4.8 Article

Superhydrophobic Nanocomposite Surface Topography and Ice Adhesion

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 6, Issue 12, Pages 9272-9279

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/am501640h

Keywords

anti-icing; superhydrophobic; nanocomposite; spray-coating; roughness; polyurethane; silicon dioxide

Funding

  1. Rolls-Royce North America through the Commonwealth Center for Advanced Propulsion

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A method to reduce the surface roughness of a spray-casted polyurethane/silica/fluoroacrylic superhydrophobic nanocomposite coating was demonstrated. By changing the main slurry carrier fluid, fluoropolymer medium, surface pretreatment, and spray parameters, we achieved arithmetic surface roughness values of 8.7, 2.7, and 1.6 mu m on three test surfaces. The three surfaces displayed superhydrophobic performance with modest variations in skewness and kurtosis. The arithmetic roughness level of 1.6 mu m is the smoothest superhydrophobic surface yet produced with these spray-based techniques. These three nanocomposite surfaces, along with a polished aluminum surface, were impacted with a supercooled water spray in icing conditions, and after ice accretion occurred, each was subjected to a pressurized tensile test to measure ice-adhesion. All three superhydrophobic surfaces showed lower ice adhesion than that of the polished aluminum surface. Interestingly, the intermediate roughness surface yielded the best performance, which suggests that high kurtosis and shorter autocorrelation lengths improve performance. The most ice-phobic nanocomposite showed a 60% reduction in ice-adhesion strength when compared to polished aluminum.

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