An opening displacement characteristic determined by high-current anode phenomena of vacuum interrupter

Liqiong Sun, Li Yu, Zhiyuan Liu, Jianhua Wang, Yingsan Geng
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引用次数: 2

Abstract

A vacuum interrupter reaches its interruption limit once high-current anode phenomena occur. It is well-known that contact diameter, contact material, and magnetic field have a significant influence on high-current anode phenomena formation. However, an opening displacement characteristic of movable contact is another contribution for an anode spot formation. The objective of this paper is to propose an opening displacement characteristic for a vacuum interrupter to avoid a formation of high-current anode phenomena. The anode phenomena were observed by using high speed CCD camera. The vacuum interrupters were used in the experiments, which had a glass envelope and there was no stainless shield installed. The diameters of butt type contacts were 12 mm and 25 mm, respectively. The average opening velocities during 10ms after contacts separated were ranged from 1.1m/s to 2.0m/s. And arcing time was adjusted from 2ms to 10ms with a fixed velocity and peak arc current. The results showed that in an anode diagram for each vacuum interrupter, an arcing curve can be obtained, which avoids the regions of intense arc mode and anode spot mode. And this arcing curve corresponds to an opening displacement curve of vacuum interrupter. With the proposed opening displacement curve, high-current anode phenomena will not occur, which has a positive impact on the interrupting performance of the vacuum interrupter.
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由真空灭流器大电流阳极现象决定的开孔位移特性
当出现大电流阳极现象时,真空断流器达到断流极限。众所周知,触点直径、触点材料和磁场对大电流阳极现象的形成有重要影响。然而,可动触点的开口位移特性是阳极斑点形成的另一个贡献。本文的目的是提出真空灭流器的开孔位移特性,以避免形成大电流阳极现象。利用高速CCD相机观察阳极现象。实验采用真空灭流器,其外壳为玻璃,未安装不锈钢屏蔽。对接型触点直径分别为12 mm和25 mm。触点分离后10ms内的平均开启速度为1.1 ~ 2.0m/s。电弧时间由2ms调整为10ms,电弧速度和电弧峰值电流固定。结果表明,在真空灭弧器的阳极图中,可以得到一条弧型曲线,避免了强弧型和阳极斑点型区域。该电弧曲线对应于真空灭弧器的开孔位移曲线。采用所提出的开断位移曲线,不会出现大电流阳极现象,对真空灭弧器的开断性能有积极的影响。
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