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首页> 外文期刊>Plasma Sources Science & Technology >Simulation of the hot core mode of arc attachment at a thoriated tungsten cathode by an emitter spot model
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Simulation of the hot core mode of arc attachment at a thoriated tungsten cathode by an emitter spot model

机译:发射极点模型模拟th钨阴极上电弧附着的热芯模式

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摘要

Recently, a constricted attachment of an atmospheric pressure low-current argon arc in the centre of the flat end face of a thoriated tungsten cathode was observed and spectroscopically analysed. Its diameter of 0.6mm and its length of the free standing part of 10mm are the typical dimensions of electrodes for high-intensity discharge lamps. This paper gives a physical interpretation of the axially symmetric arc spot by a simulation of its properties with a cathodic sheath model which takes into account a reduction in the work function above a critical temperature of the cathode surface by a thorium ion current. At first the optical observation and spectroscopic investigations are recapitulated. Then, an overview is given on the essential elements which are needed to simulate the cathodic arc attachment on a hot electrode. A simulation of a central cathode spot with these elements gives results which are far away from the experimental findings if a constant work function φ is used. Therefore, a temperature-dependent work function φ(T) is introduced. This φ(T) transitions from 4.55 to 3 eV above temperatures of the order of 3000 K. With this emitter spot model a constricted arc attachment is obtained by simulation in the centre of the flat end face of the cathode in accordance with experiment. For currents below iarc,max ≈ 15.5A, two spot solutions with different cathode falls are found. They form a current-voltage-characteristic consisting of two branches which extend from a turning point at iarc,max to lower currents. For iarc > iarc,max, only a diffuse mode of cathodic arc attachment is obtained. It is shown by a comparison with measured data for iarc = 7.5, 10, 12.5 and 15A that the solution with the lower cathode fall is observed experimentally.
机译:近来,观察到并光谱分析了大气压低电流氩弧在attachment化钨阴极的平坦端面的中心的收缩。其直径为0.6mm,其独立部分的长度为10mm,是高强度放电灯电极的典型尺寸。本文通过用阴极鞘模型模拟其特性,对轴向对称电弧点进行了物理解释,其中考虑了or离子电流使功函数在阴极表面的临界温度以上降低。首先,对光学观察和光谱学研究进行了概述。然后,概述了模拟热电极上的阴极电弧附着所需的基本元素。如果使用恒定的功函数φ,则用这些元素对中心阴极斑点进行的模拟结果与实验结果相去甚远。因此,引入了随温度变化的功函数φ(T)。在3,000 K量级以上的温度下,该φ(T)从4.55转变为3 eV。根据该发射极点模型,通过模拟在阴极的扁平端面中心获得了狭窄的电弧附着。对于低于iarc,max≈15.5A的电流,发现了两个具有不同阴极跌落的点解决方案。它们形成由两个分支组成的电流-电压特性,这两个分支从iarc,max处的转折点延伸至较低电流。对于iarc> iarc,max,仅获得阴极电弧附着的扩散模式。通过与iarc = 7.5、10、12.5和15A的测量数据进行比较可以看出,实验观察到了阴极降落较低的溶液。

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