上升时间为100纳秒的兆安级电流脉冲整形器

P. Duday, E.V. Bochkov, V. Dudin, G. Dolgachev, V. A. Ivanov, A. V. Ivanovsky, B. Egorychev, A. A. Zimenkov, S. M. Polyushko, A. N. Skobelev, V. B. Kudelkin, A. I. Kraev, A. Nemchinov, Y.I. Matsev, A. Fevralev
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引用次数: 3

摘要

本文提出了一种塑造上升时间为100ns的亚兆培级电流脉冲的方法。在这种情况下,一个以爆炸磁发生器为基础的装置可以成为持续微秒的原始电流的来源。利用VNIIEF设计的低感应箔电爆炸电流开关和RSC KI在“贝加尔湖”计划下开发的真空放电器来形成具有所需参数的电流脉冲。为了验证所提出的电流脉冲整形方法,设计了一系列的爆炸实验配置。采用带爆炸电流开断开关的螺旋爆炸磁发生器作为能量源。在实验中,提出在~ 10 nH的负载下,得到幅度为4 ~ 5 MA、上升时间为~ 100 ns的电流脉冲。给出了电容储能装置在实验室条件下实验配置的实验验证结果。第一次爆炸实验的结果将被描述和分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shaper of a current pulse of megaampere level with rise time of 100 ns
The paper presents the method of shaping the current pulse of submegampere level with the rise time of 100 ns. At this a device on the basis of an explosive magnetic generator can be the source of the original current of microsecond duration. A low-inductive foil electrically exploded current opening switch designed at VNIIEF and a vacuum discharger developed at the RSC KI under “Baikal” program are used to shape the current pulse with required parameters. To test the proposed method of the current pulse shaping, the configuration of a series of explosive experiments has been worked out. The helical explosive magnetic generator with the explosive current opening switch is used as the energy source. In the experiments it is proposed to get the current pulse with the amplitude 4–5 MA and rise time of ∼100 ns in the load of ∼10 nH. The results of the experimental checking of the experiment configuration under laboratory conditions on the facility with capacitive energy storages will be given. The results of the first explosive experiment will be described and analyzed.
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