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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Anti-frosting and defrosting performance of chemically modified super-nonwettable carbon soot coatings
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Anti-frosting and defrosting performance of chemically modified super-nonwettable carbon soot coatings

机译:化学改性超脱脂碳烟灰涂层的抗磨砂和除霜性能

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The inherent hydrophilicity of a variety of heat exchanging industrial appliances, including air-conditioners, refrigerators or heat pumps, is a highly-beneficial platform for the accumulation of frost at negative surface temperatures, dramatically aggravating the efficient device operation in terms of heat transfer and energy consumption. Here, we introduce experimental data from pioneering research on the frosting/defrosting behavior of chemically modified super-nonwettable soot-one of the very few materials providing scalability, satisfactory mechanical durability, icephobic and anti-bioadhesion properties simultaneously. The analysis of the anti-frosting/defrosting performance of three groups of soot coatings, obtained by treating the pristine samples with alcohol, fluorocarbon or silver hydrogen fluoride, reveals that the frost incipiency on the soot can be efficiently controlled by tailoring its chemistry and porosity. In turn, the super-nonwettable material is capable of delaying the onset of vapor condensation and frosting to supercooling degrees of 8.4 degrees C and 15.8 degrees C, accordingly, and maintaining relatively large frost-free halos up to -20 degrees C. Moreover, the onset of soot defrosting is accelerated by a factor of 35 compared to a bare Cu substrate, demonstrating extremely low ice adhesion forces and strong potential of the soot coatings for passive icing protection of many cryogenic facilities.
机译:各种热交换工业设备(包括空调、冰箱或热泵)的固有亲水性是在负表面温度下结霜的一个非常有利的平台,极大地提高了设备在传热和能耗方面的有效运行。在这里,我们介绍了对化学改性超不可湿煤烟结霜/除霜行为的开创性研究中的实验数据。化学改性超不可湿煤烟是极少数同时提供可扩展性、令人满意的机械耐久性、憎冰性和抗生物粘附性的材料之一。通过使用酒精、氟碳化合物或氟化银氢处理原始样品,对三组烟灰涂层的防结霜/除霜性能进行分析,发现通过调整其化学成分和孔隙率,可以有效控制烟灰上的结霜初期。反过来,超不可湿材料能够相应地将蒸汽冷凝和结霜的开始延迟至8.4摄氏度和15.8摄氏度的过冷度,并将相对较大的无霜晕保持在-20摄氏度。此外,与裸铜基板相比,烟灰除霜的开始加快了35倍,展示了极低的冰粘附力和烟尘涂层对许多低温设施的被动结冰保护的强大潜力。

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