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首页> 外文期刊>IEEE Transactions on Plasma Science >Properties of WCAg and WCCu for Vacuum Contactors
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Properties of WCAg and WCCu for Vacuum Contactors

机译:真空接触器的WCAg和WCCu的性能

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摘要

This paper compares the switching properties of WCAg and WCCu for vacuum contactors and studies the influence of material composition and grain size of the WC powder. Different materials are compared with respect to their breaking capability, the state of their contact surfaces after arcing, their erosion losses, and their chopping current. The experiments were carried out with a demountable vacuum chamber in a synthetic test circuit For the switching capability tests, the contacts were stressed by arc currents up to 7 kA root-mean square (rms), and a transient recovery voltage of 23 kV peak. The chopping measurements were carried out at a test current of 45-A rms. For all materials investigated there was an adverse ranking between interruption capability on the one hand and chopping current on the other. Materials with a higher WC content showed lower chopping currents, but also lower interruption limits. A general explanation is that all factors keeping the arc stable down to lower currents in the case of chopping conditions, also favor re-establishment of the arc at current zero on high current stress. Furthermore, materials with lower interruption limits exhibit stronger cracks and spikes.
机译:本文比较了真空接触器的WCAg和WCCu的开关特性,并研究了WC粉的材料组成和粒度的影响。比较了不同材料的断裂能力,电弧放电后接触面的状态,腐蚀损耗和斩波电流。实验是在合成测试电路中的可拆卸真空室中进行的。为了进行开关能力测试,触头承受的电弧电流高达7 kA均方根(rms),瞬态恢复电压峰值为23 kV。斩波测量是在45A rms的测试电流下进行的。对于所研究的所有材料,一方面的中断能力与另一方面的斩波电流之间存在不利的关系。具有较高WC含量的材料显示出较低的斩波电流,但也具有较低的中断极限。一般的解释是,在斩波条件下,所有因素都会使电弧在较低电流下保持稳定,也有利于在高电流应力下在电流为零时重新建立电弧。此外,具有较低中断极限的材料表现出更强的裂纹和尖峰。

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