首页> 外文期刊>Environmental engineering and management journal >COMPRESSIVE STRENGTH AND THERMAL CONDUCTIVITY OF WATER AND AIR CURED PORTLAND CEMENT-FLY ASH-SILICA FUME MORTARS
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COMPRESSIVE STRENGTH AND THERMAL CONDUCTIVITY OF WATER AND AIR CURED PORTLAND CEMENT-FLY ASH-SILICA FUME MORTARS

机译:水和空气固化的硅酸盐水泥粉煤灰-二氧化硅烟气砂浆的抗压强度和导热系数

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摘要

This paper investigated the compressive strength and thermal conductivity of water and air cured Portland cement-fly ash-silica fume mortars. The results showed that density, compressive strength and thermal conductivity of blended cement mortars with fly ash were lower than Portland cement control. However, blended cement mortars that contained silica fume as replacement cement both in binary and ternary phase were higher than fly ash mixes and tends to increase with increase silica fume used as cement replacement due to increased C-S-H phase formation from pozzolanic reaction and its filler effect. In ternary phase, compressive strength and thermal conductivity of 10FA5SF and 5FA10SF mixes had values higher than Portland cement control while 20FA10SF mixes had values similar to Portland cement control. The density, compressive strength and thermal conductivity of blended cement mortars those cured in saturated lime water were higher than air cured specimens. Moreover, relationships between compressive strength and thermal conductivity as well as density and thermal conductivity were compared. X-ray diffraction traces show that intensity of C-S-H phase increased while intensity of Ca(OH)2 decreased with increased silica fume content due to the increased pozzolanic reaction when compared to the reference FA mix.
机译:本文研究了水和空气固化的波特兰水泥-粉煤灰-硅粉砂浆的抗压强度和导热系数。结果表明,掺粉煤灰的水泥砂浆的密度,抗压强度和导热系数均低于波特兰水泥对照。但是,在二元和三元相中都含有硅粉作为替代水泥的掺混水泥砂浆比粉煤灰混合物要高,并且由于用作火山灰替代物的硅粉含量的增加,由于火山灰反应引起的C-S-H相形成及其填充效果的增加,掺混水泥砂浆也有增加的趋势。在三元相中,10FA5SF和5FA10SF混合料的抗压强度和导热系数高于波特兰水泥对照,而20FA10SF混合料的数值与波特兰水泥对照相似。在饱和石灰水中固化的掺混水泥砂浆的密度,抗压强度和导热系数均高于空气固化标本。此外,比较了抗压强度和导热率以及密度和导热率之间的关系。 X射线衍射迹线表明,与标准FA混合物相比,由于火山灰反应的增加,C-S-H相的强度增加,而Ca(OH)2的强度随硅灰含量的增加而降低。

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  • 来源
    《Environmental engineering and management journal》 |2018年第9期|2023-2030|共8页
  • 作者单位

    Advanced Cement-based Materials Research Unit, Department of Physics and Materials Science, Faculty of Sciences, Chiang Mai University, Chiang Mai, 50200, Thailand;

    Advanced Cement-based Materials Research Unit, Department of Physics and Materials Science, Faculty of Sciences, Chiang Mai University, Chiang Mai, 50200, Thailand;

    Advanced Cement-based Materials Research Unit, Department of Physics and Materials Science, Faculty of Sciences, Chiang Mai University, Chiang Mai, 50200, Thailand;

    Advanced Cement-based Materials Research Unit, Department of Physics and Materials Science, Faculty of Sciences, Chiang Mai University, Chiang Mai, 50200, Thailand;

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

    cement; compressive strength; fly ash; silica fume; thermal conductivity;

    机译:水泥;抗压强度;粉煤灰硅粉导热系数;

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