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Hydration Characteristics of Tricalcium Aluminate in the Presence of Nano-Silica

机译:纳米二氧化硅存在下铝酸盐钙的水合特性

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摘要

Tricalcium aluminate (C3A) is the most reactive component of the Portland cement and its hydration has an important impact on the workability and early strength of concrete. Recently, nanomaterials such as nano-silica (nano-SiO2) have attracted much attention in cement-based materials because of its pozzolanic reactivity and the pore-filling effect. However, its influence on the hydration of C3A needs to be well understood. In this study, the hydration kinetics of C3A mixed with different percentages of nano-SiO2 were studied and compared with pure C3A. The hydration products were examined by different characterization techniques including XRD, XPS, and NMR spectroscopy and isothermal calorimetry analyses. The XRD results showed that the addition of nano-SiO2 promoted the conversion of the intermediate product C4AH13. The isothermal calorimetry results showed that the addition of nano-SiO2 significantly reduced the hydration exotherm rate of C3A from 0.34 to less than 0.1 mW/g. With the presence of nano-SiO2, the peaks for Q1 were observed in 29Si MAS-NMR measurements, and the content of Q1 increased from 6.74% to 30.6% when the nano-SiO2 content increased from 2 wt.% to 8 wt.%, whereas the proportion of Q4 gradually decreased from 89.1% to 63.6%. These results indicated a pozzolanic reaction provoked by the nano-SiO2 combined with aluminate structures generating C-A-S-H gel.
机译:铝酸钙(C3A)是波特兰水泥的最具反应性部件,其水合对混凝土的可加工性和早期强度具有重要影响。近来,由于其波佐的反应性和孔隙效果,纳米二氧化硅(纳米-SiO2)如纳米二氧化硅(纳米-SiO2)的纳米材料引起了很多关注的基础材料。然而,它对C3a水合的影响需要很好地理解。在该研究中,研究了与纯C3A不同百分比的纳米SiO2混合的C3A的水合动力学。通过不同的表征技术检查水合产物,包括XRD,XPS和NMR光谱和等温热量法分析。 XRD结果表明,添加纳米SiO 2促进中间产物C4AH13的转化。等温热量测定结果表明,添加纳米SiO 2的加入显着降低了0.34至小于0.1mW / g的C3A水合排泄速率。随着纳米SiO 2的存在,在29Si Mas-NMR测量中观察到Q1的峰,当纳米SiO 2含量从2重量%增加时,Q1的含量从6.74%增加到30.6%。%至8重量%。% ,而Q4的比例逐渐降低89.1%至63.6%。这些结果表明了纳米SiO 2引起的波佐烷反应,与铝酸盐结构结合产生C-A-H凝胶。

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