Wetting mechanisms on rough surfaces were understood from either a monolayer or a multiscale perspective. However, it has recently been shown that the bi-Gaussian stratified nature of real surfaces should be accounted for when modeling mechanisms of lubrication, sealing, contact, friction, acoustic emission, and manufacture. In this work, a model combining Wenzel and Cassie theories was put forward to predict the static contact angle of a droplet on a bi-Gaussian stratified surface. The model was initially applied to numerically simulated surfaces and subsequently demonstrated on hydrophilic steel and hydrophobic self-assembled monolayer specimens with preset bi-Gaussian stratified topographies. In the Wenzel state, both the upper and the l...
The paper proposes a general framework allowing the analysis of wetting problems in the si...
The paper proposes a general framework allowing the analysis of wetting problems in the si...
The need for connecting the intrinsic material wettability with surface geometry, adhesion to liquid...
Wetting mechanisms on rough surfaces were understood from either a monolayer or a multiscale perspec...
Wetting mechanisms on rough surfaces were understood from either a monolayer or a multiscale perspec...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
We present numerical studies of wetting on various topographic substrates, including random topograp...
We present numerical studies of wetting on various topographic substrates, including random topograp...
We present numerical studies of wetting on various topographic substrates, including random topograp...
Rough/patterned/textured surfaces with nano/microcavities that broaden below the surface known as &q...
The wetting/non-wetting properties of a liquid drop in contact with a chemically hydrophobic rough s...
The wetting/non-wetting properties of a liquid drop in contact with a chemically hydrophobic rough s...
The wetting/non-wetting properties of a liquid drop in contact with a chemically hydrophobic rough s...
The study of wetting phenomena is of great interest due to the multifaceted technological applicatio...
The paper proposes a general framework allowing the analysis of wetting problems in the si...
The paper proposes a general framework allowing the analysis of wetting problems in the si...
The need for connecting the intrinsic material wettability with surface geometry, adhesion to liquid...
Wetting mechanisms on rough surfaces were understood from either a monolayer or a multiscale perspec...
Wetting mechanisms on rough surfaces were understood from either a monolayer or a multiscale perspec...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
Predicting wettability accurately across various materials, surface topographies and wetting liquids...
We present numerical studies of wetting on various topographic substrates, including random topograp...
We present numerical studies of wetting on various topographic substrates, including random topograp...
We present numerical studies of wetting on various topographic substrates, including random topograp...
Rough/patterned/textured surfaces with nano/microcavities that broaden below the surface known as &q...
The wetting/non-wetting properties of a liquid drop in contact with a chemically hydrophobic rough s...
The wetting/non-wetting properties of a liquid drop in contact with a chemically hydrophobic rough s...
The wetting/non-wetting properties of a liquid drop in contact with a chemically hydrophobic rough s...
The study of wetting phenomena is of great interest due to the multifaceted technological applicatio...
The paper proposes a general framework allowing the analysis of wetting problems in the si...
The paper proposes a general framework allowing the analysis of wetting problems in the si...
The need for connecting the intrinsic material wettability with surface geometry, adhesion to liquid...