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Properties of Alkali-Activated Slag Paste Using New Colloidal Nano-Silica Mixing Method

机译:新型胶态纳米二氧化硅混合法制备碱活化矿渣的性能

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摘要

Previous studies of alkali-activated slag cement (AASC) using nano-silica have mentioned mostly powdered nano-silica and binder weight replacement methods, which have a rapid decrease in fluidity, a short setting time and a low nano-silica replacement rate (< 5%). In this study, colloidal nano-silica (CNS) was used and the mixing-water weight substitution method was applied. The substitution method was newly applied to improve the dispersibility of nano-silica and to increase the substitution rate. In the experiment, the CNS was replaced by 0, 10, 20, 30, 40, and 50% of the mixing-water weight. As a result, as the substitution rate of CNS increased, the fluidity decreased, and the setting time decreased. High compressive strength values and increased rates were also observed, and the diameter and volume of pores decreased rapidly. In particular, the increase of CNS replacement rate had the greatest effect on decrease of medium capillary pores (50–10 nm) and increase of gel pores (< 10 nm). The new displacement method was able to replace up to 50% of the mixing water. As shown in the experimental results, despite the high substitution rate of 50%, the minimum fluidity of the mixture was secured, and a high-strength and compact matrix could be formed.
机译:以前使用纳米二氧化硅对碱活化矿渣水泥(AASC)的研究已经提到了大多数粉状纳米二氧化硅和粘合剂的重量替代方法,这些方法具有流动性快速下降,凝结时间短和纳米二氧化硅替代率低的特点(< 5%)。在这项研究中,使用胶体纳米二氧化硅(CNS)并应用了混合水重量替代方法。为了提高纳米二氧化硅的分散性并提高了取代率,新近采用了取代法。在实验中,将CNS替换为混合水重量的0、10、20、30、40和50%。结果,随着CNS的取代率增加,流动性降低,并且凝结时间减少。还观察到高的抗压强度值和增加的速率,并且孔的直径和体积迅速减小。特别是中枢神经系统置换率的增加对中等毛细孔的减少(50-10 nm)和凝胶孔的增加(<10 nm)影响最大。新的置换方法最多可替代50%的混合水。如实验结果所示,尽管50%的高取代率,仍确保了混合物的最小流动性,并且可以形成高强度和致密的基质。

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