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Recycled concrete aggregate attrition during mixing new concrete

机译:混合新混凝土时再生混凝土骨料的磨损

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摘要

In this work, the recycled concrete aggregate (RCA) friability during mixing was studied in order to better understand the evolution of this material during the mixing process and improve the recycled aggregate concrete mix-design. The influence of some important materials and process parameters was evaluated: initial abrasion resistance and initial moisture of the aggregates, mixer geometry, mixing time and mixing speed. To assess the mixing process effect on the recycled concrete aggregate friability, three different aspects were evaluated; the mass loss (mass of fraction inferior to 2.5 mm) the grading and the angularity evolutions with mixing time of an initially 10-14 mm aggregate. Tests were carried out in two types of laboratory concrete mixers, a planetary 301 mixer from Skako and an intensive 51 Erich mixer. The results revealed that in normal laboratory setting of the mixers configuration, the mass loss for natural aggregate (NA) is less than 1% of the coarse aggregate. This percentage reach 3% for good quality recycled concrete aggregate (MDE value of 21) and 5% for lower quality recycled concrete aggregate (MDE value of 27). The mass loss directly depends on the mixing parameters and the degradation of the recycled concrete aggregate drastically increased when the mixing speed was raised to 500 RPM. By analyzing the grading evolution during mixing, it was shown that both cleavage (creation of intermediate size particles) and attrition (creation of small particles) mechanisms influenced the aggregate degradation. However, the configuration of mixing significantly influenced the proportion of attrition and cleavage mechanisms. To complete this work, the angularity evolution showed that recycled concrete aggregate surface becomes smoother and the edges more rounded after mixing. (c) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,研究了再生混凝土骨料(RCA)在搅拌过程中的脆性,以便更好地了解这种材料在搅拌过程中的演变,并改善了再生骨料混凝土混合物的设计。评估了一些重要材料和工艺参数的影响:骨料的初始耐磨性和初始水分,混合器的几何形状,混合时间和混合速度。为了评估搅拌过程对再生混凝土骨料脆性的影响,评估了三个方面:质量损失(小于2.5毫米的质量分数)随着最初混合10-14毫米骨料的混合时间而逐渐变大和成角度。测试在两种类型的实验室混凝土搅拌机中进行,分别是Skako的行星301搅拌机和51 Erich密集型搅拌机。结果显示,在混合机配置的常规实验室设置中,天然骨料(NA)的质量损失小于粗骨料的1%。对于高质量的再生混凝土骨料(MDE值为21),该百分比达到3%;对于质量较低的再生混凝土骨料(MDE值为27)达到5%。质量损失直接取决于混合参数,而当混合速度提高到500 RPM时,再生混凝土骨料的降解急剧增加。通过分析混合过程中的分级变化,可以看出裂解(中等尺寸颗粒的形成)和磨损(小颗粒的形成)机制均会影响聚集体降解。但是,混合的形态显着影响了磨损和裂解机理的比例。为了完成这项工作,角度变化表明,再生后的混凝土骨料表面在混合后变得更光滑,边缘更加圆滑。 (c)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2016年第30期|299-309|共11页
  • 作者单位

    IFSTTAR, Aggregates & Mat Proc Lab, Route Bouaye CS4, F-44344 Nantes, France;

    IFSTTAR, Aggregates & Mat Proc Lab, Route Bouaye CS4, F-44344 Nantes, France;

    IFSTTAR, Aggregates & Mat Proc Lab, Route Bouaye CS4, F-44344 Nantes, France;

    IFSTTAR, Aggregates & Mat Proc Lab, Route Bouaye CS4, F-44344 Nantes, France;

    IFSTTAR, Aggregates & Mat Proc Lab, Route Bouaye CS4, F-44344 Nantes, France;

  • 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

    Recycled concrete aggregates; Friability; Concrete mixing; PSD evolution;

    机译:再生混凝土骨料;脆性;混凝土搅拌;PSD演变;

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