Design and Construction of a 2.45 GHz Microwave Electrothermal Thruster

S. Fazelpour, H. Sadeghi, A. Chakhmachi, R. Amrollahi
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引用次数: 0

Abstract

A microwave electrothermal thruster (MET thruster) has been constructed, consisting of a microwave plasma chamber 12 cm long and 8 cm in inner diameter and a micronozzle 10 mm long with 1 mm in diameter. The microwave plasma is produced by 2.45 GHz microwave frequency at a power of 1 kW, and the feed gas is Ar at a pressure of 10^-3mTorr. Microwave energy is transmitted into the cavity and electrons sre connected to the wave's electric field. Thus, the electrons are accelerated by microwave electric fields. Microwave plasma discharge is formed based on the interaction of electrons with neutral gas particles. Then, the plasma acts as a resistive load and absorption of microwave energy, raises the temperature of the gas or plasma. Gas heating increases the gas pressure and is released through the nozzle. The plasma density and electron temperature are 2.35× 〖 10 〗 ^17 m^(-3) and 1.2 eV, respectively. The thrust and specific impulse are 10 mN and 100 s.
2.45 GHz微波电热推力器的设计与构造
研制了微波电热推力器(MET推力器),由一个长12厘米、内径8厘米的微波等离子体腔和一个长10毫米、直径1毫米的微喷嘴组成。微波等离子体的产生频率为2.45 GHz,功率为1 kW,原料气为Ar,压力为10^-3mTorr。微波能量被传输到腔中,电子与波的电场相连。因此,电子被微波电场加速。微波等离子体放电是基于电子与中性气体粒子的相互作用而形成的。然后,等离子体作为一个电阻负载和微波能量的吸收,提高气体或等离子体的温度。气体加热增加气体压力,并通过喷嘴释放。等离子体密度为2.35×〖10〗^17 m^(-3),电子温度为1.2 eV。推力和比冲分别为10 mN和100 s。
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