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Evaluation of arc quenching characteristics of various gases using power semiconductors

机译:功率半导体各种气体弧形淬火特性评价

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This paper presents the arc quenching abilities of various gases studied using a power semiconductor switching technique. The technique uses an insulated gate bi-polar transistor (IGBT) to inject current and apply voltage to the plasma arc. Using this technique, arcs in free recovery condition after a 50 A steady state condition were investigated in SF6, CO2, O-2, N-2, air and Ar gas flows. Furthermore, at a specific time high voltages of about 1.1 kV and 1.7 kV mu s(-1) were applied to the residual decaying arcs by the IGBT to elucidate the arc re-ignition process and recovery properties. These systematic experiments further enabled us to estimate the interruption probability versus the voltage application time. From these results, the voltage application time for 50% successful interruption was estimated for various gases, with the results showing a direct relation to the interruption capabilities of the respective gases. These results were then compared to the electron density measurement results and numerical simulation results to confirm their validity. All data obtained from the experiments and simulation is expected to be useful for elucidating the arc quenching physics and also for the practical application of arc quenching phenomena.
机译:本文介绍了使用功率半导体切换技术研究的各种气体的电弧淬火能力。该技术使用绝缘栅极双极晶体管(IGBT)来注入电流并向等离子体弧施加电压。使用该技术,在SF6,CO 2,O-2,N-2,空气和Ar气流中研究了50级稳态条件后的自由恢复条件下的弧。此外,在特定的时间内通过IGBT施加约1.1kV和1.7kV mu S(-1)的高电压,以阐明弧形重新点火过程和回收性能。这些系统实验进一步使我们能够估计中断概率与电压施加时间。从这些结果,估计各种气体的50%成功中断的电压施加时间,结果显示出与各个气体的中断能力的直接关系。然后将这些结果与电子密度测量结果和数值模拟结果进行比较,以确认其有效性。预计从实验和模拟中获得的所有数据都可用于阐明电弧淬火物理学以及用于弧形淬火现象的实际应用。

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