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Effect of pozzolanic micro and nanoparticles as secondary fillers in carbon nanotubes/cement composites

机译:碳纳米管/水泥复合材料中二次填料的波佐烷基微粒和纳米颗粒的影响

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Incorporation of micro and nanoparticles as secondary fillers in cement based matrices improves the efficiency of self-sensing carbon nanotubes (CNT)/cement composites through the excluded volume effect. Pozzolanic particles can be seen as interesting secondary fillers for this purpose since they would increase the compacity of the granular matrix, increase the nanotube effective volume during the first hours of hydration, and densify the matrix through the growth of additional hydration products at latter ages. In this work, pozzolanic micro and nano particles (nanosilica, microsilica, metakaolin and nanoclay) were used as secondary fillers to investigate how their combined effect with CNT dispersion containing surfactant as dispersing agents affects the hydration kinetics, setting time and early strength development of Portland cement pastes. For this purpose, isothermal calorimetry and ultrasonic pulse velocity tests were performed. The change in solid fraction caused by the pozzolanic particles also was analyzed to understand the excluded volume effect in the matrix. It was found that the use of surfactants as dispersing agent for CNT has a retardation effect on the hydration and strength development of cement paste and this retardation is minimized by the presence of pozzolanic secondary fillers. It also was found that microparticles are much more effective than nanoparticles in increasing the compacity and effective nanotube volume in the matrix. (C) 2021 Elsevier Ltd. All rights reserved.
机译:作为次级填料的微型和纳米颗粒的掺入基于水泥基质中的次要填料通过排除的体积效应提高了自感应碳纳米管(CNT)/水泥复合材料的效率。对于此目的,Pozzolanic颗粒可以被视为有趣的二次填料,因为它们会增加粒状基质的浓度,在水合的第一小时内增加纳米管有效体积,并通过后一种时代的额外水合产物的生长使基质致密化。在这项工作中,使用Pozzolanic Micro和纳米颗粒(纳米硅,微氨基,MetaKaolin和NaNoClay)作为二次填料,以研究它们与含有表面活性剂的CNT分散体的组合效果如何影响Portland的水合动力学,凝固时间和早期强度发展水泥糊。为此目的,进行等温热量测定法和超声波脉冲速度试验。通过Pozzolanic颗粒引起的固体级分的变化也被分析,以了解基质中排除的体积效应。发现使用表面活性剂作为CNT的分散剂对水泥浆料的水化和强度显影具有延迟效应,并且通过Pozzolanic次级填料的存在最小化该延迟。还发现,微粒比纳米颗粒在增加基质中的增强性和有效的纳米管体积时更有效。 (c)2021 elestvier有限公司保留所有权利。

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