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20182021
most citedSpreading on viscoelastic solids: Are contact angles selected by Neumann's law?

1 citations · 1 across the 2 of their papers we have counts for

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physics.flu-dyn2020

Regimes of Soft Lubrication

Martin Essink, Anupam Pandey, Stefan Karpitschka +2

Elastohydrodynamic lubrication, or simply soft lubrication, refers to the motion of deformable objects near a boundary lubricated by a fluid, and is one of the key physical mechani…

physics.flu-dyn2020

Wetting of two-component drops: Marangoni contraction versus autophobing

Michiel A. Hack, Wojciech Kwieciński, Olinka Ramírez-Soto +4

The wetting properties of multi-component liquids are crucial to numerous industrial applications. The mechanisms that determine the contact angles for such liquids remain poorly u…

physics.flu-dyn2018

Solutal Marangoni flow as the cause of ring stains from drying salty colloidal drops

Alvaro Marin, Stefan Karpitschka, Diego Noguera-Marín +4

Evaporating salty droplets are ubiquitous in nature, in our home and in the laboratory. Interestingly, the transport processes in such apparently simple systems differ strongly fro…

physics.flu-dyn2018

Printing wet-on-wet: attraction and repulsion of drops on a viscous film

M. A. Hack, M. Costalonga, T. Segers +3

Wet-on-wet printing is frequently used in inkjet printing for graphical and industrial applications, where substrates can be coated with a thin liquid film prior to ink drop deposi…

physics.flu-dyn2018

Delayed coalescence of surfactant containing sessile droplets

Myrthe A. Bruning, Maxime Costalonga, Stefan Karpitschka +1

When two sessile drops of the same liquid touch, they merge into one drop, driven by capillarity. However, the coalescence can be delayed, or even completely stalled for a substant…