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Nonequilibrium Atmospheric Pressure Ar/O-2 Plasma Jet: Properties and Application to Surface Cleaning

机译:非平衡大气压Ar / O-2等离子射流:性质及其在表面清洁中的应用

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摘要

In this study an atmospheric pressure Ar/O-2 plasma jet is generated to study the effects of applied voltage and gas flux rate to the behavior of discharge and the metal surface cleaning. The increase in applied voltage leads to increases of the root mean square (rms) current, the input power and the gas temperature. Furthermore, the optical emission spectra show that the emission intensities of metastable argon and atomic oxygen increase with increasing applied voltage. However, the increase in gas flux rate leads to a reduction of the rms current, the input power and the gas temperature. Furthermore, the emission intensities of metastable argon and atomic oxygen decrease when gas flux rate increases. Contact angles are measured to estimate the cleaning performance, and the results show that the increase of applied voltage can improve the cleaning performance. Nevertheless, the increase of gas flux rate cannot improve the cleaning performance. Contact angles are compared for different input powers and gas flux rates to search for a better understanding of the major mechanism for surface cleaning by plasma jets.
机译:在这项研究中,产生了一个大气压Ar / O-2等离子射流,以研究施加的电压和气体通量速率对放电行为和金属表面清洁的影响。施加电压的增加导致均方根(rms)电流,输入功率和气体温度的增加。此外,光发射光谱表明,亚稳氩和原子氧的发射强度随着施加电压的增加而增加。然而,气体通量率的增加导致均方根电流,输入功率和气体温度的降低。此外,当气体通量率增加时,亚稳氩和原子氧的发射强度降低。测量接触角以估计清洁性能,结果表明施加电压的增加可以改善清洁性能。然而,气体通量率的增加不能改善清洁性能。比较了不同输入功率和气体通量速率下的接触角,以寻求对等离子体喷射表面清洁的主要机理的更好理解。

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