Cathode erosion site distributions in an applied-field magnetoplasmadynamic thruster

被引:0
作者
吴鹏 [1 ]
王一白 [1 ]
李永 [2 ]
王宝军 [2 ]
张凯宇 [1 ]
汤海滨 [3 ,4 ,5 ]
曹晋滨 [3 ]
机构
[1] School of Astronautics Beihang University
[2] Beijng Institute of Control Engineering
[3] School of Space and Environment Beihang University
[4] Key Laboratory of Spacecraft Design Optimization & Dynamic Simulation Technologies Ministry of Education
[5] Laboratory of Space Environment Monitoring and Information Processing Ministry of Industry and Information Technology
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中图分类号
V439.2 [];
学科分类号
080703 ; 082502 ;
摘要
Erosion can influence cathode life, and is thus considered to be one of the main factors limiting the application of applied-field magnetoplasmadynamic thrusters. In this paper, erosion sites on graphite cathodes are studied so as to identify the influence of applied magnetic field and the ratio of propellant mass flow rate supplied from cathode and anode. The experiment results show that the application of applied magnetic field can significantly reduce the erosion rate of the cathode compared to that without magnetic field. The erosion sites on the cathode vary with the relative position of the convergent-divergent magnetic field, and are mainly distributed in the divergent part of the field. The erosion sites on the cathodes are found to be related to the propellant supply. The decreasing anode mass flow rate enlarges the range of erosion. These results are much helpful for the analysis of cathode erosion site location since they provide evidences of erosion mechanisms and point out the directions for further research.
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页码:70 / 76
页数:7
相关论文
共 4 条
[1]  
Transport coefficients of argon, nitrogen, oxygen, argon-nitrogen, and argon-oxygen plasmas[J] . A. B. Murphy,C. J. Arundelli.Plasma Chemistry and Plasma Processing . 1994 (4)
[2]  
Wang B et al. Meas.Sci.Technol . 2018
[3]  
Wang L J et al. IEEE Trans.Plasma Sci . 2019
[4]  
Wang B J et al. J.Vis.Exp . 2018