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An experimental study on carbon nanotube cathodes for electrodynamic tether propulsion

机译:碳纳米管阴极动力电动推进器的实验研究

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Research and development of an electrodynamic tether propulsion system for space debris removal has been started in the Institute of Space Technology and Aeronautics, Japan Aerospace Exploration Agency (JAXA). An experimental investigation of a carbon-nanotube field-emission cathode (FEC), which is suitable as an electron emitter in this propulsion system, was conducted in this study. One of the important issues in the design of a FEC is to suppress an electron flow to a gate electrode to avoid thermal deformation of the electrode and to reduce power loss. For meeting this requirement, we designed an FEC device having a masking plate on a cathode surface. A numerical simulation indicated that presence of the masking plate distorts the electric field adjacent to the cathode surface and a converged electron beam that does not impinge on the gate electrode is formed. Several FEC devices were fabricated based on the simulation results, and they were tested experimentally. Results showed that no electron current flowed to the gate electrode when all the electrodes were assembled and aligned correctly.
机译:日本航空航天局(JAXA)的空间技术和航空研究所已经开始研究和开发用于去除空间碎片的电动系绳推进系统。在这项研究中进行了碳纳米管场发射阴极(FEC)的实验研究,该阴极适合作为该推进系统中的电子发射器。 FEC设计中的重要问题之一是抑制电子流向栅电极,以避免电极的热变形并减少功率损耗。为了满足此要求,我们设计了一种FEC器件,该器件在阴极表面上有一块掩膜板。数值模拟表明,掩蔽板的存在使邻近阴极表面的电场失真,并形成了不撞击栅电极的会聚电子束。根据仿真结果制造了几种FEC设备,并对其进行了实验测试。结果表明,当所有电极正确组装并对齐后,没有电子电流流向栅电极。

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