We extended a mathematical model for the drying of sessile droplets, based on the lubrication approximation, to binary mixture droplets. This extension is relevant for e.g. inkjet printing applications, where ink consisting of several components are used. The extension involves the generalization of an established vapor diffusion-limited evaporation model to multi-component mixtures. The different volatilities of the liquid components generate a composition gradient at the liquid-air interface. The model takes the composition-dependence of the mass density, viscosity, surface tension, mutual diffusion coefficient and thermodynamic activities into account. This leads to a variety of effects ranging from solutal Marangoni flow over deviations...
Ink-jet printing requires to perfectly control both the jetting of droplets and the subsequent dropl...
\u3cp\u3eThe evaporation of sessile multi-component droplets is modeled with an axisymmetic finite e...
Droplet evaporation of multicomponent droplets is essential for various physiochemical applications,...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
Ink-jet printing requires to perfectly control both the jetting of droplets and the subsequent dropl...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
Ink-jet printing requires to perfectly control both the jetting of droplets and the subsequent dropl...
\u3cp\u3eThe evaporation of sessile multi-component droplets is modeled with an axisymmetic finite e...
Droplet evaporation of multicomponent droplets is essential for various physiochemical applications,...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
We extended a mathematical model for the drying of sessile droplets, based on the lubrication approx...
Ink-jet printing requires to perfectly control both the jetting of droplets and the subsequent dropl...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
The evaporation of sessile multi-component droplets is modeled with an axisymmetic finite element me...
Ink-jet printing requires to perfectly control both the jetting of droplets and the subsequent dropl...
\u3cp\u3eThe evaporation of sessile multi-component droplets is modeled with an axisymmetic finite e...
Droplet evaporation of multicomponent droplets is essential for various physiochemical applications,...