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Calcium sulphate anhydrite based composite binders; effect of Portland cement and four pozzolans on the hydration and strength

机译:基于硫酸钙Anhydry基复合粘合剂; 波特兰水泥和四口火鼠对水合和强度的影响

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摘要

The strength, hydration products, microstructure and heat of early hydration were investigated on alternative hydraulic green cements based on calcium sulphate anhydrite partially blended with Portland cement and pozzolans. Four pozzolans of different physical and chemical nature, namely a geothermal waste, silica fume, metakaolin and pulverized fuel ash were characterized. The composite binders showed hydraulic behavior. The use of Portland cement favoured the strength, which was also higher with the incorporation of siliceous nanometric pozzolans compared to the micrometric silicoaluminate pozzolans. The nanoparticles enhanced the early hydration and changed the gypsum morphology promoting denser matrices of hydration products. The geothermal waste pozzolan was the most effective, while one of the composites with metakaolin showed formation of ettringite and strength losses. The heat of hydration of the composites was considerably lower than that of the neat Portland cement. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了基于硫酸钙Anhydry与Portland Cement和Pozzolans混合的替代液压绿色水泥进行早期水力的强度,水合产物,微观结构和热量。特征在于不同物理和化学性质,即地热废物,硅粉,煤粉素和粉煤灰的四个Pozzolans。复合粘合剂显示出液压行为。波特兰水泥的使用有利于强度,与微米碱性火山灰相比,硅质纳米火山佐的掺入也更高。纳米颗粒增强了早期水合,改变了促进水合产物的更密集基质的石膏形态。地热废气Pozzolan是最有效的,而其中一种复合材料具有甲状腺素的组合物显示出Ettringite的形成和强度损失。复合材料的水合热显着低于整齐的植物水泥。 (c)2017 Elsevier Ltd.保留所有权利。

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