Rheological Behavior of Coating Colors: Influence of Thickener

Реологическое поведение красок для покрытия: влияние загустителя
Marie‐Claude Heuzey, M. Moan, Pierre J. Carreau, Agnès Page
2002-12-01

associative polymerscellulose thickenerkaolin suspensionsrheology modifiersviscosity and storage/loss moduli
Abstract In this work we have investigated the effect of rheology modifiers on the rheological properties of concentrated (65 solids mass%) kaolin suspensions and six different coating colors. Measurements have been performed on kaolin‐based suspensions, without rheology modifier and with either a classic cellulose thickener or associative polymers. It was noticed that suspensions containing a thickener had a much larger viscosity and storage and loss moduli than suspensions containing no rheology modifier. The enhancement of the rheological properties was found to be much more important for the suspensions containing the associative polymer. These observations have been related to steric stabilization of the suspensions, and to the occurrence of entanglements and bridging when the associative polymer was used as the thickener. The influence of the thickener on the rheological properties of the coating colors was found to be similar to that observed for the concentrated kaolin suspensions.
1
Adding a thickener to concentrated (65% solids) kaolin suspensions substantially increases viscosity and storage and loss moduli compared to no rheology modifier.
2
Associative polymer thickeners produce a much greater enhancement of rheological properties than classic cellulose thickeners.
3
The effect of thickeners on rheological properties of six different coating colors mirrors the effects observed in concentrated kaolin suspensions.
4
The enhanced rheology with associative polymers is attributed to steric stabilization plus entanglements and bridging induced by the polymer.

Concentrated kaolin suspensions and six different coating colors formulated with/without rheology modifiers

Influence of thickeners (cellulose and associative polymers) on rheological properties—viscosity, storage and loss moduli—via mechanisms such as steric stabilization, entanglement and polymer bridging

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2002-12-01
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Authors
Marie‐Claude Heuzey
M. Moan
Pierre J. Carreau
Agnès Page
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