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Effect of particle size on early heat evolution of interground natural pozzolan blended cements

机译:粒径对跨度自然波佐混合水泥的早热演变的影响

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Natural pozzolans are increasingly being used in blended cements due to their compositional uniformity and local abundance in some countries. They influence hydration, both at early and late ages. A control portland cement and three interground cements containing natural pozzolan were produced using a laboratory ball mill and sieved through 10-mu m, 35-mu m and 50-mu m sieves to yield different cement size subgroups. The heat evolution of each subgroup was investigated up to 2 days using isothermal calorimetry. The compositions of the size subgroups and their early hydration behaviors were found to differ from those of the unsieved cement subgroups. Subgroups containing finer pozzolan particles had higher heat of hydration due to the nucleation effect. In the coarse cement subgroups with relatively lower amounts of clinker, the dilution effect was dominant. It was shown that early heat evolution characteristics of cements can be controlled, among other ways, by adjusting the particle size distribution. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于它们在一些国家的组成均匀性和局部丰度,天然波佐醇越来越多地用于混合水泥。它们在早期和晚期都影响水合。使用实验室球磨机生产一种控制波特兰水泥和含有天然波利的三个间接水泥,并通过10-mu m,35-mu m和50-mu m m筛来产生不同的水泥尺寸亚组。使用等温热量测定法研究了每种亚组的热量进化。发现大小亚组的组合物及其早期水合行为不同于未发现的水泥亚组的组合物。由于成核效应,含有更精细的Pozzolan颗粒的亚组具有较高的水化热量。在具有相对较低的熟料量的粗水泥亚组中,稀释效果是显性的。结果表明,通过调节粒度分布,可以在其他方式控制水泥的早期热量进化特性。 (c)2019 Elsevier Ltd.保留所有权利。

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