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Long-Term Behaviour of Fly Ash and Slag Cement Grouts for Micropiles Exposed to a Sulphate Aggressive Medium

机译:粉煤灰和矿渣水泥浆对含硫酸盐侵蚀性介质的微桩的长期性能

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Nowadays, one of the most popular ways to get a more sustainable cement industry is using additions as cement replacement. However, there are many civil engineering applications in which the use of sustainable cements is not extended yet, such as special foundations, and particularly micropiles, even though the standards do not restrict the cement type to use. These elements are frequently exposed to the sulphates present in soils. The purpose of this research is to study the effects in the very long-term (until 600 days) of sulphate attack in the microstructure of micropiles grouts, prepared with ordinary Portland cement, fly ash and slag commercial cements, continuing a previous work, in which these effects were studied in the short-term. The microstructure changes have been analysed with the non-destructive impedance spectroscopy technique, mercury intrusion porosimetry and the “Wenner” resistivity test. The mass variation and the compressive strength have also been studied. The impedance spectroscopy has been the most sensitive technique for following the sulphate attack process. Considering the results obtained, micropiles grouts with slag and fly ash, exposed to an aggressive medium with high content of sulphates, have shown good behaviour in the very long-term (600 days) compared to grouts made with OPC.
机译:如今,使水泥行业更具可持续性的最流行方法之一是使用添加剂作为水泥替代品。但是,在许多土木工程应用中,尚未使用可持续水泥,例如,特殊的地基,特别是微型桩,即使标准不限制使用的水泥类型。这些元素经常暴露于土壤中存在的硫酸盐中。本研究的目的是研究用普通波特兰水泥,粉煤灰和矿渣商业水泥制得的微桩灌浆在很长一段时间(至600天)中硫酸盐侵蚀对微浆灌浆微观结构的影响,并继续开展以前的工作。这些影响是在短期内研究的。用无损阻抗光谱技术,压汞法和“温纳”电阻率测试分析了显微组织的变化。还研究了质量变化和抗压强度。阻抗光谱法一直是追踪硫酸盐侵蚀过程的最灵敏技术。考虑到获得的结果,与OPC制成的灌浆相比,暴露于具有高含量硫酸盐的侵蚀性介质中的含矿渣和粉煤灰的微型桩灌浆在长期(600天)内表现出良好的性能。

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