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Particle packing and rheology of cement pastes at different replacement levels of cement by alpha-Al2O3 submicron particles

机译:α-Al2O3亚微米颗粒在不同置换水平下水泥浆的颗粒堆积和流变性

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The aim of this study was to clarify the micro-scale processes which control the fresh and hardened properties of hydrating cement pastes containing up to 10 wt% of alpha-Al2O3 submicron particles and a polycarboxylate-type superplasticizer. The main factor controlling the changes in the microstructure and properties of the fresh pastes with increasing alpha-Al2O3 cement replacement levels was found to be the increase in the total specific surface area, whereas particle packing played only a minor role. However, in the case of the hardened pastes much more complex and somewhat counteracting effects were observed. Depending on the cement replacement level of the pastes, the sum of these effects was either a hardly noticeable improvement in their mechanical properties, compared to those of the reference paste, or even a reduction in them. These differences decreased with increasing curing time. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是阐明微观过程,该过程控制着含水水泥浆的新鲜和硬化特性,该浆体含有高达10 wt%的α-Al2O3亚微米颗粒和一种聚羧酸盐型高效减水剂。发现随着α-Al2O3水泥替代量的增加,控制新鲜浆料的微观结构和性能变化的主要因素是总比表面积的增加,而颗粒堆积仅起很小的作用。但是,在硬化糊剂的情况下,观察到的情况要复杂得多,并且有些抵消作用。取决于糊料的水泥替代水平,这些效果的总和与参考糊料相比在机械性能上几乎没有明显改善,或者甚至降低了。这些差异随着固化时间的增加而减小。 (C)2017 Elsevier Ltd.保留所有权利。

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