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Barium depletion in hollow cathode emitters

机译:空心阴极发射极中的钡耗尽

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摘要

Dispenser hollow cathodes rely on a consumable supply of Ba released by BaO-CaO-Al_2O_3 source material in the pores of a tungsten matrix to maintain a low work function surface. The examination of cathode emitters from long duration tests shows deposits of tungsten at the downstream end that appear to block the flow of Ba from the interior. In addition, a numerical model of Ba transport in the cathode plasma indicates that the Ba partial pressure in the insert may exceed the equilibrium vapor pressure of the dominant Ba-producing reaction, and it was postulated previously that this would suppress Ba loss in the upstream part of the emitter. New measurements of the Ba depletion depth from a cathode insert operated for 8200 h reveal that Ba loss is confined to a narrow region near the downstream end, confirming this hypothesis. The Ba transport model was modified to predict the depletion depth with time. A comparison of the calculated and measured depletion depths gives excellent qualitative agreement, and quantitative agreement was obtained assuming an insert temperature 70 °C lower than measured beginning-of-life values.
机译:分配器空心阴极依赖于可消耗的Ba供给,该Ba消耗由BaO-CaO-Al_2O_3源材料释放在钨基体的孔中,以维持较低的功函表面。长期测试中对阴极发射极的检查表明,在下游端有钨沉积,似乎阻止了Ba从内部的流动。另外,在阴极等离子体中Ba运移的数值模型表明,插入物中的Ba分压可能会超过占主导地位的Ba生成反应的平衡蒸气压,并且先前假定这将抑制上游Ba的损失。发射器的一部分。对运行8200 h的阴极插入物的Ba耗尽深度进行的新测量表明,Ba损耗被限制在下游端附近的狭窄区域,从而证实了这一假设。 Ba输运模型进行了修改,以预测随时间的耗尽深度。计算和测量的耗尽深度的比较给出了极好的定性一致性,并且假设插入温度比测得的寿命开始值低70 C,则获得了定量的一致性。

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