基于天然火山灰的环保水泥的概念,以改善混凝土的流变性能

S. Mansour, Y. Ghernouti
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引用次数: 0

摘要

贝尼-萨夫地区(阿尔及利亚西北部)的火山灰是一种源自火山的天然物质,在水的存在下能够与石灰反应并形成具有结合特性的化合物。因此,将其用于生产新型胶凝材料将保护环境。因此,开发这种来源作为部分水泥替代品将是有趣的。在这项工作中,进行了流变学研究,以评估天然火山灰在5%,10%,15%至20%的不同比例下取代水泥的性能,以获得生态混凝土。由于混凝土的流变特性取决于水泥浆体的特性,采用静流动试验和动态蠕变和振荡试验分析了火山灰对水泥浆体的影响。流变试验结果表明,在流动状态下,火山灰改善了胶凝体的流动性;在振荡状态下,火山灰使胶凝体的黏性优于对照膏体的弹性。此外,瞬态研究(蠕变/恢复)可以突出水泥浆体的液体粘弹性特性。当火山灰添加量为10%时,膏体的流变性能为黏性液体,似乎是最好的。使用火山灰作为水泥替代品具有显著的经济、环境和技术优势,即开发天然火山灰,减少水泥生产过程中的二氧化碳排放,降低能耗,最终改善新拌混凝土的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conception of eco-friendly cement based on natural pozzolan to improve rheological behavior of concrete
The pozzolan of Beni- Saf region (North-West Algeria) is a natural material of volcanic origin with an ability to react with lime in the presence of water and to form compounds with binding properties. Therefore, its use in the production of new cementitious materials will protect the environment. It will therefore be interesting to exploit this source as a partial cement substitution. In this work, a rheometric investigation was carried out to assess the performance of the natural pozzolan substituted to cement at variable rates ranging from 5%, 10%, 15% to 20% in order to obtain an ecological concrete. As the rheological behavior of concrete depends on the behavior of the cement paste, the effect of pozzolan on the latter was analyzed using static flow tests and dynamic creep and oscillation tests. The results of the rheometric tests have shown that in flow, the pozzolan improves the fluidity and in oscillation mode, it generates a viscous behavior of the cementitious pastes compared to elastic behavior of the control paste. Furthermore, the transient study (creep / recovery) made it possible to highlight the liquid viscoelastic character of the cement pastes. With 10% of pozzolan, the rheological behavior of the paste is viscous liquid which seems to be the best. The use of pozzolan as cement substitution has significant economic, environmental and technical advantages, namely the development of natural pozzolan, reduction of CO2 emissions during the manufacture of cement as well as energy reduction and finally improvement of the properties of fresh concrete.
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