Effect of wettability and surface roughness on ice-adhesion strength of hydrophilic, hydrophobic and superhydrophobic surfaces
•Anti-icing property is related to wettability and surface roughness.•Silicone based hydrophobic coating showed excellent ice-adhesion strength.•Superhydrophobic surfaces displayed poor anti-icing property. The anti-icing properties of hydrophilic, hydrophobic and superhydrophobic surfaces/coatings...
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Veröffentlicht in: | Applied surface science 2014-09, Vol.314, p.241-250 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | •Anti-icing property is related to wettability and surface roughness.•Silicone based hydrophobic coating showed excellent ice-adhesion strength.•Superhydrophobic surfaces displayed poor anti-icing property.
The anti-icing properties of hydrophilic, hydrophobic and superhydrophobic surfaces/coatings were evaluated using a custom-built apparatus based on zero-degree cone test method. The ice-adhesion reduction factor (ARF) of these coatings has been evaluated using bare aluminium alloy as a reference. The wettability of the surfaces was evaluated by measuring water contact angle (WCA) and sliding angle. It was found that the ice-adhesion strength (τ) on silicone based hydrophobic surfaces was ∼ 43 times lower than compared to bare polished aluminium alloy indicating excellent anti-icing property of these coatings. Superhydrophobic coatings displayed poor anti-icing property in spite of their high water repellence. Field Emission Scanning Electron Microscope reveal that Silicone based hydrophobic coatings exhibited smooth surface whereas the superhydrophobic coatings had a rough surface consisting of microscale bumps and protrusions superimposed with nanospheres. Both surface roughness and surface energy play a major role on the ice-adhesion strength of the coatings. The 3D surface roughness profiles of the coatings also indicated the same trend of roughness. An attempt is made to correlate the observed ice-adhesion strength of different surfaces with their wettability and surface roughness. |
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ISSN: | 0169-4332 1873-5584 |
DOI: | 10.1016/j.apsusc.2014.06.101 |