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Effect of PCs superplasticizers on the rheological properties and hydration process of slag-blended cement pastes

机译:PC高效减水剂对矿渣掺合水泥浆的流变性质和水化过程的影响

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摘要

[EN] The effect of polycarboxylate (PC) superplasticizers with different structure on the rheological properties and hydration process of slag-blended cement pastes with a slag content between 0 and 75% has been studied. Fluidizing properties of PCs admixtures are significantly higher in slag-blended cement with respect to non-blended Portland cement. Also, it has been observed that the rise of the fluidity induced by the PCs on the cement pastes increases with the slag content. This effect is mainly attributed to a decrease in the amount of C3A available to adsorb and consume admixture to form an organo-mineral phase. Consequently, the PC admixtures are absorbed onto the silicate phases of the clinker and onto the slag particles, inducing a repulsion and the concomitant reduction in yield stress despite a reduction in the zeta potential. The rheological results allow us to conclude that the highest increase of the fluidity is caused by the admixtures with highest molecular weight due to the higher steric repulsion induced. As a consequence of the adsorption of the PCs, a delay of the hydration process of the pastes has been observed.
机译:[EN]研究了不同结构的聚羧酸盐(PC)高效减水剂对矿渣含量为0至75%的矿渣掺合水泥浆的流变性质和水合过程的影响。与非混合硅酸盐水泥相比,矿渣混合水泥中PC掺合料的流化性能明显更高。而且,已经观察到,由PC在水泥浆上引起的流动性的增加随矿渣含量的增加而增加。该效果主要归因于可用于吸附和消耗混合物以形成有机矿相的C3A量的减少。因此,PC混合物被吸收到熟料的硅酸盐相和炉渣颗粒上,尽管存在zeta电位降低,但仍会引起排斥并随之降低屈服应力。流变学结果使我们得出结论,流动性的最高增加是由于具有较高的空间排斥力而导致的具有最高分子量的混合物引起的。由于PC的吸附,已观察到糊的水合过程延迟。

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