% fresh granular, particularly at higher levels of bulk stresses. It was also found that the accumulative strains during cyclic loading generally increase with an increase in the percentage of RAP contents in the blended samples. M-c test results show an increasing trend with the increasing level of axial stress, however, M-c value decreases with increasing percentage of the RAP content. Never-the-less, the t-test showed that accumulative strains during M-c tests were found to increase significantly with an increase in the percentage of RAP contents. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在当前的道路和人行道工程实践中,由于缺乏新鲜的天然骨料(粒状材料)供应并增加了加工成本,导致人们使用旧结构中回收的各种再生材料作为建筑材料。再生沥青路面(RAP)和再生混凝土骨料(RCA)用作路面施工的骨料已有一段时间了。这项研究的重点是表征含有50%和75%RAP的混合材料与新鲜粒状材料和RCA的特性,以评估它们是否适合用于柔性路面的粒状基层/基层。进行了一系列实验室测试,以确定新鲜颗粒材料及其混合物的弹性模量(M-R)和约束模量(M-c)。从统计学上讲,包含75%RAP材料和25%新鲜颗粒的混合样品的M-R值显着增加,特别是在较高的整体应力水平下。还发现,循环加载过程中的累积应变通常随着混合样品中RAP含量百分比的增加而增加。 M-c测试结果显示,随着轴向应力水平的增加,趋势也随之增加,但是,M-c值随着RAP含量百分比的增加而降低。但是,t检验表明,随着RAP含量百分比的增加,M-c试验期间的累积应变显着增加。 (C)2017 Elsevier Ltd.保留所有权利。

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