论文标题
冷气压力等离子体缝隙中的自组织现象
Self-organization phenomena in cold atmospheric pressure plasma slit jet
论文作者
论文摘要
RF等离子体狭缝喷气机在喷射体外产生150毫米宽的流离子体,表现出令人兴奋的自组织现象,类似于介电屏障排放(DBD)丝的自组织模式。同样,与DBD一样,细丝被一个抑制区包围,该区域不允许两个细丝彼此靠近。通过快速相机成像,我们在所有研究的气体饲料(AR,AR/N $ _2 $和AR/O $ _2 $)中观察到了放电的丝状特征。尽管如此,血浆中细丝的视觉外观及其与介电表面的相互作用显着取决于气体进料。与施加的纯AR相比,纯AR中的故障电压相对较低,因此经常形成新的细丝。这种新创建的细丝破坏了特征性的丝间距离,迫使系统重新排列。 AR中的频繁点火和衰减过程导致短丝寿命(0.020-0.035 s)及其高抖动速度(0.9-1.7 m/s),该速度是根据基于Gwyddion库的图像处理自定义代码确定的。 AR/O $ _2 $和AR/N $ _2 $混合物中的细丝数较低。它归因于旋转和振动水平的激发和氧电负性的激发中的能量损失。由于低电流侧排放到完整血浆丝中的概率在气体混合物中受到限制,因此自组织的模式很少受到干扰,从而导致运动较少和寿命更长。与AR或AR/O $ _2 $不同,AR/N $ _2 $的狭窄细丝被弥漫性等离子体羽流包围,可能与长寿命的存在有关。我们在聚丙烯处理中证明了自组织现象影响了治疗均匀性。
The RF plasma slit jet, which produces 150 mm wide streaming plasma outside the jet body, exhibits exciting self-organization phenomena that resemble the self-organized patterns of dielectric barrier discharge (DBD) filaments. Similarly, as in DBD, the filaments are surrounded by an inhibition zone that does not allow two filaments to come closer to each other. With fast camera imaging, we observed the filamentary character of the discharge in all the studied gas feeds (Ar, Ar/N$_2$, and Ar/O$_2$). Still, the visual appearance of the filaments in the plasma and their interaction with a dielectric surface depended significantly on the gas feed. As the breakdown voltage in pure Ar is relatively low compared to the applied one, new filaments form frequently. Such newly created filaments disrupted the characteristic inter-filament distance, forcing the system to rearrange. The frequent ignition and decay processes in Ar led to short filament lifetimes (0.020-0.035 s) and their high jitter speed (0.9-1.7 m/s), as determined with an image processing custom code based on Gwyddion libraries. The number of filaments was lower in the Ar/O$_2$ and Ar/N$_2$ mixtures. It was attributed to a loss of energy in the excitation of rotational and vibrational levels and oxygen electronegativity. Since the probability of low-current side discharges transitioning into the full plasma filaments was limited in the gas mixtures, the self-organized pattern was seldom disrupted, leading to lesser movement and longer lifetimes. Unlike in Ar or Ar/O$_2$, the constricted filaments in Ar/N$_2$ were surrounded by diffuse plasma plumes, likely connected to the presence of long-lived nitrogen species. We demonstrated in the polypropylene treatment that the self-organization phenomena affected the treatment uniformity.