arXiv · 2506.07742
Interface Fragmentation via Horizontal Vibration: A Pathway to Scalable Monodisperse Emulsification
Abstract
We present a scalable method for producing monodisperse micro-scale emulsions in a rectangular container holding two stably stratified layers of immiscible liquids by applying horizontal vibration. This setup enables the excitation of a single line of ordered Faraday waves along each end wall when viscous forces dominate interfacial dynamics. Our experiments and theoretical modelling show that the critical non-dimensional acceleration for the breakup of the wave tips in a regular array of droplets scales as $N^{-1/2} \omega^{*3/2}$, where $N$ is the kinematic viscosity ratio and $\omega^{*}$ is the frequency of forcing on the viscous-capillary scale. The droplet diameter can be easily tuned by varying the forcing parameters, and the number of droplets generated per cycle is proportional to the width of the container.
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Linfeng Piao, Anne Juel. 2025-06-09. Interface Fragmentation via Horizontal Vibration: A Pathway to Scalable Monodisperse Emulsification. https://doi.org/10.1103/m3tt-48jx
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