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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Use of emission spectroscopy for real-time assessment of relative wall erosion rate of BHT-200 hall thruster for various regimes of operation
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Use of emission spectroscopy for real-time assessment of relative wall erosion rate of BHT-200 hall thruster for various regimes of operation

机译:使用发射光谱实时评估BHT-200霍尔推进器在各种运行方式下的相对壁腐蚀速率

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Radiation emission due to Boron atoms sputtered from the Boron-Nitride ceramic walls of a BHT-200 Hall thruster was measured as a diagnostic for real time assessment of thruster wall erosion and to determine the effects of various operation conditions on thruster lifetime. Boron neutral 249.677 and 249.773 nm lines were measured using a high-resolution spectrometer. Spectral measurement results and the accompanying analysis and discussion are presented in this study. From the spectral measurements it was observed that the Boron emission intensity significantly increases for increased discharge voltage pointing to a large increase in the thruster wall erosion rate. Additionally, the measurements show that for the nominal discharge voltage and the applied magnetic field intensity, there is an optimum propellant flow rate for minimum Boron emission, thus minimum wall erosion rate. The variation in the current to the magnet coils showed that the Boron emission intensity increases for increased magnetic field and the Boron emission intensity shows similar behavior to that of the Xenon single ion emission line intensity at 248.911 nm. The findings of the study show that emission spectroscopy can be used in determining the optimum operational parameters for minimum wall erosion for SPT type Hall thrusters.
机译:测量了从BHT-200霍尔推进器的硼氮化物陶瓷壁溅出的硼原子引起的辐射发射,作为诊断实时评估推进器壁腐蚀的诊断方法,并确定各种运行条件对推进器寿命的影响。使用高分辨率光谱仪测量硼中性线249.677和249.773 nm。本研究介绍了光谱测量结果以及相关的分析和讨论。从光谱测量中观察到,随着放电电压的增加,硼的发射强度显着增加,这表明推进器壁的腐蚀速率大大增加。另外,测量结果表明,对于标称放电电压和所施加的磁场强度,有一个最佳的推进剂流速,以使硼排放量最小,从而使壁腐蚀速率最小。电磁线圈电流的变化表明,随着磁场的增加,硼的发射强度增加,并且硼的发射强度表现出与248.911 nm的氙单离子发射谱线强度相似的行为。研究结果表明,发射光谱可以用于确定SPT型霍尔推力器的最小壁腐蚀最佳操作参数。

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