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Impedance Spectroscopy Study of the Effect of Environmental Conditions on the Microstructure Development of Sustainable Fly Ash Cement Mortars

机译:环境条件对可持续粉煤灰水泥砂浆微观结构发展影响的阻抗谱研究

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摘要

Today, the characterisation of the microstructure of cement-based materials using non-destructive techniques has become an important topic of study, and among them, the impedance spectroscopy has recently experienced great progress. In this research, mortars with two different contents of fly ash were exposed to four different constant temperature and relative humidity environments during a 180-day period. The evolution of their microstructure was studied using impedance spectroscopy, whose results were contrasted with mercury intrusion porosimetry. The hardening environment has an influence on the microstructure of fly ash cement mortars. On one hand, the impedance resistances R1 and R2 are more influenced by the drying of the materials than by microstructure development, so they are not suitable for following the evolution of the porous network under non-optimum conditions. On the other hand, the impedance spectroscopy capacitances C1 and C2 allow studying the microstructure development of fly ash cement mortars exposed to those conditions, and their results are in accordance with mercury intrusion porosimetry ones. Finally, it has been observed that the combined analysis of the abovementioned capacitances could be very useful for studying shrinkage processes in cement-based materials kept in low relative humidity environments.
机译:如今,使用无损技术表征水泥基材料的微观结构已成为研究的重要课题,其中,阻抗谱学最近取得了长足的进步。在这项研究中,含有两种不同粉煤灰的砂浆在180天内暴露于四种不同的恒温和相对湿度环境中。用阻抗谱研究了其微观结构的演变,其结果与压汞法进行了对比。硬化环境对粉煤灰水泥砂浆的微观结构有影响。一方面,阻抗电阻R1和R2受材料干燥的影响大于受微结构发展的影响,因此它们不适合在非最佳条件下跟踪多孔网络的演化。另一方面,阻抗谱电容C1和C2允许研究暴露于这些条件下的粉煤灰水泥砂浆的微观结构,其结果与压汞法相符。最后,已经观察到,上述电容的组合分析对于研究保持在相对湿度较低的水泥基材料中的收缩过程非常有用。

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