Study into the Influence of Technological Conditions of Electric Discharge Installation Operation on the Prebreakdown Characteristics of Electric Discharge

IF 0.9 Q3 Engineering
A. P. Smirnov, O. V. Khvoshchan
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Abstract

This work deals with the influence of the parameters of the working fluid (hydrostatic pressure, temperature, specific electrical conductivity) and the geometry of the electrode system (the length of the interelectrode gap and the uninsulated part of the anode) on the prebreakdown characteristics of an electric discharge in a liquid aqueous electrolyte (breakdown voltage and breakdown delay time) and the minimum charging voltage, which provides a stable high-voltage breakdown of the interelectrode gap. The research has shown that an increase in the hydrostatic pressure leads to an increase in most of the characteristics under study. At the same time, an increase in the specific electrical conductivity and temperature was observed to lead to their decrease. It was suggested that the effect of temperature on the prebreakdown characteristics is associated with a change in the specific electrical conductivity of the working fluid during its heating. The data obtained showed no effect of the length of the interelectrode gap on the breakdown voltage and its breakdown delay time as well as the minimum charging voltage. The results of the experimental studies made it possible to develop a criterion for determining the charging voltage that provides a stable high-voltage breakdown of the water interelectrode gap. Its experimental verification has shown that it can be applied to the design of electric discharge equipment and to the choice of technological modes of operation in the specified range of parameters.

Abstract Image

放电装置操作工艺条件对放电预击穿特性影响的研究
这项工作涉及工作流体参数(静水压力、温度、比电导率)和电极系统几何形状(电极间隙长度和阳极非绝缘部分)对液体含水电解质放电的预击穿特性(击穿电压和击穿延迟时间)和最小充电电压的影响。它提供了稳定的高压击穿电极间隙。研究表明,静水压力的增加会导致所研究的大多数特性的增加。同时,观察到比电导率和温度的增加导致它们的降低。结果表明,温度对预击穿特性的影响与工质加热过程中比电导率的变化有关。得到的数据表明,电极间隙长度对击穿电压、击穿延迟时间以及最小充电电压没有影响。实验研究的结果使得有可能开发一个标准,以确定充电电压,提供一个稳定的高压击穿水电极间隙。实验验证表明,该方法可用于放电设备的设计和规定参数范围内工艺操作方式的选择。
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来源期刊
Surface Engineering and Applied Electrochemistry
Surface Engineering and Applied Electrochemistry Engineering-Industrial and Manufacturing Engineering
CiteScore
1.60
自引率
22.20%
发文量
54
期刊介绍: Surface Engineering and Applied Electrochemistry is a journal that publishes original and review articles on theory and applications of electroerosion and electrochemical methods for the treatment of materials; physical and chemical methods for the preparation of macro-, micro-, and nanomaterials and their properties; electrical processes in engineering, chemistry, and methods for the processing of biological products and food; and application electromagnetic fields in biological systems.
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