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Influence of contact erosion on the state of SF6 gas in interrupter chambers of HV SF6 circuit breakers

机译:接触腐蚀对高压SF6断路器灭弧室中SF6气体状态的影响

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A considerable part of the energy released by electric arc during breaking of a short-circuit current is being absorbed in the moving and stationary arcing contacts. The rest of the energy is being released as thermal stresses of the nozzle and of other parts of the arcing chamber, as well as heating, dissociation and ionization of the arc extinction medium, and in losses to the nearby environment. The absorption of the energy causes heating, melting and finally the vaporization of contact material and it is the main cause of contact erosion. It is obvious that the process of arcing contact erosion has a considerable influence on the state of SF6 gas in the contact gap, but also in the adjacent interrupting chambers. A contact erosion model is incorporated into a computer program for high voltage circuit breaker interruption simulation. The calculated contact erosion intensity is verified by comparing the calculated change in the contact shape and mass losses with experimentally obtained data. The influence of vaporized contact material on the state of SF6 gas in the interrupter chambers and the dielectric performance of the contact gap is also analyzed and discussed.
机译:在短路电流中断期间,电弧释放的大部分能量被吸收在活动和固定电弧触头中。其余的能量作为喷嘴和电弧室其他部分的热应力以及消弧介质的加热,离解和电离释放出来,并释放给附近的环境。能量的吸收引起接触材料的加热,熔化并最终蒸发,这是接触腐蚀的主要原因。显然,电弧接触腐蚀的过程对接触间隙中的SF6气体的状态有很大影响,但也对相邻的中断室中的SF6气体的状态有很大的影响。接触腐蚀模型被合并到计算机程序中,用于高压断路器的中断仿真。通过将计算出的接触形状和质量损失的变化与实验获得的数据进行比较,可以验证计算出的接触腐蚀强度。还分析和讨论了气化接触材料对灭弧室中SF6气体状态的影响以及接触间隙的介电性能。

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