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Stability of Steel X03Cr23Ni6Mo4Cu3NbN (after ESR) Against the Impact of Products of the Atmospheric Pressure Surface Discharge Plasma

机译:钢X03CR23NI6MO4CU3NBN(ESR之后)的稳定性抵抗产品的影响大气压表面放电等离子体

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摘要

Under the effect of the surface discharge in air at atmospheric pressure, the edge of the electrode exposed in the plasma undergoes significant changes (oxidation, erosion, local melting, redeposition of oxides from the gas phase, etc.). The degradation of the working electrode, in the cases, e.g., aluminum or copper electrodes, can cause a continuous change in the electrical characteristics of the device, the executive part of which is the surface discharge system. This work presents the results of an experimental study of the effect of surface discharge plasma products excited by a sinusoidal voltage of 20 and 110 kHz in ambient air on steel X03Cr23Ni6Mo4Cu3NbN (after ESR) acting as an exposed electrode. It is shown that, despite the occurrence of microdamages on the surface of the sample and the formation of local oxide layers, the discharge energy during 4 h of exposure to the plasma products remains unchanged.
机译:在大气压下的空气中的表面放电的影响下,在等离子体中暴露的电极边缘经历显着的变化(氧化,腐蚀,局部熔化,来自气相的氧化物的再沉积等)。 在壳体中,例如铝或铜电极的情况下,工作电极的劣化会导致装置的电特性的连续变化,其执行部分是表面放电系统。 该工作介绍了在用作暴露电极的钢X03Cr23Ni6MO4Cu3NBn(ESR之后)的环境空气中通过20和110kHz的正弦电压激发的表面放电等离子体产品的实验研究结果。 结果表明,尽管存在样品表面上的微岩和局部氧化物层的形成,但是在4小时内暴露于等离子体产品的放电能量保持不变。

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