防冻剂
结冰
釉
材料科学
涂层
雾
冻雨
冷凝
超疏水涂料
霜冻(温度)
化学工程
雾凇
天体生物学
复合材料
气象学
化学
雪
生物
有机化学
陶瓷
工程类
物理
作者
Xiaoda Sun,Viraj G. Damle,Shanliangzi Liu,Konrad Rykaczewski
标识
DOI:10.1002/admi.201400479
摘要
The detrimental impacts of icing on transportation and power industries are well‐known. Inspired by natural systems that secrete a functional liquid in response to stimuli, this work introduces an anti‐icing coating that responds to surface icing by releasing antifreeze liquid. It consists of an outer porous superhydrophobic epidermis and a wick‐like underlying dermis that is infused with antifreeze liquid. The functionality of the new coating is validated through condensation frosting, simulated freezing fog, and freezing rain experiments. In the tested conditions, the introduced anti‐icing skin delays onset of frost, rime, and glaze accumulation at least ten times longer than anti‐icing superhydrophobic and lubricant impregnated surfaces. Furthermore, the coating delays onset of glaze formation ten times longer than surfaces flooded with a thin film of antifreeze. In each of the icing scenarios, the fundamental mechanisms responsible for antifreeze release and their relation to required antifreeze replenishment rates are described.
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