Dynamics of particle aggregation in dewetting films of complex liquids

Fuente: arXiv
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Autori principali: Zhang, J., Sibley, D. N., Tseluiko, D., Archer, A. J.
Natura: Preprint
Pubblicazione: 2024
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author Zhang, J.
Sibley, D. N.
Tseluiko, D.
Archer, A. J.
author_facet Zhang, J.
Sibley, D. N.
Tseluiko, D.
Archer, A. J.
contents We consider the dynamic wetting and dewetting processes of films and droplets of complex liquids on planar surfaces, focusing on the case of colloidal suspensions, where the particle interactions can be sufficiently attractive to cause agglomeration of the colloids within the film. This leads to an interesting array of dynamic behaviours within the liquid and of the liquid-air interface. Incorporating concepts from thermodynamics and using the thin-film approximation, we construct a model consisting of a pair of coupled partial differential equations that represent the evolution of the liquid film and the effective colloidal height profiles. We determine the relevant phase behaviour of the uniform system, including finding associated binodal and spinodal curves, helping to uncover how the emerging behaviour depends on the particle interactions. Performing a linear stability analysis of our system enables us to identify parameter regimes where agglomerates form, which we independently confirm through numerical simulations and continuation of steady states, to construct bifurcation diagrams. We obtain various dynamics such as uniform colloidal profiles in an unstable situation evolving into agglomerates and thus elucidate the interplay between dewetting and particle aggregation in complex liquids on surfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2404_19701
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dynamics of particle aggregation in dewetting films of complex liquids
Zhang, J.
Sibley, D. N.
Tseluiko, D.
Archer, A. J.
Fluid Dynamics
Soft Condensed Matter
We consider the dynamic wetting and dewetting processes of films and droplets of complex liquids on planar surfaces, focusing on the case of colloidal suspensions, where the particle interactions can be sufficiently attractive to cause agglomeration of the colloids within the film. This leads to an interesting array of dynamic behaviours within the liquid and of the liquid-air interface. Incorporating concepts from thermodynamics and using the thin-film approximation, we construct a model consisting of a pair of coupled partial differential equations that represent the evolution of the liquid film and the effective colloidal height profiles. We determine the relevant phase behaviour of the uniform system, including finding associated binodal and spinodal curves, helping to uncover how the emerging behaviour depends on the particle interactions. Performing a linear stability analysis of our system enables us to identify parameter regimes where agglomerates form, which we independently confirm through numerical simulations and continuation of steady states, to construct bifurcation diagrams. We obtain various dynamics such as uniform colloidal profiles in an unstable situation evolving into agglomerates and thus elucidate the interplay between dewetting and particle aggregation in complex liquids on surfaces.
title Dynamics of particle aggregation in dewetting films of complex liquids
topic Fluid Dynamics
Soft Condensed Matter
url https://arxiv.org/abs/2404.19701