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Characterization of Vacuum Arc Thruster Performance in Weak Magnetic Nozzle

机译:弱磁喷嘴真空电弧推进器性能的表征

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Vacuum arc thruster performance in a magnetic nozzle configuration is experimentally characterized. Measurements are performed on a miniature coaxial thruster with an anode inner diameter of 1.8 mm. The magnetic field B is produced by a single air coil, 18 mm in diameter. Direct measurement of thrust, mass consumption and arc current are performed. To obtain statistically viable results ≈ 6000 arc pulses are analyzed at each operational point. Cathode mass erosion is measured using laser profilometry. To sustain thruster operation over several measurement cycles, an active cathode feeding system is used. For 0 B ≤ 0.2 T, performance increase over the non-magnetic case is observed with the best thrust to arc power ratio T / P ≈ 9 μ N/W obtained at B ≈ 0.2 T. A parametric model is provided that captures the performance enhancement based on beam collimation and acceleration by the magnetic nozzle. For B 0.2 T, the arc discharge is shown to be suppressed nullifying any additional gains by the nozzle effect.
机译:实验表征磁力喷嘴配置中的真空电弧推进器性能。对微型同轴推进器进行测量,阳极内径为1.8mm。磁场B由直径18mm的单个空气线圈产生。进行推力,质量消耗和电弧电流的直接测量。为了获得统计上可行的结果,在每个操作点处分析在统计上可行的结果≈6000Acc脉冲。使用激光轮廓测量测量阴极质量腐蚀。为了在几个测量循环上维持推进器操作,使用有源阴极馈电系统。对于0 0.2 T,显示电弧放电被抑制通过喷嘴效果抑制任何额外的增益。

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