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首页> 外文期刊>Journal of materials in civil engineering >Feasibility Study on Use of Washed-Reclaimed Asphalt as a Partial Replacement of Natural Aggregate in Dry-Lean Concrete as Base Course for Rigid Pavement
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Feasibility Study on Use of Washed-Reclaimed Asphalt as a Partial Replacement of Natural Aggregate in Dry-Lean Concrete as Base Course for Rigid Pavement

机译:用于使用洗涤回收沥青的可行性研究作为干混凝土中的天然骨料的部分替代为刚性路面的基础路线

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Dry-lean concrete (DLC) lies below the wearing course of the rigid pavement section to overcome the major reasons for its failure, such as improper base support, seepage of underground water, and frost action. DLC is generally manufactured with a huge aggregate-to-cement ratio, which lies below the wearing course of the rigid pavement section. In this study, reclaimed asphalt pavement (RAP), a waste material, derived from the milling process of flexible pavement wearing course, has been used as a partial replacement of natural coarse aggregates in DLC made from portland pozzolana cement (PPC). Initially, the feasibility of using washed reclaimed asphalt pavement (WRAP) and comparing the results with dirty reclaimed asphalt pavement (DRAP) as a partial replacement of natural coarse aggregate has been investigated. It was found that WRAP gave better results as compared to DRAP for satisfying DLC conditions. The reason is demonstrated using SEM images showing variation in formation of CSH gel due to the presence of dust particles. Further, strength and durability properties (acidic environment, water absorption, and alkalinity) were determined to check its durability of WRAP-incorporated concrete (WRAPC). The percentage of WRAP and DRAP was varied from 0%-50% by weight of natural aggregate. Also, nondestructive tests like ultrasonic pulse velocity (UPV) and rebound hammer test were performed to determine the quality and dynamic young's modulus of WRAPC. It was found that the optimal curing period and optimum WRAP addition were 21 days and 20% respectively. An equation has been developed to determine the optimum moisture content (OMC) for varying percentage of moisture and RAP content. The equation was validated with the results of researchers and a variation of only 3.3% was found. It was observed that 20% WRAP incorporated in DLC gives optimal results in terms of strength and durability.
机译:干燥混凝土(DLC)位于刚性路面部分的佩戴路线以下,以克服其失效的主要原因,例如基础支撑不当,地下水渗流和霜冻作用。 DLC通常以巨大的骨料到水泥比制造,其位于刚性路面部分的佩戴过程之下。在这项研究中,回收沥青路面(RAP),源自柔性路面磨损课程的铣削过程的废料已被用作由波特兰Pozzolana水泥(PPC)制成的DLC中的天然粗骨料的部分替代。最初,研究了使用洗涤后的再生沥青路面(包装)的可行性,并将结果与​​脏回收沥青路面(DRAP)的结果进行了研究,作为自然粗骨料的部分替代。发现包裹与牵引变化相比,包装的结果更好地提供了满足DLC条件。使用SEM图像来证明原因,该图像显示由于存在灰尘颗粒而形成CSH凝胶的变化。此外,确定强度和耐久性性质(酸性环境,吸水和碱度)检查其包装掺入混凝土(WRAPC)的耐久性。包裹物和拖拉的百分比从0%-50%的自然聚集体变化。此外,还进行了超声波脉冲速度(UPV)和反弹锤试验的非破坏性测试,以确定CRAPC的质量和动态的杨氏模量。发现最佳固化期和最佳包装加入分别为21天和20%。已经开发了一种等式以确定用于不同百分比的水分和RAP含量的最佳水分含量(OMC)。该等式验证了研究人员的结果,发现只有3.3%的变异。观察到,在DLC中掺入20%的包装在强度和耐久性方面具有最佳结果。

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