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Investigate on structure for transparent anti-icing surfaces

机译:探讨透明防冰表面的结构

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The ice-phobic and transparent surface based on the distinctive structure of a coating material has been investigated. Moth eye structure fabricated on the quartz substrate was covered with a flat paraffin layer to isolate it in a cold and humid environment. Paraffin wax was chosen as the coating material due to low thermal conductivity, easy coating, and original water repellency. The paraffin layer only stayed on the top of the nanostructure, separated it from the outside environment to obstruct heat energy being transferred to the cold substrate, and prevented the wetting transition, which was observed regularly on the rough surface. The uncountable number of air blocks trapped inside the nanostructure also contributed to delayed heat transfer, leading to an increase in the freezing time of the attached water droplet. The anti-icing performance was evaluated in terms of adhesion strength, freezing time, and freezing rain sustainability. The nanostructure coated sample was compared with barely coated and superhydrophobic nanostructure surface and demonstrated a preeminent performance.
机译:研究了基于涂层材料的独特结构的冰波和透明表面。用扁平石蜡层覆盖在石英底物上覆盖的蛾眼结构,以在寒冷和潮湿的环境中将其分离。由于导热率低,易涂层和原始防水性,选择石蜡作为涂层材料。仅靠石蜡层停留在纳米结构的顶部,将其与外部环境分开以阻挡传递到冷基质的热能,并防止润湿转变,该润湿转变在粗糙的表面上定期观察。捕获在纳米结构内的不可数的空气块也有助于延迟传热,导致附着的水滴的冷冻时间增加。在粘附强度,冷冻时间和冻结雨可持续性方面评估抗结冰性能。将纳米结构涂覆的样品与几乎没有涂覆和超疏水的纳米结构表面进行比较,并展示了卓越的性能。

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