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Antifogging and Icing-Delay Properties of Composite Micro- and Nanostructured Surfaces

机译:复合微结构和纳米结构表面的防雾和结冰延迟特性

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A composite microanostrucutred (MN) surface was designed using poly(vinylidene difluoride) (PVDF) polymer in combination with ZnO materials via heat-pattern-transfer and crystal-growth techniques. The surface, composed of ZnO nanohairs over PVDF microratchets (i.e., ZP-MN), displays excellent antifogging and icing-delay properties. Condensed water droplets can be easily shed from the ZP-MN surface at -5 °C for ~1600 s via a slight wind or tilting. The droplets do not completely freeze on the ZP-MN surface at -10 °C until ~7360 s. This investigation offers a way to design a structured surface that possesses anti-icing ability, which is significant because it can be extended to fields such as microdevices, engineering systems, and engines that operate in a cold or humid environment.
机译:使用聚偏二氟乙烯(PVDF)聚合物和ZnO材料,通过热图案转移和晶体生长技术,设计了复合微/纳米结构(MN)表面。该表面由PVDF微型棘齿(即ZP-MN)上的ZnO纳米毛组成,具有出色的防雾和结冰延迟特性。轻微的风或倾斜,在-5°C下约1600 s内很容易从ZP-MN表面滴下凝结的水滴。直到〜7360 s之前,液滴在-10°C时不会完全冻结在ZP-MN表面上。这项研究提供了一种设计具有防冰能力的结构化表面的方法,这很重要,因为它可以扩展到诸如在寒冷或潮湿环境下运行的微型设备,工程系统和发动机等领域。

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