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首页> 外文期刊>Contributions to Plasma Physics >The vacuum arc cathode spot and plasma jet: Physical model and mathematical description
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The vacuum arc cathode spot and plasma jet: Physical model and mathematical description

机译:真空电弧阴极点和等离子体射流:物理模型和数学描述

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摘要

A physical model of the cathode processes and flow of material eroded from the cathode of a vacuum arc is formulated. The model considers the plasma jet and the plasma generation regions, and provides electrical current continuity at the metal-plasma boundary in the cathode spot. Based on an analysis of the kinetics of cathodic evaporation and plasma flow in the hydrodynamic region, a closed system of equations is obtained. Boundary conditions for the cathodic plasma expansion are formulated. The system of equations allows to compute the spot parameters (cathode potential drop, cathode material erosion rate, plasma parameters -velocity, density, temperature, e.t.c) using a self-consistent description of the plasma flow in the cathode spot and cathode jet regions. The calculations for spot currents 1-20 A show that the cathode potential drop increases, erosion rate decreases with spot current and spot life time decreasing.
机译:制定了阴极过程的物理模型和从真空电弧的阴极腐蚀出来的材料的流动。该模型考虑了等离子体射流和等离子体产生区域,并在阴极点的金属等离子体边界处提供了电流连续性。基于对流体动力学区域中阴极蒸发和等离子体流动力学的分析,获得了封闭的方程组。制定了阴极等离子体膨胀的边界条件。该方程式系统允许使用对阴极点和阴极射流区域中等离子体流的自洽描述来计算点参数(阴极电势降,阴极材料腐蚀速率,等离子体参数-速度,密度,温度等)。对于点电流1-20 A的计算表明,随着点电流的增加,阴极电势下降,腐蚀速率降低,并且点寿命缩短。

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