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The Influence of Metakaolin on Limestone Reactivity in Cementitious Materials

机译:偏塔林对水泥材料中石灰石反应性的影响

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Recent studies have demonstrated that in the presence of limestone (CaCO3), carbonate-AFm phases (i.e., hemi-and/or mono-carboaluminate) may be stabilized at the expense of sulfate-AFm, which is more commonly found in cement systems. This suggests that enhancing AFm phase formation may be a novel way of incorporating increased quantities of limestone as a reactive component in cement-based systems. Often, in an ordinary portland cement (OPC), the quantity of the AFm hydrates formed is limited by the availability of aluminum. Therefore, as means of enhancing AFm phase formation, this paper evaluates metakaolin addition to determine how it affects limestone reactions and carbonate-AFm formation in the OPC systems. The results of a multi-method study including: X-ray diffraction with Rietveld refinement (QXRD), strength measurements, thermogravimetric analysis, and thermodynamic calculations are used to quantify solid phase constitutions, and the extent of limestone that has been consumed in reaction. Obtained results suggest that pozzolanic reactions which occur when metakaolin is used as an aluminous source are observed to be beneficial in offsetting the dilutive effects of OPC replacement noted in blended cement formulations.
机译:最近的研究表明,在石灰石(CaCO 3)的存在下,可以以硫酸盐-AFM的牺牲稳定碳酸盐-AFM相(即,Hemi-and /或单碳酸盐),其在水泥系统中更常见。这表明增强AFM相形成可以是将增加量的石灰石作为反应性组分的基于水泥的系统中的含量增加的新方法。通常,在普通的波特兰水泥(OPC)中,形成的AFM水合物的量受铝的可用性受限。因此,作为增强AFM相形成的手段,本文评估了甲状腺素,以确定它如何影响OPC系统中的碳酸盐反应和碳酸盐 - AFM形成。多方法研究的结果包括:利用RietVeld改进(QXRD),强度测量,热重分析和热力学计算的X射线衍射来量化固相构成物,以及在反应中消耗的石灰石的程度。得到的结果表明,当甲状腺素用作铝源时发生的火山醇反应是有益的,抵消混合水泥制剂中OPC替代物的稀释效果。

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