85 / 2021-06-30 17:23:25
Icing delay of water droplets on superhydrophobic titanium alloy surfaces prepared by nanosecond laser
superhydrophobic, icing delay, titanium alloy, laser processing
Abstract Accepted
Chunfang Guo / Donghua University
Jun Hu / Donghua University
Meiju Zhang / Donghua University
Superhydrophobic surfaces have been widely considered and expected to play an important role in promoting anti-icing performance. In this research, superhydrophobic surfaces based on titanium alloy were prepared by nanosecond laser combining further chemical modification. Surface morphology and wettability were characterized with scanning electron microscopy and contact angle measurement, respectively. Icing behaviors of sessile water droplets on smooth hydrophilic, smooth hydrophobic and superhydrophobic surfaces, maintained at subzero temperatures, were investigated under a humidity condition on a self-built apparatus. The effects of surface wettability, morphology and temperature on droplet icing were analyzed. Results show that droplet icing is remarkably delayed on the superhydrophobic titanium alloy surfaces through the temperature range. Decreasing surface temperature, the extended time for the cooling stage and the freezing stage in sequence dominates the total icing delay. This study provides an effective approach for fabricating superhydrophobic surfaces to resist icing on titanium alloy.
Important Date
  • Conference Date

    Dec 03

    2021

    to

    Dec 05

    2021

  • Jul 25 2021

    Early Bird Registration

  • Dec 01 2021

    Draft paper submission deadline

  • Dec 03 2021

    Registration deadline

Sponsored By
Chinese Mechanical Engineering Society – Surface Engineering Institution (CMES)
Organized By
Shandong University of Technology
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