A Semi-Empirical Model of Cathodic Arc Spot Motion under the Influence of External Magnetic Fields

Plasma Pub Date : 2023-12-19 DOI:10.3390/plasma7010001
A. Mahrle, Otmar Zimmer, Steffen Schenk, M. Borkmann, Christoph Leyens
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引用次数: 0

Abstract

Plasma generation by cathodic arc spots plays a crucial role for coating processes that make use of the Arc-PVD technology. Usually, the arc spot motion over the cathode is steered by a magnetic field of a particular distribution and magnitude to ensure a continuous plasma generation, the avoidance of liquid droplets, and a proper utilization of cathode material by homogeneous erosion. This study presents a semi-empirical model that allows for an examination and characterization of the arc spot motion with regard to direction and speed as a function of an imposed magnetic field. This model considers the different components of random walk, retrograde, and Robson drift motion. Introduced empirical coefficients were determined by corresponding experimental investigations. The calibrated model describes the arc spot motion in good agreement to the recorded spot tracks and can therefore be applied for an evaluation of different magnetic field configurations.
外磁场影响下阴极弧点运动的半经验模型
阴极弧点产生的等离子体对利用电弧-气相沉积技术的涂层工艺起着至关重要的作用。通常,阴极上的弧点运动由特定分布和大小的磁场引导,以确保持续产生等离子体,避免液滴,并通过均匀侵蚀适当利用阴极材料。本研究提出了一个半经验模型,用于检查和描述弧点运动的方向和速度与外加磁场的函数关系。该模型考虑了随机行走、逆行和罗布森漂移运动的不同组成部分。引入的经验系数是通过相应的实验研究确定的。校准模型描述的弧光点运动与记录的光点轨迹非常吻合,因此可用于评估不同的磁场配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.30
自引率
0.00%
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0
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