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首页> 外文期刊>Journal of Applied Physics >Application Of A Self-breakdown Hydrogen Spark Gap Switch On High Power Pulse Modulator
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Application Of A Self-breakdown Hydrogen Spark Gap Switch On High Power Pulse Modulator

机译:自击穿氢火花间隙开关在大功率脉冲调制器上的应用

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Hydrogen has the best recovery property compared to other gases such as N2 and SF6. Therefore, it has a potential application on the multipulse or high repetitive pulse modulator. This paper introduced a high pressure hydrogen gas switch with two cylindrical structures. The stress of the switch under high pressure was analyzed theoretically, and the hydrogen gas switch was hydrostatically tested with pressure up to 30 atm. Such a switch was employed on a high power pulse modulator using water as the dielectric of pulse forming line. At the switch breakdown voltage of 520 kV and the pressure of hydrogen 12 atm, 230 kV, 31 kA, and 60 ns pulse width electron beams were obtained at the field emission diode. Furthermore, when the switch was filled with different gases such as H2, N2, and SF6, the rise times of diode voltage of modulator had been compared at the gas breakdown voltage 400 kV. The results showed that the rise times of diode voltage were reduced obviously when hydrogen was used as the dielectric of spark gap switch.
机译:与其他气体(例如N2和SF6)相比,氢气具有最佳的回收性能。因此,它在多脉冲或高重复性脉冲调制器上具有潜在的应用。本文介绍了一种具有两个圆柱形结构的高压氢气开关。从理论上分析了开关在高压下的应力,并对氢气开关进行了高达30atm的压力静水压测试。这种开关用在高功率脉冲调制器上,该调制器使用水作为脉冲形成线的电介质。在520 kV的击穿电压和12 atm的氢气压力下,在场发射二极管上获得了230 kV,31 kA和60 ns的脉冲宽度电子束。此外,当开关充满H2,N2和SF6等不同气体时,比较了在气体击穿电压为400 kV时调制器的二极管电压的上升时间。结果表明,以氢为火花隙开关的电介质,二极管电压的上升时间明显减少。

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