Liquid droplets impacting a superhydrophobic surface decorated with micron-scale posts often bounce off the surface. However, by decreasing the impact velocity, droplets may land on the surface in a fakir state, and by increasing it, posts may impale droplets that are then stuck on the surface. We use a two-phase lattice Boltzmann model to simulate droplet impact on superhydrophobic surfaces, and show that it may result in a fakir state also for reasonable high impact velocities. This happens more easily if the surface is made more hydrophobic or the post height is increased, thereby making the impaled state energetically less favourable
The impact of a liquid droplet on a solid surface is one of the most common phenomena in nature and ...
Bouncing dynamics of impact droplets on solid surfaces intensively appeal to researchers due to the ...
Bouncing dynamics of impact droplets on solid surfaces intensively appeal to researchers due to the ...
When a liquid drop impinges a hydrophobic rough surface it can either bounce off the surface (fakir ...
Although the impingement of droplets on superhydrophobic surfaces has been extensively studied, the ...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
We numerically investigate bouncing and non-bouncing of droplets during isothermal impact on superhy...
The impact dynamics and spreading behavior of droplets impinging on structured superhydrophobic surf...
We present a lattice Boltzmann solution of the equations of motion describing the spreading of dropl...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
The wettability of hydrophobic surfaces and the dynamic behaviors of droplets impacting on hydrophob...
We present a lattice Boltzmann solution of the equations of motion describing the spreading of dropl...
Superhydrophobic surfaces for repelling impacting water droplets are typically created by designing ...
The impact of a liquid droplet on a solid surface is one of the most common phenomena in nature and ...
Bouncing dynamics of impact droplets on solid surfaces intensively appeal to researchers due to the ...
Bouncing dynamics of impact droplets on solid surfaces intensively appeal to researchers due to the ...
When a liquid drop impinges a hydrophobic rough surface it can either bounce off the surface (fakir ...
Although the impingement of droplets on superhydrophobic surfaces has been extensively studied, the ...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
We show that the equilibrium state of a water drop deposited on a superhydrophobic surface cannot be...
Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practica...
We numerically investigate bouncing and non-bouncing of droplets during isothermal impact on superhy...
The impact dynamics and spreading behavior of droplets impinging on structured superhydrophobic surf...
We present a lattice Boltzmann solution of the equations of motion describing the spreading of dropl...
We study the wetting energetics and wetting hysteresis of sessile and impacting water droplets on su...
The wettability of hydrophobic surfaces and the dynamic behaviors of droplets impacting on hydrophob...
We present a lattice Boltzmann solution of the equations of motion describing the spreading of dropl...
Superhydrophobic surfaces for repelling impacting water droplets are typically created by designing ...
The impact of a liquid droplet on a solid surface is one of the most common phenomena in nature and ...
Bouncing dynamics of impact droplets on solid surfaces intensively appeal to researchers due to the ...
Bouncing dynamics of impact droplets on solid surfaces intensively appeal to researchers due to the ...