大电流真空电弧阳极区理论

Y. I. Londer, K. Ulyanov
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引用次数: 3

摘要

建立了一个大电流真空阳极区域的模型,该模型明确地考虑了等离子体中电子的漂移速度v0与它们的热速度vT的比值作为阳极鞘层中电子速度分布函数的参数。得到了确定负极降作为比值v0/vT的函数的超越方程。结果表明,与著名的Langmuir公式相反,对于v0/vT关系的任何值,阳极降都保持为负。对于v0/vT <;<;得到的表达式渐近地转化为Langmuir公式。在求解真空短弧理论中的二维问题时,采用阳极降值对电流密度的依赖关系作为阳极处的边界条件。根据Langmuir公式,当电流密度增大时,在阳极处形成一个阳极降为正的区域。本工作的结果表明,阳极正降的区域不存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theory of anode region of high-current vacuum arc
A model of the anode region of high-current vacuum is developed that explicitly takes into consideration the ratio of the drift velocity of the electrons in plasma v0 to their thermal velocity vT as a parameter of the electron velocity distribution function in the anode sheath. A transcendental equation for determining the value of the negative anode drop as a function of the ratio v0/vT is obtained. It is shown that in contrast to the well-known Langmuir formula the anode drop remains negative for any value of v0/vT relation. For small values of v0/vT <;<; 1 the expression obtained passes asymptotically into the Langmuir formula. The dependence of the anode drop value on the current density is used as a boundary condition at the anode in solving the two-dimensional problems in the theory of short vacuum arc. In accordance with the Langmuir formula a region with a positive anode drop is formed at the anode when the current density increases. The results of present work show that the region with a positive anode drop is absent.
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