首页> 外文会议>Proceedings of the Forty-First IEEE holm conference on electrical contacts(Electrical Contacts-1995) >Conductance Measurements in the Investigation of Short Circuit Arcs, in Miniature Circuit Breakers
【24h】

Conductance Measurements in the Investigation of Short Circuit Arcs, in Miniature Circuit Breakers

机译:小型断路器中短路电弧调查中的电导测量

获取原文
获取原文并翻译 | 示例

摘要

The arc formed in a current limiting miniature circuit breaker during the interruption of a short circuit fault current produces high temperature ionised gases in the arc chamber. The presence of high ionisation levels increases the probability of undesirable arc re-ignition in the contact region or other parts of the circuit breaker where small gaps occur. Control of the gas temperature, composition and movement is therefore an important factor in improving current limiting performance.rnInformation on the state of the gas can be obtained by measuring its electrical properties. This paper presents new results from a study of gas conductance in the arc chamber of a miniature circuit breaker by two different methods. The conductance of the gap between a pair of probes placed either side of the arc chamber is measured.The conductance of the gas between the plates in the arc stack is obtained from measurements of the voltage on the splitter plates.rnResults from short circuit tests (3kA) are related to gas conductivity and temperature and are supported by arc position measurements obtained using the high speed imaging system described previously.rnThe measurements indicate that gas temperatures rarely drop below 2000K during the arcing period. Information on the rate of rise of gas conductivity as the contacts open and residual conductivity after current zero are presented.
机译:在短路故障电流中断期间,限流微型断路器中形成的电弧在电弧室内产生高温电离气体。高电离水平的存在增加了在断路器的接触区域或其他部分发生小间隙的情况下发生不希望的电弧重燃的可能性。因此,控制气体的温度,组成和运动是改善限流性能的重要因素。可以通过测量其电学性质获得有关气体状态的信息。本文介绍了通过两种不同方法研究小型断路器电弧室中气体电导的新结果。测量放置在电弧室两侧的一对探针之间的间隙的电导率。通过测量分流板上的电压获得电弧堆中板间气体的电导率。rn短路测试的结果( 3kA)与气体电导率和温度有关,并由使用上述高速成像系统获得的电弧位置测量值来支持。测量结果表明在电弧放电期间气体温度很少降至2000K以下。给出了有关触点打开时气体电导率上升速率和零电流后剩余电导率的信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号