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Published on: August 19, 2019
Macro-Textured Fabric Reduces Water Droplet Impact Contact Time
Nicole Furtak1, Shuo Lin Wu1, Samuel Au1
1Department of Mechanical & Industrial Engineering, University of Toronto, Toronto, ON M5S 3G8, Canada.
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Reducing fabric wetting by minimizing the contact time of impacting droplets is beneficial in many textile applications, such as rainwear and personal protective equipment. Macro-texturing of rigid superhydrophobic surfaces is a technique to reduce droplet impact contact time that has not previously been applied to textiles. This study examines utilizing inherently macro-textured superhydrophobic fabrics to reduce the contact time of impacting water droplets, adjusting the fabric topography through stretching and gathering to optimize the macro-texture. Fabrics were finished with either a commercial superhydrophobic finish or a developed superhydrophobic formulation utilizing fumed silica nanoparticles and poly(dimethylsiloxane) (PDMS) brushes. Various droplet splitting impact behaviors were observed and depended on the impact site and geometry of the macro-textured fabric. A 2:1 gathering ratio on woven seersucker fabric provided a 52% decrease from the theoretical minimum contact time for droplet impact on a ridge site. Rigid 3D-printed superhydrophobic surfaces that mimicked the fabric topography provide a useful analogue to the fabric surface for fine-tuning fabric designs.

