首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A THEORETICAL AND EXPERIMENTAL INVESTIGATION OF COPPER ELECTRODE EROSION IN ELECTRIC ARC HEATERS .2. THE EXPERIMENTAL DETERMINATION OF ARC SPOT PARAMETERS
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A THEORETICAL AND EXPERIMENTAL INVESTIGATION OF COPPER ELECTRODE EROSION IN ELECTRIC ARC HEATERS .2. THE EXPERIMENTAL DETERMINATION OF ARC SPOT PARAMETERS

机译:电热炉中铜电极腐蚀的理论和实验研究2。实验确定电弧点参数

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摘要

Two important copper electrode parameters, namely, the volt-equivalent of the are spot heat flux and the are spot effective current density have been measured experimentally in magnetically driven arcs in air. The measurements were performed for currents in the range 0.025-1 kA, magnetic field strengths 0.133-0.95 T and air pressures 1-40 atm. The volt-equivalent of the are spot heat flux is proposed to account far the total heat flux entering the electrode surface through the are spot, An unsteady thermal method was applied in the measurements. To obtain the effective current density, the thermophysical experiment was combined with the application of equations of the erosion model presented in a previous companion paper. We show that the volt-equivalent of the cathode are spot heat flux increases with increasing magnetic field. The sum of the cathode and the anode voltage drops is shown to be approximately equal to the sum of the corresponding volt-equivalents of the are spot heat fluxes. Good agreement with the measurements of other authors is obtained. In particular, the effective are spot current density allows one to confirm the thermophysical model for the erosion of copper electrodes indirectly. [References: 16]
机译:两个重要的铜电极参数,即当场热通量和当场有效电流密度的伏特当量,已在空气中的磁驱动电弧中进行了实验测量。针对电流范围为0.025-1 kA,磁场强度为0.133-0.95 T和气压为1-40 atm的情况进行测量。提出了点热通量的伏特当量,以解决通过点热进入电极表面的总热通量的问题。在测量中采用了非稳态热方法。为了获得有效的电流密度,将热物理实验与先前随附论文中提出的侵蚀模型方程式相结合。我们表明,阴极的伏特当量是随磁场的增加而增加的点热通量。阴极和阳极电压降的总和显示为大约等于点热通量的相应伏特当量的总和。获得与其他作者的测量结果的良好一致性。特别地,有效的点电流密度允许人们间接确认铜电极腐蚀的热物理模型。 [参考:16]

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