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Influence of additive gas on electrical and optical characteristics of non-equilibrium atmospheric pressure argon plasma jet

机译:添加剂气体对非平衡大气压氩等离子体射流电和光学特性的影响

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摘要

Electrical and optical properties of an argon plasma jet were characterized. In particular, effects of an additive gas, namely nitrogen or oxygen, on these properties were studied in detail. The plasma jet was found to be of a glow-like discharge, which scarcely changed upon the injection of an additive gas, either directly or through a glass capillary. Optical emission spectroscopy characterization revealed that excited argon atoms were the predominant active species in this plasma jet. Metastable argon atoms were highly quenched, and N_2(C~3Π_u) became the main energy carrier following nitrogen injection. When oxygen was added to the afterglow zone through a glass capillary, no significant quenching effect was observed and the number of oxygen atoms decreased with the increase in oxygen concentration. Finally, to demonstrate an application of this plasma jet, a high-density polyethylene surface was treated with argon, argonitrogen, and argon/oxygen plasmas.
机译:表征了氩等离子体射流的电学和光学性质。特别地,详细研究了添加气体,即氮气或氧气,对这些性能的影响。发现等离子体射流具有类似辉光的放电,直接或通过玻璃毛细管注入添加剂气体后几乎不会改变。光学发射光谱表征表明,激发的氩原子是该等离子体射流中的主要活性物质。亚稳氩原子被高度猝灭,N_2(C〜3Π_u)成为注氮后的主要能量载体。当通过玻璃毛细管将氧气添加到余辉区时,未观察到明显的淬灭效果,并且随着氧浓度的增加,氧原子数减少。最后,为证明该等离子流的应用,用氩气,氩气/氮气和氩气/氧气等离子处理了高密度聚乙烯表面。

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