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Iron slag as fine aggregate replacement and nanosilica particles in self-compacting concrete mixtures

机译:铁渣作为细骨料替代和纳米硅颗粒在自压制混凝土混合物中

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A study of the mechanical behavior of self-compacting concrete mixtures under sand replacement (as fine aggregate) by iron slag (residue from industrial machining) from 0.0% to 50.0% of mass, variations of water/cementitious material ratio between 0.3 and 0.5 and nano SiO_2 incorporation between 0.0% and 2.0% by mass of cementitious materials is presented. Fresh state tests of slump flow were performed, and the main rheological parameters: static yield stress and plastic viscosity were determined from a rheometer. For the hardened state, compressive strength tests were performed. The study of iron slag incorporation and water/cementitious materials ratio variation was developed based on a statistical methodology of central composite design from axial points based on a 2~k factorial with central points, besides a posterior analysis of variance and Tukey's multiple comparison tests. The optimization of these variables was developed using response surface methodology on 7 days compressive strength results, from the statistical design, besides the posterior determination of nano SiO_2 effects on the optimized proportions. Among the most relevant results regarding the presence of iron slag, an increase in the early age compressive strength was found, with the optimized mixture strength being more than 100% higher than mixtures without iron slag at 7 days of curing. Regarding the effect of nano SiO_2 addition to the optimized mixture, a detriment of the rheological parameters and a consequent reduction of the workability were the most remarkable findings. With the obtained results, iron slag proves to be a feasible sand replacement in self-compacting concrete mixtures.
机译:铁渣(工业加工残渣)在砂浆(残渣)下自压力混凝土混合物的力学行为的研究从0.0%至50.0%,水/水泥材料比的变化0.3和0.5纳米SiO_2掺入0.0%和2.0质量%的水泥材料。进行了坍落度流动的新鲜状态试验,以及主要流变参数:从流变仪确定静态屈服应力和塑料粘度。对于硬化状态,进行压缩强度试验。基于基于轴向点的中央复合材料设计的统计方法,开发了对铁渣掺入和水/水泥质材料比变异的研究,除了基于2〜k因素的轴向,除了方差和Tuke的多比较试验之外,还为基于中央点的轴向点。除了对优化比例的纳米SiO_2效应的后测定外,通过7天的抗压强度产生的响应表面方法产生了这些变量的优化。在有关铁渣的存在的最相关结果中,发现早期抗压强度的增加,优化的混合强度比在固化的7天内没有铁渣的混合物高于100%。关于纳米SiO_2添加到优化的混合物中的影响,损害流变参数和随后的可加工性的降低是最显着的发现。通过所获得的结果,铁渣证明是一种可行的砂在自压制混凝土混合物中更换。

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