Saifutdinov Almaz, Timerkaev Boris
Department of General Physics, Kazan National Research Technical University named after A.N. Tupolev-KAI, K. Marx St., 10, 420071 Kazan, Russia.
Nanomaterials (Basel). 2023 Jun 28;13(13):1966. doi: 10.3390/nano13131966.
In this work, within the framework of a unified model for the discharge gap and electrodes, a comparative numerical analysis was carried out on the effect of evaporation of graphite anode material on the characteristics of the arc discharge in helium and argon. The effect of changing the plasma-forming ion, in which the ion of evaporated atomic carbon becomes the dominant ion, is demonstrated. For an arc discharge in helium, this effect is accompanied by a jump-like change in the dependence of the current density on voltage (CVC), and smoothly for a discharge in argon. With regard to the dynamics of the ignition of an arc discharge, it is shown that during the transition from glow discharge to arc in helium, the discharge parameters are also accompanied by an abrupt change, while in argon, this transition is smooth. This is due to the fact that the ionization potentials, as well as the ionization cross sections, differ significantly for helium and carbon, and are close in value for helium and argon. For various points on the CVC, the density distributions of the charged and neutral particles of an inert gas and evaporated gases are presented.
在这项工作中,在放电间隙和电极统一模型的框架内,对石墨阳极材料蒸发对氦气和氩气中电弧放电特性的影响进行了对比数值分析。展示了改变形成等离子体的离子的影响,其中蒸发的碳原子离子成为主要离子。对于氦气中的电弧放电,这种影响伴随着电流密度对电压的依赖性(CVC)的跳跃式变化,而对于氩气中的放电则是平滑变化。关于电弧放电的点火动力学,结果表明,在氦气中从辉光放电过渡到电弧期间,放电参数也会伴随突然变化,而在氩气中,这种过渡是平滑的。这是因为氦气和碳的电离电位以及电离截面有显著差异,而氦气和氩气的值相近。给出了CVC上不同点处惰性气体和蒸发气体的带电和中性粒子的密度分布。