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Effect of sedimentation on the rheological properties of cement pastes

机译:沉积对水泥浆料流变性质的影响

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Rheology has been widely used to describe the flow properties of fresh cement-based suspensions. Nevertheless, the characterization and understanding of the rheological behavior of cement-based materials have become essential with the recent introduction of novel applications like digital construction in the field of civil engineering, among others. It has been well documented that concrete and mortar may suffer stability problems (i.e. the ability of the mixture to maintain homogeneous). At the scale of cement paste, this phenomenon can still arise and affect the rheological properties of the measured paste. Therefore, inaccuracies during the measurements and incorrect interpretation may occur, resulting in erroneous conclusions. This study explores the impact of sedimentation of cement particles when characterizing the rheological properties of cement paste. The w/ c employed in the pastes were 0.45 and 0.35 with the addition of superplasticizer to obtain a dispersed system. The rheological properties were measured using a coaxial cylinder configuration and followed up to 180 min after the contact between cement and water. Repeated measurements were executed with and without a homogenization procedure after each application of a measuring procedure. Comparing the results shows a clear influence of sedimentation on the evolution of rheological properties with time, and the effect is more pronounced for the mixtures with high w/c and for the procedure with the larger shear rate. Therefore, it is strongly recommended to keep a measuring procedure sufficiently short in duration.
机译:流变学已广泛用于描述新鲜水泥基悬浮液的流动性能。然而,对水泥基材料的流变行为的表征和理解对最近在土木工程领域的数字建筑等新颖应用引入新颖的应用中,是必不可少的。它已经充分地记录了混凝土和砂浆可能遭受稳定性问题(即混合物维持均匀的能力)。在水泥浆料的规模中,这种现象仍然会产生并影响测量浆料的流变性质。因此,可能发生测量期间的不准确性和不正确的解释,导致错误结论。该研究探讨了在表征水泥浆料流变性质时沉淀水泥颗粒的影响。糊状物中使用的w / c为0.45和0.35,加入过度塑化剂以获得分散体系。使用同轴气缸构造测量流变性质,然后在水泥和水之间的接触后随访180分钟。在每次应用测量过程后,在没有均质化程序的情况下执行重复测量。比较结果表明,沉降对随着时间的推移的流变性能的演变的明显影响,并且对具有高W / C的混合物和剪切速率较大的程序更为显着。因此,强烈建议在持续时间内保持测量过程。

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