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Residual plasma property control for hypervelocity railgun performance

机译:残留等离子体特性控制,可实现超高速轨道炮的性能

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The authors have been investigating alternative techniques for controlling the residual plasma left behind by the accelerating plasma armature. They believe that, if residual plasma resistance can be made sufficiently high, secondary currents will not occur. They describe residual plasma property control techniques which they have tested. Some of these lead to compact plasma armatures, without secondaries. Experimental data and analytical results showing the effect of these approaches are provided. At the velocities tested so far, one can prevent secondary formation by limiting or eliminating the plasma venting behind the main armature. Three different venting techniques have been successful at controlling plasma venting. The rail venting approach requires better seal design. The forward venting and insulator venting approaches require more test evaluation.
机译:作者一直在研究控制加速等离子体电枢留下的残留等离子体的替代技术。他们认为,如果可以使剩余的等离子体电阻足够高,则不会出现次级电流。他们描述了他们已经测试过的残留等离子体特性控制技术。其中一些导致紧凑的等离子电枢,而没有次级。提供了表明这些方法效果的实验数据和分析结果。以目前为止的速度进行测试,可以通过限制或消除主衔铁后面的等离子排放来防止二次形成。三种不同的排气技术已成功控制等离子体排气。导轨排气方法要求更好的密封设计。正向排气和绝缘子排气的方法需要更多的测试评估。

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