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Analysis of Electrode Phenomena in the High‐Current Arc

机译:大电流电弧中的电极现象分析

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摘要

An analysis is made of the phenomena at the electrodes of a high‐current short‐time arc. It is shown that the input power density to the anode spot is in the range 5×104 to 1×106 watts/cm2. To a first‐order approximation, all this power can be carried off by evaporation. Power conducted into the metal and lost by radiation is negligible in the probable operating range. For most materials, the anode spot is probably considerably above the boiling temperature. The process of evaporation holds the spot temperature constant at a value such that the input power and evaporation power are equal. Experimental data indicate that for any given metal the anode spot temperature is that for which the evaporation power density is at least 3×105 watts/cm2. As an example, for copper the theoretical limits of temperature are 2490 to 3040°K, while experimental data indicate a temperature of 2920°K. Other metals considered are: Ag, Al, C, Fe, Mo, Sn, Ti, W, Zn, Zr. It is also shown that for the maximum power input that can be expected at the cathode, the thermionic emission current density is very small compared to the observed values of current density.
机译:对大电流短时电弧的电极处的现象进行了分析。结果表明,阳极点的输入功率密度在5×104到1×106瓦特/ cm2的范围内。一阶近似,所有这些功率都可以通过蒸发而带走。在可能的工作范围内,传导到金属中并因辐射而损失的功率可以忽略不计。对于大多数材料,阳极斑点可能大大高于沸腾温度。蒸发过程将点温度保持恒定,使输入功率和蒸发功率相等。实验数据表明,对于任何给定的金属,阳极点温度均是其蒸发功率密度至少为3×105瓦/ cm2的温度。例如,对于铜,理论温度极限为2490至3040°K,而实验数据表明温度为2920°K。考虑的其他金属为:Ag,Al,C,Fe,Mo,Sn,Ti,W,Zn,Zr。还显示出,对于在阴极处可预期的最大功率输入,与观察到的电流密度值相比,热电子发射电流密度非常小。

著录项

  • 来源
    《Journal of Applied Physics 》 |1955年第7期| 共6页
  • 作者

    Cobine J. D.; Burger E. E.;

  • 作者单位

    General Electric Research Laboratory, The Knolls, Schenectady, 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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