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Development and Initial Testing of a Magnetically Shielded Miniature Hall Thruster

机译:磁屏蔽微型霍尔推力器的开发和初始测试

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The scaling of magnetically shielded Hall thrusters to low power is investigated through the development and fabrication of a 4-cm Hall thruster. During initial testing, the magnetically shielded miniature Hall thruster was operated at 275 V discharge voltage and 325-W discharge power. Inspection of the channel walls after testing suggests that the outer discharge channel wall was successfully shielded from high-energy ion erosion while the inner channel wall showed evidence of weaker shielding, likely due to magnetic circuit saturation. Scanning planar probe measurements taken at two locations downstream of the thruster face provided ion current density profiles. The ion current calculated by integrating these data was 1.04 A with a plume divergence half-angle of 30°. Swept retarding potential analyzer measurements taken 80-cm axially downstream of the thruster measured the most probable ion voltage to be 252 V. The total thruster efficiency was calculated from probe measurements to be 43% (anode efficiency of 59%) corresponding to a thrust of 19 mN at a specific impulse of 1870 s. Discharge channel erosion rates were found to be approximately three orders of magnitude less than unshielded Hall thrusters, suggesting the potential for a significant increase in operational life.
机译:通过开发和制造4厘米霍尔推力器,研究了磁屏蔽霍尔推力器向低功率的缩放比例。在初始测试期间,防磁微型霍尔推力器在275 V放电电压和325 W放电功率下运行。测试后检查通道壁表明,外部放电通道壁已成功屏蔽了高能离子侵蚀,而内部通道壁则显示出较弱的屏蔽迹象,这很可能是由于磁路饱和所致。在推进器面下游的两个位置进行的扫描平面探针测量提供了离子电流密度曲线。通过积分这些数据计算出的离子电流为1.04 A,羽流发散半角为30°。在推进器轴向下游80厘米处进行的扫频延迟电势分析仪测量得出,最可能的离子电压为252V。根据探针测量值计算得出,总推进器效率为43%(阳极效率为59%),对应于推力为在1870 s的特定脉冲下为19 mN。发现排放通道的腐蚀速率比未屏蔽的霍尔推进器低约三个数量级,这表明使用寿命可能会大大增加。

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