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Fabrication and condensation characteristics of metallic superhydrophobic surface with hierarchical micro-nano structures

机译:具有分级微纳结构的金属超疏水表面的制备和缩合特性

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Metallic superhydrophobic surfaces have various applications in aerospace, refrigeration and other engineering fields due to their excellent water repellent characteristics. This study considers a simple but widely applicable fabrication method using a two simultaneous chemical reactions method to prepare the acid-salt mixed solutions to process the metal surfaces with surface deposition and surface etching to construct hierarchical micro-nano structures on the surface and then modify the surface with low surface-energy materials. Al-based and Cu-based superhydrophobic surfaces were fabricated using this method. The Al-based superhydrophobic surface had a water contact angle of 164 with hierarchical micro-nano structures similar to the lotus leaves. The Cu-based surface had a water contact angle of 157 with moss-like hierarchical micro-nano structures. Droplet condensation experiments were also performed on these two superhydrophobic surfaces to investigate their condensation characteristics. The results show that the Al-based superhydrophobic surface has lower droplet density, higher droplet jumping probability, slower droplet growth rate and lower surface coverage due to the more structured hierarchical structures. (C) 2016 Elsevier B.V. All rights reserved.
机译:金属超疏水性表面具有卓越的拒水特性,因此在航空航天,制冷和其他工程领域具有多种应用。这项研究考虑了一种简单但广泛适用的制造方法,该方法使用两个同时进行的化学反应方法来制备酸盐混合溶液,以通过表面沉积和表面蚀刻来处理金属表面,从而在表面上构造分层的微纳米结构,然后对其进行改性。表面具有低表面能的材料。使用该方法制造了铝基和铜基超疏水表面。铝基超疏水表面的水接触角为164,具有类似于荷叶的分层微纳米结构。铜基表面的水接触角为157,具有苔藓状的分层微纳米结构。还对这两个超疏水表面进行了液滴凝结实验,以研究其凝结特性。结果表明,由于铝基超疏水表面结构化的分层结构,其液滴密度较低,液滴跳跃概率较高,液滴生长速率较慢且表面覆盖率较低。 (C)2016 Elsevier B.V.保留所有权利。

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