直槽接触结构参数对电弧特性影响的研究

IF 1.3 4区 物理与天体物理 Q3 PHYSICS, FLUIDS & PLASMAS
Leming Wei;Shixin Xiu;Yu Yang;Xingyu Lin;Yantao Shen;Dejun Zhu
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引用次数: 0

摘要

真空横磁触点结构简单,接触电阻低,正日益受到人们的重视。这些触点之间的电弧特性关键地决定了它们的分断能力。因此,本文通过仿真和实验探讨了提高直槽横向磁触点电弧特性的方法。仿真结果表明,增加槽数可以增强作用在圆弧上的径向力,而适当增加槽中心到圆弧中心的距离可以调节作用在圆弧上不同位置的力的方向。此外,纵向倾斜槽可以进一步减小接触外侧圆弧上径向力的大小。选取较为合理的触点参数制作直槽横向磁触点,并在可拆卸真空室内进行引弧试验。结果表明:随着作用在电弧上的径向力的减小,电弧在极外溅射的程度减小;而随着作用在电弧上的切向力的增大,电弧圆周运动的速度增大。本文通过调整结构参数来调节弧上切向力与径向力的比例,为后续接触设计的改进提供了新的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Influence of Straight Slot Contact Structure Parameters on Arc Characteristics
Vacuum transverse magnetic contacts, with simple structures and low contact resistance, are garnering increasing attention in development and exploitation. The arc characteristics between these contacts crucially determine their breaking capacity. Therefore, methods to enhance the arc characteristics of straight slot transverse magnetic contacts through simulation and experimentation are explored in this article. The simulation results show that increasing the number of slots can enhance the radial force on the arc, while appropriately increasing the distance from the slot center to the center can adjust the direction of the force on the arc at different positions. Additionally, longitudinal tilted slots can further reduce the magnitude of the radial force on the arc on the outside of the contacts. More reasonable contact parameters are selected for the production of straight slot transverse magnetic contacts, and arc ignition tests are conducted within a detachable vacuum chamber. The results indicate that as the radial force acting on the arc decreases, the extent of arc splashing outside the poles reduces, while as the tangential force acting on the arc increases, the speed of the arc’s circular motion rises. In this article, the proportion of tangential force to radial force on the arc is regulated by adjusting the structural parameters, providing a new direction for the improvement of subsequent contact designs.
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来源期刊
IEEE Transactions on Plasma Science
IEEE Transactions on Plasma Science 物理-物理:流体与等离子体
CiteScore
3.00
自引率
20.00%
发文量
538
审稿时长
3.8 months
期刊介绍: The scope covers all aspects of the theory and application of plasma science. It includes the following areas: magnetohydrodynamics; thermionics and plasma diodes; basic plasma phenomena; gaseous electronics; microwave/plasma interaction; electron, ion, and plasma sources; space plasmas; intense electron and ion beams; laser-plasma interactions; plasma diagnostics; plasma chemistry and processing; solid-state plasmas; plasma heating; plasma for controlled fusion research; high energy density plasmas; industrial/commercial applications of plasma physics; plasma waves and instabilities; and high power microwave and submillimeter wave generation.
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