Effect of multiple cathode neutralizers in standard ion thrust engines

Chakshu Baweja, P. Deb
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Abstract

The corrosion of grids in ion thrusters due to unsymmetrical leaks and beam dissipation which tends to decrease lifetime of thruster. Usage of cathode neutralizers have shown to decrease corrosion and effect the thrust vector of main electron beam. The existing neutralizer configurations reduce backfiring rate of flow to a minimal level, which has in turn limited the usage and lifetime of thrusters. Present work addresses the issue of this cathodic flow to effectively neutralize the beam by placing multiple cathodes radially and optimize design conditions to produce maximum propulsive efficiency and control the flow of cathodic ions which shouldn't cross main beam threshold. Changes in propulsive efficiency and thrust have been calculated which show an effective increase of 20%-25% and thrust increase of 36%, depending on number of probes, along with maintenance of effective mixing and neutralizing.
多种阴极中和剂在标准离子推力发动机中的作用
离子推力器中栅极的腐蚀是由不对称泄漏和光束耗散引起的,会降低推力器的使用寿命。阴极中和剂的使用可以减少腐蚀并影响主电子束的推力矢量。现有的中和剂配置将回流速率降低到最低水平,这反过来又限制了推进器的使用和寿命。目前的工作解决了这种阴极流的问题,通过径向放置多个阴极来有效地中和光束,并优化设计条件以产生最大的推进效率,并控制不应越过主束阈值的阴极离子的流动。计算了推进效率和推力的变化,根据探头数量的不同,有效增加了20%-25%,推力增加了36%,同时保持了有效的混合和中和。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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