Drop deformation in a planar elongational flow: Impact of surfactant dynamics - Archive ouverte HAL
Article Dans Une Revue Soft Matter Année : 2024

Drop deformation in a planar elongational flow: Impact of surfactant dynamics

Résumé

Drops in extensional flow undergo a deformation, which is primarily fixed by a balance between their surface tension and the viscous stress. This deformation, predicted and measured by Taylor 1 on millimetric drops, is expected to be affected by the presence of surfactants but has never been measured systematically. We provide a controlled experiment allowing to measure this deformation as a function of the drop size and of the shear stress for different surfactants at varying concentrations. Our observation is that the deformation predicted by Taylor is recovered at zero and high surfactant concentration, whereas it is smaller at concentrations close to the critical micellar concentration. This is in contradiction with the existing analytical models. We develop a new analytical model, taking into account the surfactant dynamics. The model predicts a transition between a deformation similar to the one of a pure liquid and a smaller one. We show that the transition is driven by a parameter K L , which compares adsorption and desorption dynamics. Finally, the concentration C * , at which we observe this transition in the extensional flow is in good agreement with the one predicted by independent measurement of K L .

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mercredi 16 avril 2025
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Dates et versions

hal-04740537 , version 1 (16-10-2024)
hal-04740537 , version 2 (22-10-2024)

Identifiants

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Julian Wailliez, Paul Regazzi, Anniina Salonen, Paul G Chen, Marc Jaeger, et al.. Drop deformation in a planar elongational flow: Impact of surfactant dynamics. Soft Matter, 2024, ⟨10.1039/D4SM00642A⟩. ⟨hal-04740537v1⟩
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