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Development of a multiplexed electrospray micro-thruster with post-acceleration and beam containment

机译:具有后加速和束流约束的多路电喷雾微推力器的研制

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We report the development of a compact thruster based on Multiplexed ElectroSprays (MES). It relied on a microfabricated Si array of emitters coupled with an extractor electrode and an accelerator electrode. The accelerator stage was introduced for two purposes: containing beam opening and avoiding electrode erosion due to droplet impingement, as well as boosting specific impulse and thrust. Multiplexing is generally necessary as a thrust multiplier to reach eventually the level required (O(102) μN) by small satellites. To facilitate system optimization and debugging, we focused on a 7-nozzle MES device and compared its performance to that of a single emitter. To ensure uniformity of operation of all nozzles their hydraulic impedance was augmented by packing them with micrometer-size beads. Two propellants were tested: a solution of 21.5% methyl ammonium formate in formamide and the better performing pure ionic liquid ethyl ammonium nitrate (EAN). The 7-MES device spraying EAN at ΔV = 5.93 kV covered a specific impulse range from 620 s to 1900 s and a thrust range from 0.6 μN to 5.4 μN, at 62% efficiency. Remarkably, less than 1% of the beam was demonstrated to impact on the accelerator electrode, which bodes well for long-term applications in space.
机译:我们报告了基于多重电喷雾(MES)的紧凑型推进器的发展。它依靠与提取器电极和加速器电极耦合的微型发射器Si阵列。引入加速器级的目的有两个:抑制电子束的开度,避免由于液滴撞击而造成的电极腐蚀,以及增加比冲和推力。通常需要多路复用作为推力倍增器,以最终达到小型卫星所需的水平(O(10 2 )μN)。为了促进系统优化和调试,我们重点研究了7喷嘴MES设备,并将其性能与单个发射器的性能进行了比较。为了确保所有喷嘴的操作均匀性,通过用微米尺寸的焊珠填充它们来增加其水力阻抗。测试了两种推进剂:21.5%的甲酸甲酯铵在甲酰胺中的溶液和性能更好的纯离子液体硝酸乙基铵(EAN)。以ΔV= 5.93 kV喷涂EAN的7-MES设备以62%的效率覆盖了620 s至1900 s的特定脉冲范围和0.6μN至5.4μN的推力范围。值得注意的是,只有不到1%的光束会撞击到加速器电极上,这对于太空中的长期应用而言是一个好兆头。

著录项

  • 来源
    《Journal of Applied Physics》 |2013年第15期|1-7|共7页
  • 作者

    Lenguito G.; Gomez A.;

  • 作者单位

    Department of Mechanical Engineering and Materials Science, Yale University, New Haven, Connecticut 06511, USA|c|;

  • 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
  • 中图分类
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