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Compatibility between polycarboxylate-based admixtures and blended-cement pastes

机译:聚羧酸盐基外加剂与水泥浆的相容性

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Compatibility between three structurally different PCEs and four commercial cements: one non-blended cement and three blended cements, was studied by adsorption, zeta potential, Theological and calorimetric methods. According to the adsorption curve results, the higher the percentage of carboxylates groups in the admixture, the more intensely it is adsorbed on cement pastes. Moreover, admixtures were shown to be adsorbed by the additions as well, being most effectively adsorbed in limestone. From the rheological point of view, the optimum carboxylate group/ester group ratio for the admixtures used in the present study was found to range from 0.7 to 1.2. The fluidizing effect of the admixtures on cement pastes is conditioned by the presence of mineral additions. Despite the low adsorption rates of the admixtures in slag-blended cements, the inclusion of PCEs generated the steepest declines in the rheological parameters. The delay of admixtures on cement hydration intensifies with rising PCE dosage. This admixture-mediated retarding effect was also observed to vary depending on the nature of the addition, and was most intense in slag-blended cement.
机译:通过吸附,ζ电位,流变学和量热法研究了三种结构不同的PCE与四种商业水泥:一种非共混水泥和三种掺合水泥之间的相容性。根据吸附曲线结果,混合物中羧酸盐基团的百分比越高,它在水泥浆中的吸附就越强烈。此外,添加剂也被添加剂吸附,最有效地吸附在石灰石中。从流变学的角度来看,发现本研究中所用混合物的最佳羧酸根/酯基比为0.7至1.2。掺合料对水泥浆的流化效果取决于矿物添加剂的存在。尽管掺混料在矿渣掺合水泥中的吸附率很低,但PCE的加入却使流变参数下降最严重。外加剂在水泥水化中的延迟随着PCE用量的增加而加剧。还观察到这种掺合剂介导的阻滞作用随添加物的性质而变化,并且在矿渣掺合水泥中最为强烈。

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