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On matching the anode ring with the magnetic field in an ATON-type Hall effect thruster.

Authors :
Liu, Jinwen
Li, Hong
Zhang, Xu
Ding, Yongjie
Wei, Liqiu
Li, Jianzhi
Yu, Daren
Wang, Xiaogang
Source :
Journal of Applied Physics. 2018, Vol. 123 Issue 22, pN.PAG-N.PAG. 12p. 1 Diagram, 3 Charts, 9 Graphs.
Publication Year :
2018

Abstract

In an ATON-type Hall effect thruster, a ring-shaped anode and a cusped magnetic field intersect the match between the anode shape and the field topology thus must be clarified to optimize the electron transport to the anode and consequently the design of a high-efficiency thruster. By changing the match pattern with both the change in the length of the anode ring and the axial displacement of the cusp magnetic field, this study experimentally investigated the influence of the match pattern on the discharge characteristics of an ATON-type thruster—P100—under the condition of a moderate discharge voltage. The experimental results show that there is a match pattern that always optimizes the performance of the P100 thruster. At the rated operation parameters (300 V of discharge voltage and 5 mg/s of propellant mass flow rate) and the rated magnetic field strength, the observed improvements on thrust (∼79 mN to ∼85 mN) and anode efficiency (∼46% to ∼55%) are significant. Through further theoretical analysis, this study revealed that the change in the characteristics of electron momentum and energy transfer in the near-anode region, induced by the change of the match pattern, is the basic reason. The findings of this work are instructive for both understanding the electron motion in a cusp magnetic field and guiding the design of the anode ring intersecting with a cusp magnetic field in an ATON-type Hall effect thruster. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00218979
Volume :
123
Issue :
22
Database :
Academic Search Index
Journal :
Journal of Applied Physics
Publication Type :
Academic Journal
Accession number :
130178683
Full Text :
https://doi.org/10.1063/1.5026486