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首页> 外文期刊>Electrical Engineers, Proceedings of the Institution of >The vacuum switch. Part 1: Properties of the vacuum arc
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The vacuum switch. Part 1: Properties of the vacuum arc

机译:真空开关。第1部分:真空电弧的特性

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摘要

In any study of switching devices, an understanding of the current conduction processes in the steady or quasi-steady state must precede the investigation of the transient phenomena during the change from the conducting to the insulating state. The paper describes the results of an investigation into the nature of the arcs which are formed when the contacts of a vacuum switch separate. In many respects the vacuum arc is the simplest of all the high-current gas discharges, since there exists no ambient atmosphere to complicate the arcing processes, but this simplicity is only relative, and many assumptions have had to be made to enable a quantitative picture to be built up. The vacuum arc appears to have two very different states; in one, which seems to be the normal condition at currents below about 104A with copper electrodes, the arc is totally unlike high-pressure arcs, and burns as a set of completely separate arcs electrically in parallel. In the other states the arc much more nearly resembles high-pressure arcs. Most of the work described deals with the vacuum arc in the first state, and the density of neutral atoms, ions and electrons in the discharge is calculated as a function of current and position. The influence of the properties of the electrode materials on the arcing voltage and the stability of the arc is described, and the energy balance of the arc is computed. The data from the paper are used in a companion paper to investigate theoretically arc-extinction processes.
机译:在对开关装置的任何研究中,必须先了解稳态或准稳态下的电流传导过程,然后再研究从导通状态转换为绝缘状态期间的瞬态现象。本文描述了调查真空开关的触点分离时形成的电弧的性质的结果。在许多方面,真空电弧是所有大电流气体放电中最简单的一种,因为不存在使电弧放电过程复杂化的环境气氛,但是这种简单性只是相对的,必须做出许多假设才能实现定量分析要建立。真空电弧似乎具有两种截然不同的状态。在一个似乎是正常情况下,使用铜电极的电流低于104A的情况下,电弧完全不同于高压电弧,并作为一组完全分开的平行电电弧燃烧。在其他状态下,电弧几乎类似于高压电弧。所描述的大多数工作都是在第一状态下处理真空电弧,并且放电中的中性原子,离子和电子的密度是根据电流和位置的函数计算的。描述了电极材料的性质对电弧电压和电弧稳定性的影响,并计算了电弧的能量平衡。论文中的数据用于辅助论文中,以研究理论上的消弧过程。

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