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Effect of temperature on pozzolanic reaction of Tunisian clays calcined in laboratory

机译:温度对实验室煅烧突尼斯黏土火山灰反应的影响

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The use of natural calcined clay as supplementary cementitious materials for the replacement of a portion of cement hasbecome increasingly interesting. It is used for reducing the cement content in mortars and concrete production and alsofor improving strength and durability of concrete construction. In this context, the objective of this study was to makecalcined clay in laboratory using two Tunisian clays burnt at 600, 700 and 800 ℃and to study the effect of temperatureon Pozzolanic reaction in terms of physical, mechanical and microstructure properties. Here, we studied the thermal andchemical properties, mechanical compressive strength of mortars, electrical conductivity as well as the physical properties,namely Blaine specific surface area, average particle diameter, pycnometer density, to evaluate its pozzolanic effectby substitutions of cement (5, 10, 15 and 20%). The results show the beneficial effect of adding calcined clay at differenttemperatures of calcinations on these properties. Besides, the average particle diameter increased with temperatureswhich agglomerate the particles. The Blaine specific surface area of calcined clay exceeded that of cement. Furthermore,the substitution of cement by calcined clay enhanced the compressive strength. All samples showed the developmentof strength between 28 and 90 days.
机译:使用天然煅烧粘土作为补充水泥材料来代替部分水泥的方法变得越来越有趣。它用于降低砂浆和混凝土生产中的水泥含量,以及用于提高混凝土结构的强度和耐久性。在这种情况下,本研究的目的是使用两种突尼斯粘土在600、700和800℃下燃烧的实验室煅烧粘土,并研究温度的影响物理,机械和微观结构性质对火山灰反应的影响。在这里,我们研究了热化学性质,砂浆的机械抗压强度,电导率以及物理性质,即布莱恩比表面积,平均粒径,比重瓶密度,以评估其火山灰作用替代水泥(5%,10%,15%和20%)。结果表明,在不同的条件下添加煅烧粘土具有有益的效果。煅烧温度对这些性质的影响。此外,平均粒径随温度增加会凝聚颗粒。煅烧粘土的布莱恩比表面积超过了水泥。此外,用煅烧粘土代替水泥可以提高抗压强度。所有样品均显示出发展强度介于28天到90天之间。

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