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Experimental investigation on properties of recycled aggregate concrete with optimized Ball Milling Method

机译:优化球磨法的再生骨料混凝土性能试验研究

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Numerous research studies were conducted to improve the weak properties of recycled aggregate as a construction material during the last two decades. Most of these studies mainly focused on minimizing the undesired characteristics of the recycled aggregate through various treatment techniques to strengthen the attached old mortar or remove it from the recycled aggregate. Mechanical Treatment Methods (MTMs) used to remove the attached mortar from the aggregates were evolved over the years. Among available methods of treatments in the literature, the number of studies investigated the MTMs with an optimization process is limited. In lack of proper optimization process with rubble quality identification, mechanical treatment methods may be ineffective to provide concretes with sufficient properties, and they may yield to extra energy consumption and carbon emission. In other words, the optimization of treatment methods and determination rubble quality are two essential steps for having satisfactory results on the recycled aggregate.In this study, an optimization process is applied using the Los Angles test machine through the conducted Ball Milling Method (BMM). During the BMM process, various combinations of rotation (R) (100-200-300-400-500) and the steel ball (S) (0-2-5-7-10-12) applied to the recycled aggregate. Analysis results demonstrated the effectiveness of reducing the 8.95% water absorption value of the untreated recycled aggregate to 0.84% after the optimization process of BMM.Then, seven concrete specimens including 0-20-40-60% recycled aggregate (RA) and improved recycled aggregate (RA-i) mixes produced in the framework of the experimental study. For comparison purposes, engineering properties of 28 days concrete are determined. The use of RA-i up to 60% in concrete has not influenced the physical and mechanical properties, distinctively. After the optimization process, the RA use in concrete increased up to 60% which is twofold of the optimum RA value in the literature. As a result, optimized BMM improved the mechanical and physical characteristics of RA and increased the use of RA ratio in concrete mixes without any trade-off. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在过去的二十年中,进行了许多研究以改善作为建筑材料的再生骨料的弱性能。这些研究大多数主要集中在通过各种处理技术来使再生骨料的不良特性最小化,以增强附着的旧砂浆或将其从再生骨料中去除。多年以来,人们一直在使用机械处理方法(MTM)从集料中除去附着的砂浆。在文献中可用的治疗方法中,以优化过程研究MTM的研究数量有限。在缺乏适当的优化过程和瓦砾质量识别的情况下,机械处理方法可能无法有效地为混凝土提供足够的性能,并且可能导致额外的能耗和碳排放。换句话说,处理方法的优化和碎石质量的确定是使再生骨料获得令人满意的结果的两个基本步骤。在这项研究中,使用Los Angles试验机通过传导球磨法(BMM)应用了优化过程。在BMM过程中,旋转(R)(100-200-300-400-500)和钢球(S)(0-2-5-7-10-12)的各种组合应用于回收的骨料。分析结果表明,经过BMM优化处理后,未处理的再生骨料的8.95%吸水率降低到0.84%的有效性。然后,七个混凝土试样包括0-20-40-60%再生骨料(RA)和改善了再生在实验研究的框架内产生的骨料(RA-i)混合物。为了比较,确定了28天混凝土的工程性能。在混凝土中使用高达60%的RA-i并没有明显影响物理和机械性能。经过优化过程后,混凝土中的RA使用量增加了60%,是文献中最佳RA值的两倍。结果,优化的BMM改善了RA的机械和物理特性,并增加了RA比率在混凝土混合物中的使用,而没有任何取舍。 (C)2019 Elsevier Ltd.保留所有权利。

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