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Nonspherical armoured bubble vibration

Soft Matter · 2017 · Vol. 13(21) · pp. 3879–3884
Gaurav PrabhudesaiIlyesse BihiFarzam ZoueshtiaghJobin JoseMichaël Baudoin

Abstract

In this paper, we study the dynamics of cylindrical armoured bubbles excited by mechanical vibrations. A step by step transition from cylindrical to spherical shape is reported as the intensity of the vibration is increased, leading to a reduction of the bubble surface and a dissemination of the excess particles. We demonstrate through energy balance that nonspherical armoured bubbles constitute a metastable state. The vibration instills the activation energy necessary for the bubble to return to its least energetic stable state: a spherical armoured bubble. At this point, particle desorption can only be achieved through higher amplitude of excitation required to overcome capillary retention forces. Nonspherical armoured bubbles open perspectives for tailored localized particle dissemination with limited excitation power.

Pickering emulsions and particle stabilizationParticle Dynamics in Fluid FlowsMinerals Flotation and Separation TechniquesBubbleVibrationParticle (ecology)MechanicsExcited stateMetastabilityExcitationAmplitudeCapillary actionPhysics
Citations
419
FWCI
9.67
field-weighted impact
References
25
Percentile
99%
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References
The Dynamics of Cavitation Bubbles
Journal of Applied Mechanics · 1949 · 1,335 citations
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