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An ablative pulsed plasma thruster with a segmented anode

机译:具有分段阳极的烧蚀脉冲血浆推进器

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An ablative pulsed plasma thruster (APPT) design with a ‘segmented anode' is proposed in this paper. We aim to examine the effect that this asymmetric electrode configuration (a normal cathode and a segmented anode) has on the performance of an APPT. The magnetic field of the discharge arc, plasma density in the exit plume, impulse bit, and thrust efficiency were studied using a magnetic probe, Langmuir probe, thrust stand, and mass bit measurements, respectively. When compared with conventional symmetric parallel electrodes, the segmented anode APPT shows an improvement in the impulse bit of up to 28%. The thrust efficiency is also improved by 49% (from 5.3% to 7.9% for conventional and segmented designs, respectively). Long-exposure broadband emission images of the discharge morphology show that compared with a normal anode, a segmented anode results in clear differences in the luminous discharge morphology and better collimation of the plasma. The magnetic probe data indicate that the segmented anode APPT exhibits a higher current density in the discharge arc. Furthermore, Langmuir probe data collected from the central exit plane show that the peak electron density is 75% higher than with conventional parallel electrodes. These results are believed to be fundamental to the physical mechanisms behind the increased impulse bit of an APPT with a segmented electrode.
机译:本文提出了一种具有“分段阳极”的烧结脉冲血浆推进器(APPT)设计。我们的目标是检查该不对称电极配置(正常阴极和分段阳极)对APPT的性能的影响。使用磁探针,朗米尔探针,推力支架和质量比特测量,研究了排出弧,脉冲钻头和推力效率中的磁场的磁场。与传统对称的平行电极相比,分段阳极APPT显示出高达28%的脉冲位的改善。推力效率也得到了49%(分别为常规和分段设计的5.3%至7.9%)。放电形态的长曝光宽带发射图像表明,与正常阳极相比,分段的阳极导致发光放电形态的明显差异,更好地对等离子体准直。磁探针数据表明分段阳极APPT在放电弧中表现出更高的电流密度。此外,从中央出口平面收集的Langmuir探针数据表明,峰值电子密度比传统的平行电极高75%。这些结果被认为是用分段电极增加脉冲位的物理机制的基础。

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