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首页> 外文期刊>Bulletin of Materials Science >Computation of X-ray powder diffractograms of cement components and its application to phase analysis and hydration performance of OPC cement
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Computation of X-ray powder diffractograms of cement components and its application to phase analysis and hydration performance of OPC cement

机译:水泥组分的X射线粉末衍射图的计算及其在OPC水泥的相分析和水化性能中的应用

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摘要

The importance of computed X-ray diffraction patterns of various polymorphs of alite (M3, T1, R{bf emph{M}_{3}, emph{T}_{1}, emph{R}}), belite (bboldsymbol{beta}, gboldsymbol{gamma}), aluminate (cubic, orthorhombic), aluminoferrite, gypsum and hemihydrate in the quantitative phase analysis of cement and its early stage hydration performance is highlighted in this work with three OPC samples. The analysis shows that the predominant silicate phases present in all the samples are M3{bf emph{M}_{3}}-alite phase and bboldsymbol{beta}-belite phase, respectively. Both cubic and orthorhombic phases of C 3 A, brownmillerite, gypsum and hemihydrates are present at different levels. Quantitative phase analysis of cement by Rietveld refinement method provides more accurate and comprehensive data of the phase composition compared to Bogue method. The comparative hydration performance of these samples was studied with w/c{bf emph{w/c}} ratio, 0·5 and the results are interpreted in the light of difference in phase compositions viz. bboldsymbol{beta}-C 2 S/C 3 S ratio, fraction of finer cement particles present in the samples and theoretical modeling of C 3 S hydration.
机译:计算alite(M 3 ,T 1 ,R {bf emph {M} _ {3},emph {T)的各种多晶型物的X射线衍射图的重要性} _ {1},英制{R}}),贝利特(bboldsymbol {beta},gboldsymbol {gamma}),铝酸盐(立方,正交),铝铁素体,石膏和半水合物在水泥及其早期水化的定量分析中在这项工作中,三个OPC样本突出显示了性能。分析表明,所有样品中存在的主要硅酸盐相分别为M 3 {bf emph {M} _ {3}}-alite相和bboldsymbol {β} -belite相。 C 3 A的立方相和斜方相,褐煤石,石膏和半水合物都以不同的含量存在。与Bogue方法相比,通过Rietveld精炼方法对水泥进行定量相分析可提供更为准确和全面的相组成数据。用w / c {bf emph {w / c}}之比为0·5研究了这些样品的比较水合性能,并根据相组成的不同来解释结果。 bboldsymbol {beta} -C 2 S / C 3 S的比率,样品中存在的水泥细颗粒的比例以及C 3 的理论模型水合。

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