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Dielectric Barrier Discharge in Atmospheric Air for Glass-Surface Treatment to Enhance Hydrophobicity

机译:大气中的介电阻挡放电,用于玻璃表面处理,以增强疏水性

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Experiments of a material-surface treatment using the nonthermal plasma generated by the dielectric barrier discharge (DBD) at atmospheric pressure in ambient air are carried out on a laboratory scale to see if the DBD can be used in enhancing the surface hydrophobicity. It is well known that the DBD can react with the material surface and induce physical and chemical changes to improve the surface wettability. The main purpose of this paper, however, is to look into the possibility of using the same experimental setup to do the opposite, i.e., to improve the surface hydrophobicity for a better insulation performance, which can be judged by the contact-angle and surface-resistance measurements, and verified by the wet flashover voltage test. To enhance the surface hydrophobicity, the glass surface is sprayed with a silicon liquid before it is exposed to the DBD treatment, and it is found that the formed hydrophobic coating is stable enough to endure both the thermal and chemical aging tests. The improvement of hydrophobicity depends on the DBD voltage and treatment time. It seems that there exists an optimum treatment time for a certain applied voltage of the DBD. Possible interaction between the DBD plasma and the material surface is discussed.
机译:在实验室规模下使用大气压在环境空气中通过介电势垒放电(DBD)生成的非热等离子体进行材料表面处理的实验,以查看该DBD是否可用于增强表面疏水性。众所周知,DBD可与材料表面反应并引起物理和化学变化以改善表面润湿性。然而,本文的主要目的是探讨使用相同实验设置进行相反操作的可能性,即提高表面疏水性以获得更好的绝缘性能,这可以通过接触角和表面来判断。电阻测量,并通过湿闪络电压测试进行验证。为了增强表面疏水性,在对玻璃表面进行DBD处理之前先对玻璃表面喷涂硅液,发现形成的疏水性涂层足够稳定,可以经受热和化学老化测试。疏水性的改善取决于DBD电压和处理时间。对于DBD的某个施加电压,似乎存在最佳处理时间。讨论了DBD等离子体与材料表面之间可能的相互作用。

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