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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >A chemically durable superhydrophobic aluminum surface coated with silicon carbide nanoparticles and perfluoro acrylic copolymer
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A chemically durable superhydrophobic aluminum surface coated with silicon carbide nanoparticles and perfluoro acrylic copolymer

机译:涂有碳化硅纳米颗粒和全氟丙烯酸共聚物的化学耐用的超疏水铝表面

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摘要

Stability of superhydrophobic surfaces, especially chemical stability, has a crucial role in the application of this type of coatings, which leads to a number of researchers for improving this property. In this study, a super hydrophobic surface with high chemical resistance was fabricated using a facile and inexpensive method containing spraying the silicon carbide nanoparticles on the surfaces of aluminum (Al) plates followed by coating the surface with a low surface energy water-based copolymer. The surface morphology was evaluated using a scanning electron microscope (SEM). In order to evaluation of superhydrophobicity of the surfaces water contact angle measurements were employed. The conditions for inducing superhydrophobicity were optimized by changing the polymer concentration and number of spray cycles of polymeric coatings. The chemical stability test results showed the appropriate chemical stability after immersion the surfaces in the different pHs solutions and immersion in 3.5 wt% NaCl solution.
机译:超疏水表面的稳定性,尤其是化学稳定性,在这种类型的涂层中具有至关重要的作用,这导致许多研究人员改善该性质。在该研究中,使用含有在铝(Al)板表面上的碳化硅纳米颗粒在铝(Al)板的表面上,用低表面能水基共聚物涂覆表面,制造具有高耐化学性的高耐化学性的超级疏水性表面。使用扫描电子显微镜(SEM)评估表面形态。为了评估表面的超细纤维性,采用水接触角测量。通过改变聚合物浓度和聚合物涂层的喷雾循环的数量来优化诱导超疏水性的​​条件。化学稳定性试验结果显示浸入不同PHS溶液中的表面并浸入3.5wt%NaCl溶液中的适当化学稳定性。

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