微型离子推力器的空心阴极和低推力萃取网格分析

R. Wirz, R. Sullivan, J. Przybylowski, Mike Silva
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引用次数: 27

摘要

微型离子推进器非常适合未来的太空任务,需要高效率、精确的推力,以及mN到亚mN范围内的低污染。JPL的微型氙离子(MiXI)推进器展示了一种高效的放电和离子提取网格组件,该组件使用了灯丝阴极和内导阴极。喷气推进实验室目前正准备将一个微型空心阴极用于MiXI放电。计算分析预测,轴向上游的空心阴极位置提供了最有利的性能和光束轮廓;然而,空心阴极的热表面必须足够下游,以避免在腔室后部的阴极磁体退磁,这将大大降低放电性能。MiXI的离子提取网格设计为提供> 3 mN的推力;然而,在此之前,低推力特性并没有被研究过。用MiXI- ii推力器(接近原始MiXI推力器的复制品)获得的实验结果表明,约5 × 10 15 - 5 × 10 16 m - 3的稀疏平均放电等离子体密度允许使用极低的光束聚焦提取电压(仅为~ 250 - 500 V),从而为聚焦光束条件提供低至0.03 mN的推力水平。因此,到目前为止,MiXI在本次试验和其他试验中证明的推力范围为0.03-1.54 mN。
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Hollow Cathode and Low-Thrust Extraction Grid Analysis for a Miniature Ion Thruster
Miniature ion thrusters are well suited for future space missions that require high efficiency, precision thrust, and low contamination in the mN to sub-mN range. JPL's miniature xenon Ion (MiXI) thruster has demonstrated an efficient discharge and ion extraction grid assembly using filament cathodes and the internal conduction (IC) cathode. JPL is currently preparing to incorporate a miniature hollow cathode for the MiXI discharge. Computational analyses anticipate that an axially upstream hollow cathode location provides the most favorable performance and beam profile; however, the hot surfaces of the hollow cathode must be sufficiently downstream to avoid demagnetization of the cathode magnet at the back of the chamber, which can significantly reduce discharge performance. MiXI's ion extraction grids are designed to provide > 3 mN of thrust; however, previous to this effort, the low-thrust characteristics had not been investigated. Experimental results obtained with the MiXI-II thruster (a near replica or the original MiXI thruster) show that sparse average discharge plasma densities of ∼ 5 × 10 15 – 5 × 10 16 m - 3 allow the use of very low beamlet focusing extraction voltages of only ∼ 250 –500 V, thus providing thrust levels as low as 0.03 mN for focused beamlet conditions. Consequently, the thrust range thus far demonstrated by MiXI in this and other tests is 0.03–1.54 mN.
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