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首页> 外文期刊>Journal of Applied Physics >Studies on the Mechanism of Operation of the L Cathode. II
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Studies on the Mechanism of Operation of the L Cathode. II

机译:L阴极的运行机理研究。 II

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摘要

An experimental study of the L cathode is presented, including the chemistry of carbonate decomposition and barium generation, the origin of BaO in the evaporant, the barium transport mechanism through the porous plug, and the factors determining cathode life. Carbonate decomposition is accompanied in low porosity cathodes by the deleterious reaction BaCO3+ 1 3 W= 1 3 Ba3WO6+CO. Barium is generated in the cavity at an equilibrium pressure by the reaction 2BaO+ 1 3 W= 1 3 Ba3WO6+Ba and is transported continuously through the porous tungsten predominantly by Knudsen flow. During transport the barium acquires oxygen from the tungsten, producing in the evaporant a large BaO content which helps to activate the surface. Termination of life coincides with completion of the BaOW reaction and onset of the subsequent reaction 2 3 Ba3WO6+ 1 3 W=BaWO4+Ba, which is accompanied by release of a poisoning agent. Material decrease in evaporation rate and a corresponding increase in cathode life may be gained by addition of SrCO3.
机译:提出了L阴极的实验研究,包括碳酸盐分解和钡生成的化学过程,蒸发剂中BaO的起源,钡通过多孔塞的传输机理以及决定阴极寿命的因素。 BaCO3 + 1 + 3 W = 1 3 Ba3WO6 + CO有害反应在低孔隙度阴极伴随着碳酸盐的分解。钡通过2BaO + 1 3 W = 1 3 Ba3WO6 + Ba反应在平衡压力下在空腔中生成,并且主要通过Knudsen流连续地通过多孔钨传输。在运输过程中,钡从钨中获取氧气,从而在蒸发剂中产生大量的BaO,这有助于活化表面。生命的终止与BaOW反应的完成和随后反应的开始同时发生2 3 Ba3WO6 + 1 3 W = BaWO4 + Ba,并伴随着中毒剂的释放。通过添加SrCO3,可以降低材料的蒸发速率,并相应延长阴极寿命。

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  • 来源
    《Journal of Applied Physics 》 |1957年第2期| 共7页
  • 作者

    Rutledge W. C.; Rittner E. S.;

  • 作者单位

    Philips Laboratories, Irvington‐on‐Hudson, New York;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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