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- W86382617 abstract "The interaction of aggregate structure and rheology in concentrated suspensions of sub-micron sized aggregating particles is examined by population balance modeling. Aggregation by shear and Brownian motion of particles is taken into account by an additive superposition of the respective kernels in the population balance equation. Fragmentation is described by an empirical kernel coupled with a material law. With this model, kinetics of aggregate size distributions and of rheological changes as well as equilibrium flow curves are simulated for varied particle sizes and concentrations. For larger particles, shear is the dominating aggregation mechanism, whereas for smaller particles Brownian motion gains importance. The Brownian motion influences the aggregation kinetics mainly in the early stages while its influence in steady state is negligible due to the relatively large aggregate size." @default.
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- W86382617 date "2003-01-01" @default.
- W86382617 modified "2023-09-27" @default.
- W86382617 title "AGGREGATION AND FRAGMENTATION IN CONCENTRATED SUB-MICRON SUSPENSIONS" @default.
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