新型高压脉冲产生均匀辉光放电空气等离子体用于纺织品的环保在线处理

V. Jain, K. Nigam, N. Tanwani, S. Adam, S. Nimish, S. Nema
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引用次数: 2

摘要

提出了对介质阻挡放电(DBD)空气等离子体的能量控制,以保证等离子体在气隙内均匀发光放电。这种能量控制需要一种独特的高压开关,它在6kV时产生0.5 MHz至2.5 MHz的RF(射频)放电束,但本质上是阻尼振荡。在重复模式下,阻尼周期从8us到10us不等。开关的重复被限制在100khz,以避免在DBD的气隙中附加能量,以防止灯丝的产生。6kVrms显著低于常规脉冲直流电源在常压下产生DBD等离子体的额定电压。尽管如此,它提供了2W/cm2的等离子体功率密度,这对于快速处理棉花、聚乙烯、聚丙烯等纺织材料来说要高得多。文中还介绍了各种材料的功能测量结果和空气DBD等离子体的诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel High Voltage Pulsing to Generate Uniform Glow Discharge Air Plasma for Environment Friendly Inline Treatment of Textile
The energy control to the DBD (Dielectric Barrier Discharge) air plasma is proposed which ensure the uniform glow discharge plasma in the air gap. This energy control requires a unique high voltage switching which generates bundles of RF (Radio Frequency) discharge of 0.5 MHz to 2.5 MHz at 6kV but damped oscillations in nature. This damping period ranges from 8us to 10us in repetitive mode. The repetition of switching is limited to 100 kHz to avoid appending of energy in the air gap of DBD to prevent filament generation. The 6kVrms significantly lower voltage than the voltage ratings of conventional pulsed DC supply used in DBD plasma generation at atmospheric pressure. Still, it provides plasma power density of 2W/cm2 which is substantially higher for fast treatment of textile materials such as cotton, polyethylene, polypropylene etc. The functionality measurements results for various materials and the diagnostics of the air DBD plasma are also presented in the paper.
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