Microwave materials characterization of geopolymer precursor powders

C. Edwards, K. Donnell, Christopher R. Shearer
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引用次数: 4

Abstract

Geopolymers are structural materials that can be used as a viable alternative to ordinary portland cement concrete. However, their widespread adoption has been limited by the lack of understanding in their fundamental reaction mechanisms. Microwave characterization methods have shown promise at understanding these reaction mechanisms. However, the complex dielectric properties of geopolymer precursor powders and the effect of void content must first be understood. Therefore, in this work, the dielectric properties of two geopolymer precursor powders (blast furnace slag and fly ash) are measured. Then, the effect of void content and particle size distribution (PSD) is considered on the measured dielectric properties. By characterizing the inherent void content of these powder materials, this effect can be removed and therefore the true dielectric properties of the materials can be determined. The results show that the void content has a significant effect on the measured dielectric properties.
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地聚合物前驱体粉末的微波材料表征
地聚合物是一种结构材料,可以作为普通硅酸盐水泥混凝土的可行替代品。然而,由于缺乏对其基本反应机制的了解,它们的广泛采用受到限制。微波表征方法在理解这些反应机制方面显示出了希望。然而,地聚合物前驱体粉末复杂的介电性能和孔隙含量的影响必须首先了解。因此,本文对两种地聚合物前驱体粉末(高炉矿渣和粉煤灰)的介电性能进行了测试。然后,考虑了孔隙含量和粒径分布(PSD)对介电性能的影响。通过表征这些粉末材料的固有空隙含量,可以消除这种影响,从而可以确定材料的真正介电性能。结果表明,空穴含量对测得的介电性能有显著影响。
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