4.6 Article

Effect of PTFE Particle Size on Superhydrophobic Coating for Supercooled Water Prevention

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COATINGS
卷 8, 期 12, 页码 -

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MDPI
DOI: 10.3390/coatings8120426

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hydrophobic; microstructure; temperature; supercooled water

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Polytetrafluoroethylene (PTFE) chemically repels water droplets due to the nature of fluorine substituents. This paper presents an experimental study on the impact of PTFE particle size and temperature on the hydrophobicity of a surface. The present study analyzes hydrophobicity due to both the chemical properties of PTFE and the microstructure created by PTFE particles. Herein, studies of the contact angle and the sliding angle of these surfaces are described in supercooled-water conditions ranging from -10 to 0 degrees C. From the equations governing the surface tension and sliding angle of a droplet on a superhydrophobic surface, it is found that particle size has a much greater effect on hydrophobicity than temperature. An increase in the PTFE particle size greatly reduces the sliding angle, which indicates a lower amount of energy required to remove the droplet from the surface.

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