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Counterstreaming ions at the inner pole of a magnetically shielded Hall thruster

机译:磁屏蔽霍尔推进器的内部磁极处的副侧离子

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摘要

During development testing of a 12.5 kW magnetically shielded Hall thruster, direct evidence of counterstreaming ions eroding the pole covers was found. One stream of ions appears to originate from the discharge channel while the other stream appears to originate from the centrally mounted cathode. Velocity distribution measurement indicates that each stream impacts the poles of the thruster at high oblique angles of incidence. While the average energy of each stream was in the tens of eV, the energy distributions contained high-energy tails that can be a major contributor to erosion. Starting with the physical picture of high oblique angle bombardment, predictions of change in erosion behavior over time are in good agreement with pole cover erosion measurements taken during wear testing. The new evidence points to a need to study these ions that are traditionally considered "low-energy" ions and the role they play in the erosion of the poles of magnetically shielded Hall thrusters.
机译:在开发测试期间,在12.5千瓦磁屏蔽霍尔推进器中,发现了侵蚀杆盖的焦点离子的直接证据。一流的离子似乎来自放电通道,而另一个流似乎源自中央安装的阴极。速度分布测量表明每个流在高斜角的入射角下影响推进器的极点。虽然每条流的平均能量在几十名EV中,但能量分布含有高能量的尾部,可以成为侵蚀的主要贡献者。从高斜角轰击的物理图片开始,随着时间的推移,随着时间的推移,侵蚀行为的变化的预测与磨损测试中采取的杆罩腐蚀测量有关。新证据表明,需要研究这些离子,这些离子传统上被认为是“低能量”离子的角色以及它们在磁屏蔽霍尔推进队的极点侵蚀中起作用的作用。

著录项

  • 来源
    《Journal of Applied Physics》 |2021年第4期|043305.1-043305.15|共15页
  • 作者

    Wensheng Huang; Hani Kamhawi;

  • 作者单位

    National Aeronautics and Space Administration Glenn Research Center Cleveland Ohio 44135 USA;

    National Aeronautics and Space Administration Glenn Research Center Cleveland Ohio 44135 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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