The results show that the retention rate of supercooled water on the superhydrophobic surface is always lower than that of the RTV and uncoated glass plates, and the water retention rate shows an increasing trend of “slow growth-rapid growth-stable growth” with an increasing icing time, which suggests that the anti-icing effect of the superhydrophobic coating gradually improves with an increasing icing time.
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The Design and Analysis of the Fabrication of Micro- and Nanoscale Surface Structures and Their Performance Applications from a Bionic Perspective.
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