Wettability is an important property of solid surfaces and is widely used in many industries. In this work, seven silicon microstructure surfaces were made by plasma immersion ion implantation (PIII) technology. The experimental contact angles and theoretical contact angles of various surfaces were compared, which indicated that the classical theory had great limitations in predicting the static contact angles of complex structures. A parameterized microstructure surface was established by computational fluid dynamics (CFD) with a volume-of-fluid (VOF) model to analyze the reasons for the differences between experimental and theoretical contact angles. Comparing the results of experiments and simulations, it was found that the VOF model can...
Many multiphase-flows are governed by capillarity and wettability such as spray painting and ink-jet...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
In this study, the effect of silicon content, surface roughness, water droplet size, and elapsed tim...
In this paper, micromilling was used to process the surface of single crystal silicon, and six diffe...
Surfaces that repel both water and oil effectively (contact angles > 150°) are rare. Here we detail ...
In previous research, in order to simulate the 3D structure of MEMS device, we developed a software ...
This paper describes the numerical analysis of the wettability of the micro structured surfaces. The...
Oxygen plasma treatment on porous silicon (p-Si) surfaces was studied as a practical and effective m...
Controlling the wettability of solid materials is a key issue in surface engineering. The objective ...
In this paper, we present an inexpensive technique to produce superhydrophobic surfaces from porous ...
AbstractThe Wenzel model is widely accepted in understanding the roughness-induced hydrophobicity or...
Wetting of a substance has been widely investigated since it has many applications to many different...
In the present work, transition from hydrophilic to hydrophobic wetting states for an intrinsically ...
Many multiphase-flows are governed by capillarity and wettability such as spray painting and ink-jet...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
Many multiphase-flows are governed by capillarity and wettability such as spray painting and ink-jet...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
In this study, the effect of silicon content, surface roughness, water droplet size, and elapsed tim...
In this paper, micromilling was used to process the surface of single crystal silicon, and six diffe...
Surfaces that repel both water and oil effectively (contact angles > 150°) are rare. Here we detail ...
In previous research, in order to simulate the 3D structure of MEMS device, we developed a software ...
This paper describes the numerical analysis of the wettability of the micro structured surfaces. The...
Oxygen plasma treatment on porous silicon (p-Si) surfaces was studied as a practical and effective m...
Controlling the wettability of solid materials is a key issue in surface engineering. The objective ...
In this paper, we present an inexpensive technique to produce superhydrophobic surfaces from porous ...
AbstractThe Wenzel model is widely accepted in understanding the roughness-induced hydrophobicity or...
Wetting of a substance has been widely investigated since it has many applications to many different...
In the present work, transition from hydrophilic to hydrophobic wetting states for an intrinsically ...
Many multiphase-flows are governed by capillarity and wettability such as spray painting and ink-jet...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
Many multiphase-flows are governed by capillarity and wettability such as spray painting and ink-jet...
We have developed a classical two- and three-body interaction potential to simulate the hydroxylated...
In this study, the effect of silicon content, surface roughness, water droplet size, and elapsed tim...