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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Effect of voltage on second-stage electrodes of dual-stage solid propellant pulsed plasma thruster
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Effect of voltage on second-stage electrodes of dual-stage solid propellant pulsed plasma thruster

机译:双级固体推进剂脉冲等离子体推进器第二级电极电压的影响

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摘要

A dual-electrode-stage PPT (DESPPT) using solid propellants has been developed with simple parallel electrodes and a deflected angle of 20 degrees. By setting and testing different possible energy efficiencies, experiments were performed with one-stage and two-stage PPTs under high vacuum conditions (similar to 10(-5) Torr). The experiments revealed that increasing prototype second-stage energy leads to an increase in total impulse bit. Because a single-electrode-stage PPT has been demonstrated to only require approximately 60% ablated propellant to accelerate plasma, the dual-stage regimen might increase the percentage of mass that is ablated propellant. In other words, increasing the exhaust velocity and total impulse bit may be achievable by reusing late-time ablation with the dual regimen. A maximum total impulse bit of 72.35 mu Ms has been obtained with the dual-mode prototype when 25 J of total energy is released through the thruster discharge chamber.
机译:使用固体推进剂的双电极 - 级PPT(仔细)开发出简单的平行电极和20度的偏转角。 通过设定和测试不同的可能的能量效率,在高真空条件下用一级和两级PPT进行实验(类似于10(-5)托)。 实验表明,增加的原型第二阶段能量导致总脉冲钻头的增加。 因为已经证明了单电极级PPT仅需要大约60%的烧蚀推进剂以加速等离子体,因此双阶段方案可能增加被烧蚀的推进剂的质量的百分比。 换句话说,通过用双方方案重复使用后期消融来实现排气速度和总脉冲位。 当通过推进器放电室释放25 j时,使用双模原型获得了72.35μms的最大总脉冲位。

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