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Electrical investigation of the interaction of a dense plasma with cold electrodes in air

机译:电学研究致密等离子体与空气中冷电极的相互作用

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The magnetic blowing of an arc against a third so-called commutation electrode positioned perpendicularly to the discharge axis allowed the investigation of a reproducible interaction of the plasma with this electrode. Cathodic arc spots were ignited on the commutation electrode with a negative-biased voltage and anodic spots with a positive-biased voltage. The delay times of arc spot ignition on cathodes have been measured in atmospheric pressure air for 24 different materials of high purity and for several materials of technical quality. Thereby, these materials were ordered as a function of delay time. The cathodic arc spot ignition can be divided into two different forms, one starting with a diffuse current transfer, and the other one initiated by a constricted ignition. The distribution of these forms depends mainly on the surface structure of the cathodes. A satisfactory explanation of the results can be given by proceeding on the assumption that surface effects are dominant over the bulk properties of the material.
机译:垂直于放电轴垂直于第三个所谓的换向电极上电弧的磁吹可以研究等离子体与该电极的可再现相互作用。用负偏电压在换向电极上点燃阴极电弧点,用正偏电压点燃阳极点。已经在大气压空气中针对24种不同纯度的高纯度材料和几种技术质量的材料测量了阴极上电弧点点火的延迟时间。因此,根据延迟时间对这些材料进行排序。阴极电弧点点火可分为两种不同形式,一种形式是从扩散电流传输开始,另一种形式是由收缩点火开始。这些形式的分布主要取决于阴极的表面结构。可以通过假设表面效应对材料的整体性能起主导作用来给出对结果的令人满意的解释。

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