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Characteristics of a vacuum switching contact based on bipolar axial magnetic field

机译:基于双极轴向磁场的真空开关触点的特性

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Axial magnetic field (AMF) contacts can increase the interruption capability of vacuum interrupters. Depending on the design, the principles of the local axial field arrangement are different. For unipolar arrangements the direction of the axial magnetic field is the same within the whole contact area. For bipolar arrangements, the polarity of the field changes once. In this paper investigations have been carried out to characterize a bipolar AMF contact system and to test its interruption performance. The influence of the bipolar AMF on the arc development and the thermal stress is described by high speed camera and contact surface pictures. In addition, three-dimensional AMF simulations have been performed by means of a finite-element program to estimate the influence of slots within the contact plates on the AMF performance. The high interruption capability of the bipolar AMF contact system has been verified in different test laboratories up to 12 kV/80 kA/sub RMS/ (symmetrical) and 36 kV/40 kA/sub RMS/ (including 40% DC) by three and single phase tests. The investigations are completed by measuring the post-arc current and the shield-potential during recovery period, both describing the switching behavior of the contact system.
机译:轴向磁场(AMF)触点可以提高真空灭弧室的中断能力。根据设计,局部轴向磁场布置的原理是不同的。对于单极布置,轴向磁场的方向在整个接触区域内是相同的。对于双极型布置,场的极性仅改变一次。在本文中,已经进行了研究以表征双极AMF接触系统并测试其中断性能。高速相机和接触表面图片描述了双极AMF对电弧发展和热应力的影响。另外,已经通过有限元程序执行了三维AMF模拟,以估算接触板内槽对AMF性能的影响。三极和双极AMF接触系统的高中断能力已在不同的测试实验室中得到验证,分别达到12 kV / 80 kA / sub RMS /(对称)和36 kV / 40 kA / sub RMS /(包括40%DC)。单相测试。通过测量恢复期间的弧后电流和屏蔽电位来完成研究,这两个过程均描述了接触系统的开关行为。

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