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首页> 外文期刊>Cement & concrete composites >Chloride penetration and electrical resistivity of concretes containing nanosilica hydrosols with different specific surface areas
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Chloride penetration and electrical resistivity of concretes containing nanosilica hydrosols with different specific surface areas

机译:含有不同比表面积的纳米二氧化硅水溶胶的混凝土的氯离子渗透率和电阻率

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摘要

In this study, the influence of nanosilica hydrosols with specific surface areas of 100 m~2/g, 200 m~2/g and 300 m~2/g and silica fume with specific surface area of 21 m~2/g on chloride permeability and electrical resistivity of concrete is investigated. The results indicate that the nanosilicas, especially at higher replacement levels, enhanced the chloride and electrical resistance of concrete at early ages, while silica fume did not have a significant influence on these characteristics at early ages. The results also show that the nanosilicas with lower surface areas had better performance in enhancing the chloride and electrical resistance of concretes compared to the finer ones, especially at 28 days and 90 days. Silica fume achieved a similar performance to the best performing nanosilica at 28 days and surpassed it at 90 days.
机译:本研究研究了比表面积为100 m〜2 / g,200 m〜2 / g和300 m〜2 / g的纳米二氧化硅溶胶和比表面积为21 m〜2 / g的硅粉对氯化物的影响研究了混凝土的渗透率和电阻率。结果表明,纳米二氧化硅,尤其是在较高的替代含量下,在早期就增强了混凝土的氯化物和电阻,而硅粉在早期对这些特性没有显着影响。结果还表明,与更细的纳米二氧化硅相比,表面积较小的纳米二氧化硅在增强混凝土的氯化物和电阻方面具有更好的性能,尤其是在28天和90天时。二氧化硅烟尘在28天时达到了与性能最佳的纳米二氧化硅相似的性能,并在90天时超过了它。

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