Abstract: This paper examines the time evolution for spreading of low surface tension liquids upon impact onto a surface, and highlights the differences with the same, for high surface tension liquids. Furthermore, it examines the role of the in-plane velocity (V P ) on the time evolution of spreading phase of the impact phenomena; V P is seen when the surface is inclined, or when the surface is moving in the horizontal direction, for impact of a free-falling droplet. High-speed imaging was used to capture the spreading...
The rate of spreading of non-volatile liquids on smooth and on rough surfaces was investigated. The ...
A droplet could spread on a solid substrate within several milliseconds, and be divided into two sta...
Liquid drops start spreading directly after coming into contact with a solid sub-strate. Although th...
Abstract: This paper examines the time evolution for spreading of low surface tension liquids upon i...
Abstract: This paper examines the time evolution for spreading of low surface tension liquids upon ...
The study of fluid spreading dynamics has been playing an important role in many technological and i...
The study of fluid spreading dynamics has been playing an important role in many technological and i...
Droplet impact has been imaged on different rigid, smooth, and rough substrates for three liquids wi...
Aqueous sodium chloride solution is used as the droplet to study the regimes of low viscosity liquid...
Study of the spreading of an impacting drop onto a surface has gained importance recently due to app...
Liquid drops start spreading directly after coming into contact with a partially wetting substrate. ...
The spreading of liquid droplets impacting a surface at high speed is well understood by now. Howeve...
Liquid drops start spreading directly after coming into contact with a solid substrate. Although thi...
The spreading dynamics of liquid droplets has been widely studied due to its importance in many tech...
The spreading dynamics of liquid droplets has been widely studied due to its importance in many tech...
The rate of spreading of non-volatile liquids on smooth and on rough surfaces was investigated. The ...
A droplet could spread on a solid substrate within several milliseconds, and be divided into two sta...
Liquid drops start spreading directly after coming into contact with a solid sub-strate. Although th...
Abstract: This paper examines the time evolution for spreading of low surface tension liquids upon i...
Abstract: This paper examines the time evolution for spreading of low surface tension liquids upon ...
The study of fluid spreading dynamics has been playing an important role in many technological and i...
The study of fluid spreading dynamics has been playing an important role in many technological and i...
Droplet impact has been imaged on different rigid, smooth, and rough substrates for three liquids wi...
Aqueous sodium chloride solution is used as the droplet to study the regimes of low viscosity liquid...
Study of the spreading of an impacting drop onto a surface has gained importance recently due to app...
Liquid drops start spreading directly after coming into contact with a partially wetting substrate. ...
The spreading of liquid droplets impacting a surface at high speed is well understood by now. Howeve...
Liquid drops start spreading directly after coming into contact with a solid substrate. Although thi...
The spreading dynamics of liquid droplets has been widely studied due to its importance in many tech...
The spreading dynamics of liquid droplets has been widely studied due to its importance in many tech...
The rate of spreading of non-volatile liquids on smooth and on rough surfaces was investigated. The ...
A droplet could spread on a solid substrate within several milliseconds, and be divided into two sta...
Liquid drops start spreading directly after coming into contact with a solid sub-strate. Although th...