Recent experiments on coating flows and liquid drop impact both demonstrate that wetting failures caused by air entrainment can be suppressed by reducing the ambient gas pressure. Here, it is shown that non-equilibrium effects in the gas can account for this behaviour, with ambient pressure reductions increasing the mean free path of the gas and hence the Knudsen number Kn. These effects first manifest themselves through Maxwell slip at the boundaries of the gas, so that for sufficiently small Kn they can be incorporated into a continuum model for dynamic wetting flows. The resulting mathematical model contains flow structures on the nano-, micro- and millimetre scales and is implemented into a computational platform developed specifically ...
Recent years see increasing studies of air entrapment during droplet impacting on a solid surface wi...
YesThe coating flow examined here, labelled angled dip coating, is that where a substrate enters a p...
During forced wetting above a critical speed, visible amounts of air are entrained betweena liquid a...
YesThis study examines experimentally and for the first time the effect of reduced air pressure on d...
The maximum speed at which a liquid can wet a solid is limited by the need to displace gas lubricati...
A model is developed for liquid drop impact on a solid surface that captures the thin film gas flow ...
All available dynamic contact angle theories [1] suggest that the dynamic contact angle will not be ...
YesDynamic wetting failure was observed in the simple dip coating flow with a series of substrates, ...
University of Minnesota Ph.D. dissertation. July 2013. Major: Chemical Engineering. Advisors: Satish...
Air entrainment studies in dip coating have formed over many years the essential experimental tool t...
Blake et al. [Blake, T.D., Clarke, A. and Ruschak, K.J., 1994, Hydrodynamic assist of dynamic wettin...
We study air entrainment by a solid plate plunging into a viscous liquid, theoretically and numerica...
The spreading of liquid droplets impacting a surface at high speed is well understood by now. Howeve...
NoThis study assesses experimentally the role of gas dissolution in gas entrainment which hitherto h...
We investigate two parameters, gas pressure and substrate roughness, that control the dynamics of sp...
Recent years see increasing studies of air entrapment during droplet impacting on a solid surface wi...
YesThe coating flow examined here, labelled angled dip coating, is that where a substrate enters a p...
During forced wetting above a critical speed, visible amounts of air are entrained betweena liquid a...
YesThis study examines experimentally and for the first time the effect of reduced air pressure on d...
The maximum speed at which a liquid can wet a solid is limited by the need to displace gas lubricati...
A model is developed for liquid drop impact on a solid surface that captures the thin film gas flow ...
All available dynamic contact angle theories [1] suggest that the dynamic contact angle will not be ...
YesDynamic wetting failure was observed in the simple dip coating flow with a series of substrates, ...
University of Minnesota Ph.D. dissertation. July 2013. Major: Chemical Engineering. Advisors: Satish...
Air entrainment studies in dip coating have formed over many years the essential experimental tool t...
Blake et al. [Blake, T.D., Clarke, A. and Ruschak, K.J., 1994, Hydrodynamic assist of dynamic wettin...
We study air entrainment by a solid plate plunging into a viscous liquid, theoretically and numerica...
The spreading of liquid droplets impacting a surface at high speed is well understood by now. Howeve...
NoThis study assesses experimentally the role of gas dissolution in gas entrainment which hitherto h...
We investigate two parameters, gas pressure and substrate roughness, that control the dynamics of sp...
Recent years see increasing studies of air entrapment during droplet impacting on a solid surface wi...
YesThe coating flow examined here, labelled angled dip coating, is that where a substrate enters a p...
During forced wetting above a critical speed, visible amounts of air are entrained betweena liquid a...