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Welding behavior of vacuum interrupters equipped with CuCr contact material caused by making and breaking operations under short circuit current interruption

机译:短路电流中断下通断操作导致配备CuCr触头材料的真空灭弧室的焊接性能

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Vacuum interrupter (VI) especially with high short-circuit interruption ability are mostly equipped with copper-chromium contact material. Especially for short circuit current making and breaking operations the contact material is based on CuCr-25...50 wt.-% in most of the cases by applying transverse magnetic field (TMF) or axial magnetic field (AMF) contact systems worldwide and multipurpose application. The study is carried out on standard VIs as well as optimized micro added elements and chemical compounds contact material equipped with TMF contact system. The contact material is based on the well-known solid state sintered material production technology. A large number of making operations under short circuit current conditions are done to investigate the welding forces. The welding forces especially after the making operation were measured by tensile test under dynamic condition. The statistic effect how the welding force develops is also being presented. Characteristics of the fractured surfaces and at the cross section were investigated by using light microscope, scanning electron microscopy (SEM) and the energy dispersive X-ray (EDX).
机译:真空灭弧室(VI),特别是具有高短路中断能力的真空灭弧室(VI),大多配备了铜铬接触材料。特别是对于短路电流产生和分断操作,在大多数情况下,接触材料是基于CuCr-25 ... 50 wt .-%的,通过在全球范围内施加横向磁场(TMF)或轴向磁场(AMF)接触系统来实现,多用途应用程序。该研究是在标准VI以及配备TMF接触系统的优化的微量添加元素和化合物接触材料上进行的。接触材料基于众所周知的固态烧结材料生产技术。在短路电流条件下进行了大量的制造操作以研究焊接力。在动态条件下,通过拉伸试验来测量特别是在制造操作之后的焊接力。还提出了焊接力如何发展的统计效果。通过使用光学显微镜,扫描电子显微镜(SEM)和能量色散X射线(EDX)研究了断裂表面和横截面的特征。

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