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Properties of the copper surface layers treated by volume gas discharge at atmospheric preassure

机译:在常压下通过大量气体放电处理的铜表面层的性能

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This paper presents new experimental data on the properties of the near-surface layers of copper specimens treated by plasma of diffuse discharge. A runaway electron preionized diffuse discharge was formed in air, nitrogen and carbon dioxide at atmospheric pressure by applying of nanosecond high voltage pulses to electrode of small curvature radius. The cleaning from carbon in comparison to the initial sample was observed at a depth exceeding 55 nm. The oxygen concentration was also significantly increased in comparison to that in the initial sample at a depth of up to about 25 nm. It is shown that the nanohardness of copper specimens increased due to interaction of near-surface layers with product of plasma chemical reactions produced in diffuse discharge.
机译:本文介绍了通过扩散放电等离子体处理的铜试样近表面层性能的新实验数据。通过向小曲率半径的电极施加纳秒级高压脉冲,在大气压下的空气,氮气和二氧化碳中形成失控的电子预电离扩散放电。在超过55 nm的深度处观察到与初始样品相比从碳中清除。与初始样品相比,在高达约25 nm的深度处,氧气浓度也显着增加。结果表明,铜样品的纳米硬度由于近表面层与扩散放电中产生的等离子体化学反应产物的相互作用而增加。

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