The effect of fluid rheology on particle migration induced by fluid viscoelasticity in a square-shaped microchannel is reported. Three water polymer solutions of PolyEthylene Oxyde at different concentrations, corresponding to different elasticity and degree of shear thinning, are prepared and rheologically characterized. Experiments are carried out for a wide range of flow rates, and the particle distributions over the channel cross section are reconstructed by combining particle tracking measurements and numerical simulations of the fluid velocity profile. The particle distributions show that the migration direction strongly depends on the fluid rheology. Specifically, when particles explore the constant viscosity region of the suspending...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
In this work, we investigate the influence of channel structure and fluid rheology on non-inertial m...
The effect of fluid rheology on particle migration induced by fluid viscoelasticity in a square-shap...
The effect of fluid rheology on particle migration induced by fluid viscoelasticity in a square-shap...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
In this work, we investigate the influence of channel structure and fluid rheology on non-inertial m...
In this work, we investigate the influence of channel structure and fluid rheology on non-inertial m...
The fast growth of microfluidic applications based on complex fluids is a result of the unique fluid...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
In this work, we investigate the influence of channel structure and fluid rheology on non-inertial m...
The effect of fluid rheology on particle migration induced by fluid viscoelasticity in a square-shap...
The effect of fluid rheology on particle migration induced by fluid viscoelasticity in a square-shap...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
The viscoelasticity-induced migration of a sphere in pressure-driven flow in a square-shaped microch...
In this work, we investigate the influence of channel structure and fluid rheology on non-inertial m...
In this work, we investigate the influence of channel structure and fluid rheology on non-inertial m...
The fast growth of microfluidic applications based on complex fluids is a result of the unique fluid...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
Microrheometry is very important for exploring rheological behaviours of several systems when conven...
In this work, we investigate the influence of channel structure and fluid rheology on non-inertial m...