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Critical evaluation of strength prediction methods for alkali-activated fly ash

机译:碱活化粉煤灰强度预测方法的关键评估

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摘要

The literature contains many proposed methods for proportioning alkali-activated binders for maximum compressive strength. Many of these methods have been developed using metakaolin, which is a relatively pure aluminosilicate powder. In recent years, fly ash has become a more common aluminosilicate source for alkali activation. However, fly ash is a more complex material than metakaolin, and activated fly ash may not follow the same trends as activated metakaolin. In this study, literature-recommended strength prediction methods for alkali-activated binders, using metakaolin and fly ash, are reviewed and compared with the compressive strengths measured for eight Class F fly ash-based binders made by activation with sodium hydroxide solution. Of the eight fly ash binders in the study, six had correct performance predictions considering SiO_2/ Al_2O_3 and Na_2O/Al_2O_3 optimal ratios developed for metakaolin. A published empirical equation developed to predict alkali-activated fly ash concrete strength correctly predicted relative strengths for six of the eight fly ash binders. Modifier element content is another possible indicator of reactivity, and the fly ashes in this study generally showed that fly ashes with high contents of Ca~(2+), Mg~(2+), Na~+, and K~+ were likely to produce strong binders, although the correlation shown here was not as strong as that shown in prior studies. This work demonstrates that, while the proposed prediction methods are generally adequate, they do not cover all fly ashes and more work is needed improve prediction methods and account for the behavior of outliers.
机译:文献中提出了许多提议的方法,这些方法用于按比例分配碱活化的粘合剂以达到最大的抗压强度。已经使用偏高岭土开发了许多这些方法,偏高岭土是一种相对纯的硅铝酸盐粉末。近年来,粉煤灰已成为用于碱活化的更常见的硅铝酸盐来源。但是,粉煤灰是比偏高岭土更复杂的材料,活化的粉煤灰可能不遵循活化的偏高岭土的趋势。在这项研究中,回顾了文献推荐的碱活化粘合剂强度预测方法,使用偏高岭土和粉煤灰,并与通过氢氧化钠溶液活化制成的八种F级粉煤灰基粘合剂测得的抗压强度进行了比较。在研究的八种粉煤灰粘结剂中,考虑到偏高岭土开发的SiO_2 / Al_2O_3和Na_2O / Al_2O_3最佳比例,其中六种具有正确的性能预测。开发的已发布的经验公式可以预测碱活化粉煤灰混凝土的强度,可以正确预测八种粉煤灰粘结剂中六种的相对强度。改性剂元素含量是反应性的另一个可能指标,该研究中的粉煤灰通常表明,高含量的Ca〜(2 +),Mg〜(2 +),Na〜+和K〜+的粉煤灰是可能的。产生强的结合剂,尽管此处显示的相关性不如先前研究中所示。这项工作表明,尽管所提出的预测方法通常是足够的,但它们并不能涵盖所有的飞灰,需要做更多的工作来改进预测方法并解决异常值的问题。

著录项

  • 来源
    《Materials and structures》 |2015年第3期|607-620|共14页
  • 作者单位

    Petroleum and Geosystems Engineering, The University of Texas at Austin, 200 E. Dean Keeton St., Stop C0300, Austin, TX 78712, USA;

    Civil, Architectural and Environmental Engineering, The University of Texas at Austin, 301 E. Dean Keeton St. C1758, Austin, TX 78712, USA;

    Civil, Architectural and Environmental Engineering, The University of Texas at Austin, 301 E. Dean Keeton St. C1758, Austin, TX 78712, USA;

  • 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

    Geopolymer; Fly ash; Metakaolin; Strength; Proportioning;

    机译:地聚合物粉煤灰;偏高岭土;强度;比例;

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