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Investigations on magnetic field in the interface regions between plasma armature and rail electrodes in a railgun

机译:轨道枪中等离子体电枢与轨道电极之间的界面区域的磁场研究

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摘要

The key to controlling rail ablation lies in the interface regions between plasma armature and rails. The distribution of plasma in this region is affected by many factors, the magnetic field being the dominant one. In this paper, we analyze the magnetic field generated by rails and plasma armature in the interface regions, study the pattern and distribution of plasma near the interface and show the affect of magnetic field on plasma distribution and on the energy input to the rails. In order to reduce the initial ablation of the rail, we designed magnetic field coils outside the beginning part of the rails of our railgun. The coils enhance the initial magnetic field and increase the uniformity of the current distribution in the rails. Based on results from experiments and theoretical analysis, we propose a reasonable configuration of magnets and plasma armature.
机译:控制轨道消融的关键在于等离子电枢和轨道之间的界面区域。等离子体在该区域中的分布受许多因素影响,其中磁场是主要因素。在本文中,我们分析了轨道和等离子衔铁在界面区域中产生的磁场,研究了界面附近等离子体的分布和分布,并显示了磁场对等离子体分布和向轨道输入的能量的影响。为了减少铁轨的初始烧蚀,我们设计了电磁枪的铁轨起始部分之外的磁场线圈。线圈增强了初始磁场并增加了铁轨中电流分布的均匀性。根据实验和理论分析的结果,我们提出了合理的磁体和等离子体电枢配置。

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