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Development of magnesium oxychloride cement with enhanced water resistance by adding silica fume and hybrid fly ash-silica fume

机译:加入二氧化硅烟气和杂交飞灰 - 二氧化硅烟灰,氧化氯化镁水泥镁水泥的研制

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In this paper, a water-resistant magnesium oxychloride cement (MOC), an environment friendly cementitious material, was developed by incorporating silica fume and the hybrid of silica fume and fly ash. The effects of these admixtures on the water repellence of MOC were investigated via comprehensive macroscopic physical and mechanical tests and micro-scale studies. A formula design of MOC blended with 15% silica fume and 15% fly ash retained the compressive strength as high as 100% and 95% after 28 days' and 56 days' immersion in water, respectively. Micro-scale studies, including XRD, FTIR, SEM, MIP, TG/DSC and XRM, were conducted to discover the mechanism of the enhanced water resistance of the new MOC. Besides, a clear and precise distribution of the hydration products in well-cured MOC specimens was demonstrated with the X-ray mapping (XRM) technique. It was found that adding silica fume or the hybrid of silica fume and fly ash optimised the porous structure of MOC and thereby increased the density and compressive strength leading to the enhanced water resistance. The filling effect of fine silica fume and fly ash particles, as well as the formation of Mg-Cl-Si-H gel, was found to be the main reason for the densified microstructure of MOC. The fractional contribution of phase 5, i.e. the main phase of MOC, decreased with the combined silica fume and fly ash, and this helped to relieve the internal stress and improve the stability of MOC, leading to enhanced water repellence.
机译:本文通过掺入二氧化硅烟雾和粉煤灰的含硅和粉煤灰,开发了一种耐水氧氧化镁水泥(MOC),环保型水泥材料。通过全面的宏观物理和机械测试和微观研究,研究了这些混合物对MOC防水性的影响。用15%二氧化硅烟气和15%粉煤灰将MOC配合的配方设计保留高达100%和95%,分别在水中浸泡56天后95%。进行了微观研究,包括XRD,FTIR,SEM,MIP,TG / DSC和XRM,以发现新MOC的增强耐水性机制。此外,用X射线测绘(XRM)技术对固化的MOC标本中的水化产物进行清晰精确分布。发现添加二氧化硅烟雾和粉煤灰的杂交粉,优化了MoC的多孔结构,从而增加了导致耐水性增强的密度和抗压强度。发现精细二氧化硅烟气和粉煤灰颗粒的填充作用以及Mg-Cl-Si-H凝胶的形成是MOC致密化微观结构的主要原因。第5阶段的分数贡献,即MOC的主阶段,用组合的二氧化硅烟雾和粉煤灰降低,这有助于缓解内应力并提高MOC的稳定性,导致耐水性增强。

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