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The electrostatic and steric repulsion induced by different superplasticizers on ground granulated blast furnace slag in alkaline media have been studied. The superplasticizers were sulfonated naphthalene, sulfonated melamine, vinyl copolymer, and polycarboxylate- based admixtures. With these superplasticizers the slag suspensions had negative zeta potentials, ranging from -3 to -10 mV. For the first time the adsorbed layer thicknesses for superplasticizers on slag using colloidal probe atomic force microscopy has been measured. To model the interparticle force interactions an effective Hamaker constant was computed from dielectric properties measured on a dense slag sample produced by spark plasma sintering. The obtained results conclude that the dispersion mechanism for all the superplasticizers studied in the present work is mainly dominated by the steric repulsion. Results were then used in a yield stress model, YODEL, to predict the yield stress with and without the superplasticizers. Predictions of the yield stress agreed well with experimental results.
suspensiones, surfaces, Suspensions, Reología, 540 Chemistry, suspensions, reología, Materials of engineering and construction. Mechanics of materials, Dispersion; Ground granulated blast furnace slag; Surfaces; Suspensions; Rheology; Dispersión; Escoria granulada de horno alto; Superficies; Suspensiones; Reología, Escoria granulada de horno alto, ground granulated blast furnace slag, escoria granulada de horno alto, Suspensiones, Ground granulated blast furnace slag, Dispersion, 620 Engineering, Dispersión, Surfaces, Superficies, TA401-492, 570 Life sciences; biology, dispersion, rheology, superficies, Rheology, dispersión
suspensiones, surfaces, Suspensions, Reología, 540 Chemistry, suspensions, reología, Materials of engineering and construction. Mechanics of materials, Dispersion; Ground granulated blast furnace slag; Surfaces; Suspensions; Rheology; Dispersión; Escoria granulada de horno alto; Superficies; Suspensiones; Reología, Escoria granulada de horno alto, ground granulated blast furnace slag, escoria granulada de horno alto, Suspensiones, Ground granulated blast furnace slag, Dispersion, 620 Engineering, Dispersión, Surfaces, Superficies, TA401-492, 570 Life sciences; biology, dispersion, rheology, superficies, Rheology, dispersión
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