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Characteristics of a non-volatile liquid propellant in liquid-fed ablative pulsed plasma thrusters

机译:液体烧蚀脉冲等离子体推进器中非挥发性液体推进剂的特性

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摘要

In the past several decades, the use of electric propulsion in spacecraft has experienced tremendous growth. With the increasing adoption of small satellites in the kilogram range, suitable propulsion systems will be necessary in the near future. Pulsed plasma thrusters (PPTs) were the first form of electric propulsion to be deployed in orbit, and are highly suitable for small satellites due to their inherent simplicity. However, their lifetime is limited by disadvantages such as carbon deposition leading to thruster failure, and complicated feeding systems required due to the conventional use of solid propellants (usually polytetrafluoroethylene (PTFE)). A promising alternative to solid propellants has recently emerged in the form of non-volatile liquids that are stable in vacuum. This study presents a broad comparison of the non-volatile liquid perfluoropolyether (PFPE) and solid PTFE as propellants on a PPT with a common design base. We show that liquid PFPE can be successfully used as a propellant, and exhibits similar plasma discharge properties to conventional solid PTFE, but with a mass bit that is an order of magnitude higher for an identical ablation area. We also demonstrate that the liquid PFPE propellant has exceptional resistance to carbon deposition, completely negating one of the major causes of thruster failure, while solid PTFE exhibited considerable carbon build-up. Energy dispersive X-ray spectroscopy was used to examine the elemental compositions of the surface deposition on the electrodes and the ablation area of the propellant (or PFPE encapsulator). The results show that based on its physical characteristics and behavior, non-volatile liquid PFPE is an extremely promising propellant for use in PPTs, with an extensive scope available for future research and development.
机译:在过去的几十年中,在航天器中使用电动推进经历了巨大的增长。随着千克范围内的小卫星的增加,在不久的将来将需要合适的推进系统。脉冲等离子体推进器(PPT)是轨道中的第一形式的电动推进形式,并且由于其固有的简单性而高度适用于小卫星。然而,它们的寿命受到导致推进型失效的缺点(例如碳沉积)的缺点,并且由于常规使用固体推进剂而需要复杂的饲养系统(通常是聚四氟乙烯(PTFE))。最近替代的固体推进剂的替代方案最近以真空稳定的非挥发性液体形式出现。该研究介绍了非挥发性液体全氟聚醚(PFPE)和固体PTFE作为具有常见设计碱的PPT上的推进剂的广泛比较。我们表明液体PFPE可以成功地用作推进剂,并且表现出与常规固体PTFE相似的等离子体放电性能,但是质量位为相同的消融区域的数量级。我们还证明液体PFPE推进剂具有卓越的碳沉积抗性,完全否定了推进器失效的主要原因之一,而实体PTFE表现出相当大的碳积累。能量分散X射线光谱法用于检查电极表面沉积的元素组合物和推进剂(或PFPE包封剂)的消融区域。结果表明,基于其物理特性和行为,非挥发性液体PFPE是一种非常有前途的PPTS推进剂,具有广泛的范围可用于未来的研发。

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  • 来源
    《Journal of Applied Physics》 |2017年第7期|073301.1-073301.11|共11页
  • 作者单位

    Komurasaki-Koizumi Laboratory Department of Aeronautics and Astronautics The University of Tokyo 113-8656 Tokyo Japan;

    Komurasaki-Koizumi Laboratory Department of Aeronautics and Astronautics The University of Tokyo 113-8656 Tokyo Japan;

    Komurasaki-Koizumi Laboratory Department of Aeronautics and Astronautics The University of Tokyo 113-8656 Tokyo Japan;

  • 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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