Takahashi Kazunori, Komuro Atsushi, Ando Akira
Department of Electrical Engineering, Tohoku University, Sendai 980-8579, Japan.
Rev Sci Instrum. 2015 Feb;86(2):023505. doi: 10.1063/1.4907797.
Momentum, i.e., force, exerted from a small helicon plasma thruster to a target plate is measured simultaneously with a direct thrust measurement using a thrust balance. The calibration coefficient relating a target displacement to a steady-state force is obtained by supplying a dc to a calibration coil mounted on the target, where a force acting to a small permanent magnet located near the coil is directly measured by using a load cell. As the force exerted by the plasma flow to the target plate is in good agreement with the directly measured thrust, the validity of the target technique is demonstrated under the present operating conditions, where the thruster is operated in steady-state. Furthermore, a calibration coefficient relating a swing amplitude of the target to an impulse bit is also obtained by pulsing the calibration coil current. The force exerted by the pulsed plasma, which is estimated from the measured impulse bit and the pulse width, is also in good agreement with that obtained for the steady-state operation; hence, the thrust assessment of the helicon plasma thruster by the target is validated for both the steady-state and pulsed operations.
通过推力天平进行直接推力测量的同时,测量了小型螺旋波等离子体推进器施加到靶板上的动量,即力。通过向安装在靶板上的校准线圈施加直流电,获得将靶板位移与稳态力相关联的校准系数,其中通过使用测力传感器直接测量作用于位于线圈附近的小永磁体上的力。由于等离子体流施加到靶板上的力与直接测量的推力高度吻合,因此在推进器以稳态运行的当前操作条件下,证明了靶板技术的有效性。此外,通过对校准线圈电流进行脉冲处理,还获得了将靶板的摆动幅度与脉冲冲量相关联的校准系数。根据测量的脉冲冲量和脉冲宽度估算出的脉冲等离子体施加的力,也与稳态运行时获得的力高度吻合;因此,通过靶板对螺旋波等离子体推进器的推力评估在稳态和脉冲操作中均得到了验证。