Article ID Journal Published Year Pages File Type
154351 Chemical Engineering Science 2016 15 Pages PDF
Abstract

•Viscoelasticity effect on thread breakup in a flow-focusing device was studied.•Four breakup types were classified based on the rupture position of the thread.•Breakup dynamics includes flow-driven and elastocapillary stages.•Dynamics of neck thinning and stretching of viscoelastic thread was studied.•Evolution of the interfacial shape of the dispersed thread was investigated.

The breakup dynamics of the viscoelastic dispersed thread for droplet formation in a flow-focusing device was investigated by using a high-speed digital camera. Four breakup regimes of the viscoelastic thread were observed: besides the thread rupturing at both ends or at the downstream end likewise in Newtonian fluid, the breakup could also occur at the upstream end, displaying two additional patterns. For each breakup type, the breakup of the viscoelastic thread could be divided into a “flow-driven” stage controlled by the inertia of the dispersed phase and the dynamical radial pressure of the continuous phase, and an “elastocapillary” stage controlled by the elastic and capillary forces. The “elastocapillary” stage includes the stretching process and the fluid drainage process, depending on whether the balance between the elastic forces and the capillary forces reaches or not. The differences in breakup dynamics and liquid-liquid interface shape for the four breakup types depend exclusively on the elasticity of the viscoelastic thread.

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Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
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