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Study on the plasma generation characteristics of an induction-triggered coaxial pulsed plasma thruster

机译:感应触发同轴脉冲等离子体推进器的等离子体生成特性研究

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At present, spark plugs are used to trigger discharge in pulsed plasma thrusters (PPT), which are known to be life-limiting components due to plasma corrosion and carbon deposition. A strong electric field could be formed in a cathode triple junction (CTJ) to achieve a trigger function under vacuum conditions. We propose an induction-triggered electrode structure on the basis of the CTJ trigger principle. The induction-triggered electrode structure could increase the electric field strength of the CTJ without changing the voltage between electrodes, contributing to a reduction in the electrode breakdown voltage. Additionally, it can maintain the plasma generation effect when the breakdown voltage is reduced in the discharge experiments. The induction-triggered electrode structure could ensure an effective trigger when the ablation distance of Teflon increases, and the magnetic field produced by the discharge current could further improve the plasma density and propagation velocity. The induction-triggered coaxial PPT we propose has a simplified trigger structure, and it is an effective attempt to optimize the micro-satellite thruster.
机译:目前,火花塞用于触发脉冲等离子体推进器(PPT)中的放电,这已知由于等离子体腐蚀和碳沉积而是寿命的部件。可以在阴极三界(CTJ)中形成强电场,以在真空条件下实现触发功能。我们在CTJ触发原理的基础上提出一种感应触发的电极结构。感应触发电极结构可以增加CTJ的电场强度而不改变电极之间的电压,有助于降低电极击穿电压。另外,当在放电实验中减少击穿电压时,它可以保持等离子体产生效应。当Teflon的消融距离增加时,感应触发电极结构可以确保有效触发,并且由放电电流产生的磁场可以进一步提高等离子体密度和传播速度。我们提出的感应触发的同轴PPT具有简化的触发结构,并且是优化微卫星推进器的有效尝试。

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