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Characterization of an ionic liquid electrospray thruster with a porous ceramic emitter

机译:具有多孔陶瓷发射器的离子液体电喷雾推进器的表征

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摘要

An ionic liquid (IL) electrospray thruster was developed for application in micro-nano satellites or gravitational wave detectors. The thruster employed a porous ceramic emitter with seven emitter strips located on its emission surface. Without any liquid-supply device, IL was delivered through porous media to emitter strips via capillary effect. Multiple emission sites then formed at the tip of each strip. A charged beam of up to 350 mu A (with a current density of 540 mu A cm(-2)) was stably produced in the negative mode. However, in the positive mode, a corona was observed which could prevent the thruster from emitting larger current. A time-of-flight mass spectrometer with significantly improved signal-to-noise ratio was built, which was used to obtain the mass distribution of the beam of the thruster. A retarding potential analysis was also performed. The test results showed that the thruster worked in the pure-ion regime, and delivered a maximum thrust of 67.1 mu N with specific impulses of 3952 s and 3117 s in the positive and negative modes, respectively.
机译:开发了离子液体(IL)电喷雾推进器,用于在微纳米卫星或重力波检测器中应用。推进器采用多孔陶瓷发射器,其排放表面上具有七条发射器条带。没有任何液体供应装置,IL通过多孔介质通过毛细管效应通过多孔介质传递给发射极点。然后在每个条带的尖端形成多个发射部位。在负模式下稳定地产生高达350μma的带电梁,最多350μma(电流密度为540μm(-2))。然而,在正模式下,观察到电晕,其可以防止推进器发出更大的电流。建造了一种飞行时间的质谱仪,建立了显着改善的信噪比,用于获得推进器的束的质量分布。还进行了延迟潜在分析。试验结果表明,推进器在纯离子方案中工作,并分别在正极和阴性模式下具有3952秒和3117s的特异性冲动的最大脉冲。

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