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Study of low-emission multi-component cements with a high content of supplementary cementitious materials

机译:用高含量的补充胶凝材料研究低排放多组分水泥

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摘要

The studies have established the influence of various types of supplementary cementitious materials on physical and mechanical properties and structure formation of low-emission multi-component cements. The results of the granulometric composition examination of main components of multi-component cements were obtained and a comprehensive estimation of their particle size distribution relative to volume and specific surface was performed. It was proved that increase in dispersity of supplementary cementitious materials leads to decrease in their bleeding and increase in activity but simultaneously increases water demand and power consumption for mechanical activation. Efficiency of mechanical activation of main non-clinker components having different characters of activity was compared.Experimental studies have confirmed that the problem of increasing hydraulic activity of granulated blast-furnace slag is solved by increasing content of fractions up to 10 μm in size. However, when preparing highly active granulated blast-furnace slag, energy inputs for grinding significantly grow, especially in ball mills. It should be noted that a shortage of quality slag in the cement industry is expected in the coming years. This necessitates the search for new combinations of supplementary cementitious materials, namely natural zeolites and fly ash which possess excellent pozzolanic properties. Studies of partial and complete replacement of granulated blast-furnace slags in the composition of low-emission cements with clinker factor of 0.50 have shown that necessary indices of early and standard strength are ensured due to optimization of granulometric composition of pozzolanic additives. At the same time, binder strength increases significantly with the age of hardening and exceeds standard strength by 30 % in 90 days. This makes it possible to state that due to the pozzolanic reaction between superfine zeolite, fly ash and calcium hydroxide, the processes of formation of hydrate phases in the intergranular space are stimulated and microstructure of the cement matrix is compacted. It was shown that the use of low-emission multi-component cements modified with superplasticizers of polycarboxylate type provides technological, technical, economic and environmental effects.Thus, there are grounds to state feasibility of obtaining clinker-efficient low-emission multi-component cements by optimizing granulometric composition of supplementary cementitious materials of various kinds in order to reduce power inputs in the technological processes of their production.
机译:研究已经建立了各种类型的补充水泥材料对低排放多组分水泥的物理和力学性能和结构形成的影响。获得了多组分水泥主要成分的粒度组成检查的结果,并进行了相对于体积和比表面的粒度分布的综合估计。事实证明,补充水泥材料的分散性的增加导致它们出血的降低和活动增加,但同时增加了机械激活的水需求和功耗。比较具有不同特征的主要非熟料组分的机械活化效率。实验研究证实,通过将粒径的含量增加至10μm的馏分含量来求解粒状高炉炉渣的液压活性的问题。然而,在制备高度活跃的造粒高炉炉渣时,用于研磨的能量输入显着生长,特别是在球磨机中。应该指出的是,在未来几年内预计水泥行业的优质渣的短缺。这需要寻找补充水泥材料的新组合,即天然沸石和粉煤灰,其具有优异的火山灰性能。在熟料因子为0.50的低排放水泥组合物中粒度和完全替代粒状高炉渣的研究表明,由于Pozzolanic添加剂的粒度组成的优化,确保了早期和标准强度的必要指标。与此同时,粘合剂强度随着硬化年龄而增加,在90天内超过标准强度30%。这使得可以调节由于超细沸石之间的火氨酸之间的波佐反应,粉煤灰和氢氧化钙,刺激了晶间空间中的水合物相的过程,并且压实了水泥基质的微观结构。结果表明,使用多元羧酸盐型超级塑化剂改性的低排放多组分水泥提供了技术,技术,经济和环境影响。因此,有几个能够达到获得熟料效率低排放多组分水泥的可行性通过优化各种补充水泥材料的粒度组成,以降低其生产技术过程中的功率投入。

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