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- W2005943078 abstract "Break-up of viscoelastic filaments is pervasive in both nature and technology. If a filament is formed by placing a drop of saliva between a thumb and forefinger and is stretched, the filament’s morphology close to break-up corresponds to beads of several sizes interconnected by slender threads. Although there is general agreement that formation of such beads-on-a-string (BOAS) structures occurs only for viscoelastic fluids, the underlying physics remains unclear and controversial. The physics leading to the formation of BOAS structures is probed by numerical simulation. Computations reveal that viscoelasticity alone does not give rise to a small, satellite bead between two much larger main beads but that inertia is required for its formation. Viscoelasticity, however, enhances the growth of the bead and delays pinch-off, which leads to a relatively long-lived beaded structure. We also show for the first time theoretically that yet smaller, sub-satellite beads can also form as seen in experiments. Although the formation of beads on filaments of saliva drawn between two solid surfaces is familiar to most people, the precise mechanism responsible for such behaviour has been hotly debated. Simulations reveal that inertial effects play a pivotal role in this process." @default.
- W2005943078 created "2016-06-24" @default.
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- W2005943078 date "2010-06-06" @default.
- W2005943078 modified "2023-10-07" @default.
- W2005943078 title "Formation of beads-on-a-string structures during break-up of viscoelastic filaments" @default.
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- W2005943078 doi "https://doi.org/10.1038/nphys1682" @default.
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