首页> 外文期刊>Journal of materials in civil engineering >Effect of Fly Ash and Reactive MgO on the Engineering Properties and Durability of High-Performance Concrete Produced with Alkali-Activated Slag and Recycled Aggregate
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Effect of Fly Ash and Reactive MgO on the Engineering Properties and Durability of High-Performance Concrete Produced with Alkali-Activated Slag and Recycled Aggregate

机译:粉煤灰和反应性MgO对碱活化渣和再循环骨料生产的高性能混凝土工程性能及耐久性的影响

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摘要

This study investigated the engineering properties and durability of high-performance recycled aggregate concrete (HPRAC) specimens. The specimens were prepared using alkali-activated slag with varying proportions of fly ash (FA) (Category 1) and reactive MgO (Category 2). The first category included specimens in four subcategories in which FA replaced ground granulated blast furnace slag (GGBFS) in the binder at ratios of 0%, 15%, 30%, and 45% by weight. The second category included specimens in three categories in which a group mixture containing 15% FA and 85% GGBFS was modified by 2.5%, 5%, and 7.5% reactive MgO (based on the total weight of FA and GGBFS). The engineering properties of HPRAC specimens were assessed using tests for slump, compressive strength, splitting tensile strength, water absorption test, ultrasonic pulse velocity (UPV), electrical surface resistivity (ESR), thermal conductivity, and rapid chloride ion penetration (RCPT). All the HPRAC specimens exhibited good strength and durability at 91 days of curing. However, the engineering properties of the concrete samples were significantly affected by the levels of added FA and MgO. Although the CF15M5 mixture exhibited the highest compressive strength and best attributes of the HPRAC specimens, its performance in terms of the tested variables still was inferior to that of natural aggregate concrete.
机译:本研究研究了高性能再循环混凝土(HPRAC)标本的工程性能和耐久性。使用碱活化渣制备样品,其具有不同比例的粉煤灰(Fa)(类别1)和反应性MgO(类别2)。第一个类别包括四个子类别中的标本,其中FA在粘合剂中以0%,15%,30%和45重量%的比例在粘合剂中取代的地面粒状高炉渣(GGBF)。第二类别包括三种类别的标本,其中含有15%Fa和85%GGBF的组混合物通过2.5%,5%和7.5%反应性MgO(基于FA和GGBFS的总重量)进行改性。评估HPRAC标本的工程性能,使用坍落度,抗压强度,分裂拉伸强度,吸水测试,超声波脉冲速度(UPV),电动表面电阻率(ESR),导热率和快速氯离子渗透(RCPT)进行评估。所有HPRAC标本在91天的固化时表现出良好的强度和耐用性。然而,混凝土样本的工程性质受到添加的FA和MgO水平的显着影响。虽然CF15M5混合物表现出最高的抗压强度和HPRAC标本的最佳属性,但其在测试变量方面的性能仍然不如天然骨料混凝土的性能。

著录项

  • 来源
    《Journal of materials in civil engineering》 |2020年第11期|04020332.1-04020332.11|共11页
  • 作者单位

    Taiwan Building Technology Center National Taiwan Univ. of Science and Technology No. 43 Sec. 4 Keelung Rd. Taipei 10607 Taiwan ROC Dept. of Civil Engineering Univ. of Technology and Education Univ. of Danang No. 48 Cao Thang St. Danang City 550000 Vietnam;

    Dept. of Civil and Construction Engineering College of Engineering National Taiwan Univ. of Science and Technology No. 43 Sec. 4 Keelung Rd. Taipei 10607 Taiwan ROC;

    Dept. of Civil and Construction Engineering College of Engineering National Taiwan Univ. of Science and Technology No. 43 Sec. 4 Keelung Rd. Taipei 10607 Taiwan ROC;

    Faculty of Civil and Water Resource Engineering Bahir Dar Institute of Technology Bahir Dar Univ. Bahir Dar P.O. Box 26 Ethiopia;

    Dept. of Civil and Environmental Engineering National Univ. of Kaohsiung Nanzih District Kaohsiung City 811 Taiwan ROC;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Alkali-activated slag; Magnesium oxide; Hydrotalcite-like phase (Ht); Recycled aggregate concrete; Fly ash;

    机译:碱活性渣;氧化镁;水滑石状相(HT);再生骨料混凝土;飞灰;

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