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Transfer of a microfluid to a stochastic fibre network
Authors:M. Holmvall  T. Uesaka
Affiliation:a SCA R&D Centre, Box 716, Sidsjövägen 2, SE-851 21 Sundsvall, Sweden
b Fibre Science and Communication Network (FSCN), Mid Sweden University, SE-851 70 Sundsvall, Sweden
c FPInnovations-Paprican, 570 boul. St-Jean, Pointe-Claire, Québec, Canada H9R 3J9
d Royal Institute of Technology, Department of Fibre and Polymer Technology, Teknikringen 58, SE-100 44 Stockholm, Sweden
Abstract:The transfer of a microscopic fluid droplet from a flat surface to a deformable stochastic fibre network is investigated. Fibre networks are generated with different levels of surface roughness, and a two-dimensional, two-phase fluid-structure model is used to simulate the fluid transfer. In simulations, the Navier-Stokes equations and the Cahn-Hilliard phase-field equations are coupled to explicitly include contact line dynamics and free surface dynamics. The compressing fibre network is modelled as moving immersed boundaries. The simulations show that the amount of transferred fluid is approximately proportional to the contact area between the fluid and the fibre network. However, areas where the fluid bridges and never actually makes contact with the substrate must be subtracted.
Keywords:Fibre network   Flexo   Fluid-structure interaction   Fluid transfer   Moving boundaries   Two-phase flow
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