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Stabilization of DC atmospheric pressure glow discharge by a fast gas flow along the anode surface

机译:沿阳极表面的快速气流稳定直流大气压辉光放电

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We have investigated experimentally characteristics of an atmospheric pressure glow discharge (APGD) produced by pin-plate electrodes with a gas flow. An APGD is sustained by DC voltage applied between these electrode with main and auxiliary gas flow. The auxiliary air flow is added to the main flow in a localized region by using a tiny nozzle. It is found for the first time that the glow discharge current is significantly increased when the auxiliary nozzle is set near the anode plate. This finding is very important to clarify the mechanism of a flow-stabilized APGD. An excellent hydrophilic property is observed on a sodium silicate glass surface treated by the APGD plasma only several seconds.
机译:我们已经研究了由针板式电极在气流下产生的大气压辉光放电(APGD)的实验特性。 APGD由施加在这些电极之间的直流电压以及主气流和辅助气流来维持。通过使用微小的喷嘴将辅助气流添加到局部区域的主流中。首次发现,将辅助喷嘴设置在阳极板附近时,辉光放电电流显着增加。这一发现对于阐明流动稳定的APGD的机理非常重要。在经过APGD等离子体处理的硅酸钠玻璃表面上,仅几秒钟即可观察到极好的亲水性。

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