The dynamics of thin films on a horizontal solid substrate is investigated in the case of non-Newtonian fluids exhibiting normal stress differences, the rheology of which is strongly non-linear. Two coupled equations of evolution for the thickness of the film and the shear rate are proposed within the lubrication approximation. This framework is applied to the motion of an advancing contact line. The apparent dynamic contact angle is found to depend logarithmically on a lengthscale determined solely by the rheological properties of the fluid and the velocity of the contact line
Parametric studies and corresponding results are presented using a theological model based on the li...
We derive a novel thin film equation for linear viscoelastic media describable by generalized Maxwel...
This paper deals with the numerical simulation of thin liquid films flowing on partially wetting sol...
The dynamics of thin films on a horizontal solid substrate is investigated in the case of non-Newton...
The dynamics of a thin film on a horizontal solid substrate is investigated in the case of non-Newto...
We present an asymptotic analysis of the thickness of the liquid film that coats a smooth solid subs...
AbstractA shooting method is used to determine a solution to a third-order ODE modeling the steady p...
The formation of a thin film by (i) the slow penetration of a gas bubble into a liquid filled tube, ...
The spreading of complex fluids is a key process in the industry. Classic examples are the coating o...
The presence of a deformable free surface in thin films driven to spread by body or shear forces giv...
The thin film lubrication approximation has been studied extensively for moving contact lines of New...
Thinning and rupture of a thin film of a power-law fluid on a solid substrate under the balance betw...
Many industrial processes and natural phenomena involve flows of thin viscous liquid films, such as ...
When a liquid touches a solid surface, it spreads to minimize the system's energy. The classic thin-...
Consider the three-dimensional flow of a viscous Newtonian fluid upon an arbitrarily curved substra...
Parametric studies and corresponding results are presented using a theological model based on the li...
We derive a novel thin film equation for linear viscoelastic media describable by generalized Maxwel...
This paper deals with the numerical simulation of thin liquid films flowing on partially wetting sol...
The dynamics of thin films on a horizontal solid substrate is investigated in the case of non-Newton...
The dynamics of a thin film on a horizontal solid substrate is investigated in the case of non-Newto...
We present an asymptotic analysis of the thickness of the liquid film that coats a smooth solid subs...
AbstractA shooting method is used to determine a solution to a third-order ODE modeling the steady p...
The formation of a thin film by (i) the slow penetration of a gas bubble into a liquid filled tube, ...
The spreading of complex fluids is a key process in the industry. Classic examples are the coating o...
The presence of a deformable free surface in thin films driven to spread by body or shear forces giv...
The thin film lubrication approximation has been studied extensively for moving contact lines of New...
Thinning and rupture of a thin film of a power-law fluid on a solid substrate under the balance betw...
Many industrial processes and natural phenomena involve flows of thin viscous liquid films, such as ...
When a liquid touches a solid surface, it spreads to minimize the system's energy. The classic thin-...
Consider the three-dimensional flow of a viscous Newtonian fluid upon an arbitrarily curved substra...
Parametric studies and corresponding results are presented using a theological model based on the li...
We derive a novel thin film equation for linear viscoelastic media describable by generalized Maxwel...
This paper deals with the numerical simulation of thin liquid films flowing on partially wetting sol...