We characterize the different morphologies adopted by a drop of liquid placed on two randomly oriented fibers, which is a first step toward understanding the wetting of fibrous networks. The present work reviews previous modeling for parallel and touching crossed fibers and extends it to an arbitrary orientation of the fibers characterized by the tilting angle and the minimum spacing distance. Depending on the volume of liquid, the spacing distance between fibers and the angle between the fibers, we highlight that the liquid can adopt three different equilibrium morphologies: 1) a column morphology in which the liquid spreads between the fibers, 2) a mixed morphology where a drop grows at one end of the column or 3) a single drop located at...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
Various materials are made of long thin fibers that are randomly oriented to form a complex network ...
We characterize the different morphologies adopted by a drop of liquid placed on two randomly orient...
We characterize the different morphologies adopted by a drop of liquid placed on two randomly orient...
Abstract: We characterize the different morphologies adopted by a drop of liquid placed on two rando...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
International audienceWe investigate the wetting properties of the simplest element of an array of r...
International audienceWe investigate the wetting properties of the simplest element of an array of r...
We investigate the equilibrium morphology of a finite volume of liquid placed on two parallel rigid ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
We investigate the equilibrium morphology of a finite volume of liquid placed on two parallel rigid ...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
Various materials are made of long thin fibers that are randomly oriented to form a complex network ...
We characterize the different morphologies adopted by a drop of liquid placed on two randomly orient...
We characterize the different morphologies adopted by a drop of liquid placed on two randomly orient...
Abstract: We characterize the different morphologies adopted by a drop of liquid placed on two rando...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
International audienceWe investigate the wetting properties of the simplest element of an array of r...
International audienceWe investigate the wetting properties of the simplest element of an array of r...
We investigate the equilibrium morphology of a finite volume of liquid placed on two parallel rigid ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
International audienceWe investigate the equilibrium morphology of a finite volume of liquid placed ...
We investigate the equilibrium morphology of a finite volume of liquid placed on two parallel rigid ...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
We investigate the wetting properties of the simplest element of an array of random fibers: two rigi...
Various materials are made of long thin fibers that are randomly oriented to form a complex network ...