Advances in Contact Angle, Wettability and Adhesion, Volume by K.L. Mittal(eds.)

By K.L. Mittal(eds.)

The subject of wettabilty is very vital from either primary and utilized elements. The purposes of wettability diversity from self-cleaning home windows to micro- and nanofluidics.

This publication represents the cumulative knowledge of a contingent of world-class (researchers engaged within the area of wettability. within the previous few years there was super curiosity within the "Lotus Leaf impact" and in realizing its mechanism and the way to duplicate this influence for myriad purposes. the themes of superhydrophobicity, omniphobicity and superhydrophilicity are of a lot modern curiosity and those are coated intensive during this book.

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Additional resources for Advances in Contact Angle, Wettability and Adhesion, Volume 001

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Then, we use the Cellular Potts Model (CPM) to discuss dependency of CA hysteresis on the surface structure and other parameters. This analysis allows decoupling of the 1D (pinning of the triple line) and 2D effects (adhesion hysteresis in the contact area) and provides new insights into the nature of the CA hysteresis. 1 Introduction Contact angle (CA) is the main parameter in the study of wetting, which characterizes wetting of a solid surface by a liquid. It was introduced by Young [1] along with the concept of the interfacial tensions of the solid, liquid and vapor interfaces.

12) Note that Eqs. 10 seem to be in contradiction with each other. While Eq. 4 reflects the balance of shear (“friction”) forces at the surface, Eq. 10 deals with the normal forces, since gLV sin q is the normal component of the liquid-vapor tension, which is balanced by the Laplace and hydrostatic excess pressures in the droplet and thus the difference in this component at the two edges of the droplet is proportional to the hydrostatic pressure difference [28]. ) where antifouling is important.

11 Initial configuration of simulation for droplet along a tilted homogeneous fSL = 1( solid surface [29]. varied structure of solid surface in next simulations to investigate the effect of solid-liquid fraction, slope of surface, and its material (surface energy) on CA hysteresis. Simulations were performed using the CompuCell3D software [66], which is an open source modeling environment, primarily used to study cellular behavior, and was built with the C++ programming language [29].

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