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Alkali-activated cementitious materials: Mechanisms, microstructure and properties.

机译:碱活化水泥材料:机理,微观结构和性能。

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摘要

The goal of this study was to examine the activation reaction, microstructure, properties, identify the mechanisms of activation, and achieve an enhanced understanding of activation processes occurring during the synthesis of alkali activated cementitious materials (AAC). The discussions classify the following categories. (1) alkali activated slag cement; (2) alkali activated portland-slag cement; (3) alkali activated fly ash-slag cement; (4) alkali activated pozzolana-lime cement; (5) alkali activated pozzolana cement. The activators involved are NaOH, KOH; {dollar}rm Nasb2SOsb4; Nasb2COsb3; CaSOsb4,{dollar} and soluble silicate of sodium and potassium. The effect of alkali activation on the microstructure of these materials were analyzed at the micro-nanometer scale by SEM, EDS, ESEM, and TEM. Also {dollar}sp{lcub}29{rcub}{dollar}Si and {dollar}sp{lcub}27{rcub}{dollar}Al MAS-NMR, IR, Raman, TGA, and DTA were performed to characterize the phase in these systems. Slag, fly ash, silica fume, as well as blended cements containing mixtures of these and other components were characterized. A set of ordinary portland cement paste samples served as a control. This study confirmed that AAC materials have great potential because they could generate very early high strength, greater durability and high performance. Among the benefits to be derived from this research is a better understanding of the factors that control concrete properties when using AAC materials, and by controlling the chemistry and processing to produce desired microstructures and properties, as well as their durability.
机译:这项研究的目的是检查活化反应,微观结构,性质,确定活化机理,并加深对碱活化胶凝材料(AAC)合成过程中发生的活化过程的了解。讨论将以下类别分类。 (1)碱活化矿渣水泥; (2)碱活化硅酸盐矿渣水泥; (3)碱活化粉煤灰矿渣水泥; (4)碱活化的火山灰-石灰水泥; (5)碱活化火山灰水泥。涉及的活化剂是NaOH,KOH; {dollar} rm Nasb2SOsb4; Nasb2COsb3; CaSOsb4,{美元}以及钠和钾的可溶性硅酸盐。通过SEM,EDS,ESEM和TEM在微纳米尺度上分析了碱活化对这些材料的微观结构的影响。还进行了{dollar} sp {lcub} 29 {rcub} {Silar}和{dollar} sp {lcub} 27 {rcub} {dollar} Al MAS-NMR,IR,拉曼,TGA和DTA的表征在这些系统中。表征了炉渣,粉煤灰,硅灰以及包含这些成分和其他成分的混合物的掺和水泥。一组普通的波特兰水泥浆样品作为对照。这项研究证实了AAC材料具有巨大的潜力,因为它们可以产生非常早的高强度,更高的耐久性和高性能。从这项研究中获得的好处包括更好地理解使用AAC材料时控制混凝土性能的因素,以及通过控制化学和工艺以产生所需的微结构和性能及其耐久性的方法。

著录项

  • 作者

    Jiang, Weimin.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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