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Effect of Pyrogenic Silica and Nanosilica on Portland Cement Matrices

机译:热解二氧化硅和纳米二氧化硅对硅酸盐水泥基体的影响

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摘要

In this work, the effect of pyrogenic silica and nanosilica on the properties of portland cement matrices is compared. Two chemically and mineralogically similar mineral additions (amorphous silica) with different particle size and specific surface area were used to prepare pastes and mortars with different solids substitutions of cement by silica. These samples were used to measure water and superplasticizer demand, setting time, hydration kinetics, water absorption by capillary suction, and compressive strength. It was found that specific surface area, rather than particle size, played a crucial role in the amount of water and superplasticizer necessary to obtain a desired workability in pastes and mortars. Such water and superplasticizer demands had a delaying effect on the setting time and hydration kinetics of pastes. Nevertheless, compressive strength results at different curing ages of mortars were found to have a direct correlation with the porous structure of the matrix, rather than with the specific surface area of the silica particles. It was concluded that regardless of its higher specific surface area and greater effect on the fresh state properties of pastes, pyrogenic silica was less efficient than nanosilica to increase the compressive strength of mortars, being considered a less efficient pozzolanic material.
机译:在这项工作中,比较了热解二氧化硅和纳米二氧化硅对硅酸盐水泥基体性能的影响。使用两种化学和矿物学上相似的矿物添加剂(无定形二氧化硅),它们具有不同的粒径和比表面积,以制备水泥对水泥的固体替代物不同的浆料和砂浆。这些样品用于测量水和高效减水剂的需求量,凝结时间,水合动力学,毛细管抽吸的吸水率和抗压强度。已经发现,比表面积而不是粒度对在糊料和砂浆中获得所需的可加工性所需的水和高效减水剂的数量起着至关重要的作用。这种水和高效减水剂的要求对糊剂的凝固时间和水合动力学具有延迟作用。然而,发现灰浆在不同固化年龄下的抗压强度结果与基体的多孔结构直接相关,而不与二氧化硅颗粒的比表面积直接相关。得出的结论是,无论热解二氧化硅的比表面积较高,还是对糊料的新鲜状态性能产生较大影响,其提高纳米砂浆抗压强度的效率均不如纳米二氧化硅,被认为是效率较低的火山灰材料。

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