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Thrust Performance of High Magnetic Field Permanent Magnet Type Helicon Plasma Thruster

机译:高磁场永磁型螺旋等离子体推力器的推力性能

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In order to realize long-lived electric propulsion systems, we have been investigating an electrodeless plasma thruster. In our concept, high-density helicon plasma is accelerated by a magnetic nozzle for thrust production. In order to improve the thrust performance with simple systems, high magnetic flux density magnetic nozzle formed by permanent magnets is employed to our laboratory model plasma thruster. A magnetic circuit, which has high magnetic flux density up to 0.2 T at the magnetic nozzle throat, is constructed by permanent magnets and magnetic yoke. In order to investigate the thrust performance of this thruster, the thrust force is measured by a torsion-pendulum type thrust stand. From the thrust measurement, the thrust force and specific impulse increases with the RF power input. The thrust efficiency is drastically improved by increasing the RF power input, and it is considered to be caused by the discharge mode transition from the CCP to the ICP . The maximum thrust force and thrust efficiency of 2.7 ± 0.4 mN and 0.26 % is measured when the Ar gas mas flow rate is 1.2 mg/s, and plasma production frequency and power is 13.56 MHz and 1000 W.
机译:为了实现长寿命的电力推进系统,我们一直在研究无电极等离子推进器。在我们的概念中,高密度螺旋等离子体由磁性喷嘴加速以产生推力。为了通过简单的系统提高推力性能,我们的实验室模型等离子推进器采用了由永磁体形成的高磁通密度的磁性喷嘴。磁路由永磁体和磁轭构成,在磁喷嘴的喉部具有高达0.2 T的高磁通密度。为了研究该推力器的推力性能,通过扭摆式推力架来测量推力。从推力测量中,推力和比脉冲随RF功率输入的增加而增加。通过增加RF功率输入可以大大提高推力效率,这被认为是由于放电模式从CCP过渡到ICP引起的。当Ar气体质量流量为1.2 mg / s,等离子产生频率和功率为13.56 MHz和1000 W时,测得的最大推力和推力效率为2.7±0.4 mN和0.26%。

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