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A torsion balance for impulse and thrust measurements of micro-Newton thrusters

机译:扭力天平,用于微型牛顿推进器的脉冲和推力测量

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摘要

This paper reports the performance of a torsion-type thrust stand suitable for studies of micro-Newton thrusters, which is developed for ground testing the micro-Newton thruster in Chinese Test of the Equivalence Principle with Optical readout space mission. By virtue of specially suspending design and precise assembly of torsion balance configuration, the thrust stand with load capacity up to several kilograms is able to measure the impulse bit up to 1350 μNs with a resolution of 0.47 μNs, and the average thrust up to 264 μN with a resolution of 0.09 μN in both open and close loop operation. A pulsed plasma thruster, the preliminary prototype developed for Chinese TEPO space mission, is tested by the thrust stand, and the results reveal that the average impulse bit per pulse is measured to be 58.4 μNs with a repeatability of about 5%.
机译:本文报道了一种适用于微型牛顿推进器研究的扭力型推力架的性能,该架是为在中国用光学读出空间任务的等效原理测试中对微型牛顿推进器进行地面测试而开发的。通过特殊的悬挂设计和精确的扭力平衡装置组装,最大承载能力达几公斤的推力机架能够测量高达1350μN的脉冲钻头,分辨率为0.47μNs,平均推力高达264μN开环和闭环操作的分辨率均为0.09μN。脉冲等离子推进器是为中国TEPO太空任务开发的初步原型,通过推力架进行了测试,结果表明,每个脉冲的平均脉冲位测量为58.4μNs,可重复性约为5%。

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