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Emitter depletion studies on electrodes of 50 Hz mercuryoble gas discharge lamps during ignition

机译:点火期间对50 Hz汞/稀有气体放电灯的电极进行发射极耗尽研究

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The depletion of emitter from the oxide cathodes during the glow switch starting of the discharge in 50 Hz operated low-pressure mercuryoble gas discharge lamps (fluorescent lamps) has been studied. It follows from pulse ignition studies and computer-controlled ignition experiments that two plasma modes exist during ignition: a glow discharge and a vapour-arc discharge. The occurrence of these modes depends on the point of interruption with respect to the phase of the 50 Hz preheat current. The vapour arc appears to be the dominant mechanism of emitter depletion. The average emitter loss per vapour-arc pulse has been quantified by radioactive Ba tracer experiments. The nature of the vapour arc has been studied by fast photography and SEM. The vapour arc involves dielectric breakdown over the non-conducting oxide mass and gives rise to explosive emitter vapourization. [References: 19]
机译:已经研究了在50 Hz操作的低压汞/稀有气体放电灯(荧光灯)中,在辉光开关开始放电期间,从辉光开关耗尽氧化物阴极的现象。从脉冲点火研究和计算机控制的点火实验可以看出,点火过程中存在两种等离子体模式:辉光放电和蒸气电弧放电。这些模式的出现取决于相对于50 Hz预热电流相位的中断点。蒸气弧似乎是发射极耗尽的主要机理。每个蒸气弧脉冲的平均发射极损耗已通过放射性Ba示踪剂实验进行了量化。蒸气电弧的性质已经通过快速摄影和SEM进行了研究。蒸气电弧涉及在非导电氧化物物质上的电介质击穿,并引起爆炸性发射极汽化。 [参考:19]

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