首页> 外文期刊>Fractals: An interdisciplinary journal on the complex geometry of nature >DEVELOPMENT OF FRACTAL ULTRA-HYDROPHOBIC COATING FILMS TO PREVENT WATER VAPOR DEWING AND TO DELAY FROSTING
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DEVELOPMENT OF FRACTAL ULTRA-HYDROPHOBIC COATING FILMS TO PREVENT WATER VAPOR DEWING AND TO DELAY FROSTING

机译:分形超疏水涂层膜的开发,可防止水蒸气的结露和延缓结霜

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摘要

Superhydrophobic films fabricated on copper and aluminum surfaces have potential applications to solve water condensation and frosting problems on chilled ceiling system. The rough surfaces of copper foils obtained by solution immersion method exhibit the existence of fractal structures. The hydrophobicity of copper surfaces is enhanced with fractal structures. The relationship between contact angles (CAs) and the fractal dimensions (FDs) for surface roughness of Cu samples with different etching time is investigated. Moisture condensation and frosting experiments on the two kinds of surfaces are conducted in natural environment under different chilling temperatures. During condensation, micro water condensate droplets drift down the surface like dust floating in the air. Several larger condensate droplets about 1-2 mm appear on the substrates after 3 h condensation. This continuous jumping motion of the condensate will be beneficial in delaying frosting. The results demonstrate that dense nanostructures on copper surfaces are superior to loose lattice-like microstructures on aluminum surfaces for preventing the formation of large droplets condensate and in delaying the icing. The large water droplets of 2-3 mm in diameter that would form on a common metal foil are sharply decreased to dozens of microns and small droplets are formed on_a modified surface, which will then drift down like a fog.
机译:在铜和铝表面上制造的超疏水薄膜具有潜在的应用前景,可解决冷冻天花板系统上的水凝结和结霜问题。通过溶液浸渍法获得的铜箔的粗糙表面表现出分形结构的存在。分形结构增强了铜表面的疏水性。研究了不同蚀刻时间的Cu样品表面粗糙度的接触角(CAs)和分形维数(FDs)之间的关系。在自然环境中,在不同的冷却温度下,对两种表面进行水分凝结和结霜实验。凝结过程中,微小的凝结水液滴像漂浮在空气中的灰尘一样,沿表面向下漂移。冷凝3小时后,基板上会出现约1-2 mm的几个较大的冷凝液滴。冷凝物的这种连续跳跃运动将有利于延迟结霜。结果表明,铜表面上的致密纳米结构优于铝表面上的疏松晶格​​状微观结构,可防止形成大的液滴凝结并延迟结冰。会在普通金属箔上形成的直径为2-3毫米的大水滴急剧减少至数十微米,并且在经过修饰的表面上形成了小水滴,这些水滴随后会像雾一样向下飘落。

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