We study air entrainment by a solid plate plunging into a viscous liquid, theoretically and numerically. At dimensionless speeds of order unity, a near-cusp forms due to the presence of a moving contact line. The radius of curvature of the cusp’s tip scales with the slip length multiplied by an exponential of . The pressure from the air flow drawn inside the cusp leads to a bifurcation, at which air is entrained, i.e. there is ‘wetting failure’. We develop an analytical theory of the threshold to air entrainment, which predicts the critical capillary number to depend logarithmically on the viscosity ratio, with corrections coming from the slip in the gas phase
University of Minnesota Ph.D. dissertation. July 2013. Major: Chemical Engineering. Advisors: Satish...
International audienceWe investigate a possibility to regularize the hydrodynamic contact line singu...
We directly measure the rapid spreading dynamics succeeding the impact of a droplet of fluid on a so...
We study air entrainment by a solid plate plunging into a viscous liquid, theoretically and numerica...
The entrainment of air by advancing contact lines is studied by plunging a solid plate into a very v...
Recent experiments on coating flows and liquid drop impact both demonstrate that wetting failures ca...
We study the dynamics of the interface between two immiscible fluids in contact with a chemically ho...
Introduction. The coating of liquids onto solids is an important industrial process. A prerequisite ...
Blake et al. [Blake, T.D., Clarke, A. and Ruschak, K.J., 1994, Hydrodynamic assist of dynamic wettin...
YesThis study examines experimentally and for the first time the effect of reduced air pressure on d...
YesDynamic wetting failure was observed in the simple dip coating flow with a series of substrates, ...
A solid surface can be coated by a thin film when the solid is withdrawn out of a bath of liquid. Th...
We report on the onset of fluid entrainment when a contact line is forced to advance over a dry soli...
We report experiments on the rapid contact-line motion present in the early stages of capillary-driv...
All available dynamic contact angle theories [1] suggest that the dynamic contact angle will not be ...
University of Minnesota Ph.D. dissertation. July 2013. Major: Chemical Engineering. Advisors: Satish...
International audienceWe investigate a possibility to regularize the hydrodynamic contact line singu...
We directly measure the rapid spreading dynamics succeeding the impact of a droplet of fluid on a so...
We study air entrainment by a solid plate plunging into a viscous liquid, theoretically and numerica...
The entrainment of air by advancing contact lines is studied by plunging a solid plate into a very v...
Recent experiments on coating flows and liquid drop impact both demonstrate that wetting failures ca...
We study the dynamics of the interface between two immiscible fluids in contact with a chemically ho...
Introduction. The coating of liquids onto solids is an important industrial process. A prerequisite ...
Blake et al. [Blake, T.D., Clarke, A. and Ruschak, K.J., 1994, Hydrodynamic assist of dynamic wettin...
YesThis study examines experimentally and for the first time the effect of reduced air pressure on d...
YesDynamic wetting failure was observed in the simple dip coating flow with a series of substrates, ...
A solid surface can be coated by a thin film when the solid is withdrawn out of a bath of liquid. Th...
We report on the onset of fluid entrainment when a contact line is forced to advance over a dry soli...
We report experiments on the rapid contact-line motion present in the early stages of capillary-driv...
All available dynamic contact angle theories [1] suggest that the dynamic contact angle will not be ...
University of Minnesota Ph.D. dissertation. July 2013. Major: Chemical Engineering. Advisors: Satish...
International audienceWe investigate a possibility to regularize the hydrodynamic contact line singu...
We directly measure the rapid spreading dynamics succeeding the impact of a droplet of fluid on a so...