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Analyzing spotless mode of current transfer to cathodes of metal-vapor arcs

机译:分析流向金属蒸气电弧阴极的无斑点模式

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The diffuse, or spotless, mode of current transfer has been observed on cathodes of vacuum arcs under conditions where the average cathode temperature was high enough, about 2000 K. It has been known for many years that none of the known mechanisms of current transfer to cathodes of vacuum arcs and, in particular, of the electron emission is capable of producing the current densities of the order of 10-10 Am deduced from the experiment. A fresh attempt to clarify this question is made in this work. Cathodes made of chromium are considered, on which the most of the experiments have been performed. It is shown that an account of the difference between values of thermionic and photoelectric work functions given in the reference literature allows one to significantly reduce the deviation between the theory and the experiment. Unfortunately, data on thermionic work function available in the literature refer to the cathode surface temperatures below 1400 K, which is significantly smaller than measured temperatures of the chromium cathodes of vacuum arcs operating in the spotless mode. Therefore, further experimental data are needed in order to clarify this effect.
机译:在平均阴极温度足够高(约2000 K)的条件下,在真空电弧的阴极上观察到了分散的或无斑点的电流传输模式。多年以来,一直没有已知的将电流传输到阴极的机理。真空电弧的阴极,特别是电子发射的阴极,能够产生从实验推导出的大约10-10 Am的电流密度。在这项工作中,人们进行了新的尝试来澄清这个问题。考虑了铬制成的阴极,已在其上进行了大部分实验。结果表明,参考文献中给出的热电子和光电功函数值之间的差异可以使理论与实验之间的偏差显着减小。不幸的是,文献中提供的有关热电子功函数的数据是指低于1400 K的阴极表面温度,该温度明显低于以无污点模式工作的真空电弧的铬阴极的测量温度。因此,需要更多的实验数据来阐明这种效果。

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