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首页> 外文期刊>Journal of materials in civil engineering >Effect of Partial Substitution of Highly Reactive Mineral Additions by Nanosilica in Cement Pastes
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Effect of Partial Substitution of Highly Reactive Mineral Additions by Nanosilica in Cement Pastes

机译:纳米二氧化硅部分替代高活性矿物添加对水泥浆的影响

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摘要

The phenomena involved in portland cement hydration and interactions with nanosilica are very complex and not yet fully understood. In addition, few papers have currently proposed to investigate the microstructure and mechanical properties of ternary mixtures using portland cement, colloidal nanosilica, and highly reactive mineral additions. This article investigates, for the first time, the behavior of different highly reactive mineral additions (silica fume and metakaolin) when partially replaced by colloidal nanosilica in the microstructure and hydration of cementitious materials. For the study of the cementitious material microstructures, a Langavant calorimeter, compressive strength, X-ray diffraction, thermogravimetry, infrared spectroscopy, and mercury intrusion porosimetry were used. The pastes with a 1% substitution of highly reactive mineral additions by nanosilica showed higher compressive strength and more refined porosity than the pastes with only silica fume or metakaolin. The results show that nanosilica appears to have better synergism with metakaolin than with silica fume.
机译:波特兰水泥水化以及与纳米二氧化硅相互作用的现象非常复杂,尚未完全了解。此外,目前很少有论文研究使用波特兰水泥,胶体纳米二氧化硅和高反应性矿物添加剂来研究三元混合物的微观结构和力学性能。本文首次研究了在胶凝材料的微观结构和水化过程中,不同的高反应性矿物添加物(硅粉和偏高岭土)被胶态纳米二氧化硅部分替代时的行为。为了研究胶凝材料的微观结构,使用了Langavant量热仪,抗压强度,X射线衍射,热重分析,红外光谱和压汞法。与仅使用硅粉或偏高岭土的糊料相比,被高活性矿物添加剂替代1%的纳米二氧化硅的糊料显示出更高的抗压强度和更精细的孔隙率。结果表明,纳米二氧化硅与偏高岭土的协同作用似乎比与硅粉更好。

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