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Effect of Slag on Pore Structure of Hardened Pastes and Hydration of Alite-calcium Barium Sulphoaluminate Cement

机译:炉渣对硫酸钡钙钡水泥孔隙结构孔隙结构的影响

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Effect of different blending amount of slag on cement pastes were studied by measuring and analyzing the mechanical property, hydration rate and pore structure of hardened alite-calcium barium sulphoaluminate cement pastes, and using X-ray diffraction and scanning electron microscopy. The results show that, there are much ettringite in the hydration products of alite-calcium barium sulphoaluminate cementi which would efficiently promote the early strength of the cement. Adding slag can cause larger decrease of early strength while the later strength is only reduced to a small extent. When the slag content is 10%, the decrease of compressive strength is the lowest at each curing age and the compressive strength of the hardened pastes at later hydration age can match or even higher than the pure cement paste. Slag can reduce the heat of hydration and hydration rate, fill pores in the sample and equal the distribution of pore structure, so that the microstructure and pore structure of cement pastes at later hydration age are efficiently improved.
机译:通过测量和分析硬化的煤灰 - 硫铵硫化物水泥浆料的机械性能,水合速率和孔结构,研究了不同混合量对水泥浆料的影响。使用X射线衍射和扫描电子显微镜,研究了水泥浆料对水泥浆料的影响。结果表明,在AlITE - 钙硫酸钡铵的水合产物中存在许多Ettringite,其将有效地促进水泥的早期强度。添加炉渣会导致早期强度的更大减小,而后来的强度仅在很小程度上降低。当渣含量为10%时,抗压强度的降低是每个固化时期的最低点,并且在后续水合时期的硬化浆料的抗压强度可以匹配或甚至高于纯水泥浆料。炉渣可以减少水合和水合速率的热量,填充样品中的孔并等于孔隙结构的分布,从而有效地改善了水泥糊剂的微观结构和孔隙结构。

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