Abstract
The rheological behaviour of a 58 vol.% dispersion of styrene/acrylate particles in ethylene glycol was investigated using a plate-on-plate rheometer. Experimental results showed that the concentrated polymer dispersion exhibited a strong shear-thickening transition under both steady shear and dynamic oscillatory conditions. The low-frequency dynamic oscillatory behaviour could be reasonably interpreted in terms of the steady shear behaviour. Accordingly, the critical dynamic shear rate γ̇c-d, agreed well with the critical shear rate obtained in steady flow γ̇c-swhere γ̇c-dwas calculated as the maximum shear rate by the critical dynamic shear strain γc and the frequency ω, i.e. γ̇c-d = ωγc. However, during high-frequency dynamic oscillation, it was observed that the shear thickening occurred only when an apparent critical shear strain was reached, which could not be fully explained by the wall-slipping effect. Based on freeze fracture microscopic observations, the effect of the micro-sized flocculation of particles on the rheology of concentrated dispersions was also discussed. © 2010 Springer Science+Business Media, LLC.
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CITATION STYLE
Chang, L., Friedrich, K., Schlarb, A. K., Tanner, R., & Ye, L. (2011). Shear-thickening behaviour of concentrated polymer dispersions under steady and oscillatory shear. Journal of Materials Science, 46(2), 339–346. https://doi.org/10.1007/s10853-010-4817-5
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