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A microNewton thrust stand for average thrust measurement of pulsed microthruster

机译:用于测量脉冲微型推进器平均推力的微牛顿推力支架

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摘要

A torsional thrust stand has been developed for the study of the average thrust for microNewton pulsed thrusters. The main body of the thrust stand mainly consists of a torsional balance, a pair of flexural pivots, a capacitive displacement sensor, a calibration assembly, and an eddy current damper. The behavior of the stand was thoroughly studied. The principle of thrust measurement was analyzed. The average thrust is determined as a function of the average equilibrium angle displacement of the balance and the spring stiffness. The thrust stand has a load capacity up to 10 kg, and it can theoretically measure the force up to 609.6 μN with a resolution of 24.4 nN. The static calibrations were performed based on the calibration assembly composed of the multiturn coil and the permanent magnet. The calibration results demonstrated good repeatability (less than 0.68 FSO) and good linearity (less than 0.88 FSO). The assembly of the multiturn coil and the permanent magnet was also used as an exciter to simulate the microthruster to further research the performance of the thrust stand. Three sets of force pulses at 17, 33.5, and 55 Hz with the same amplitude and pulse width were tested. The repeatability error at each frequency was 7.04, 1.78, and 5.08, respectively.
机译:已经开发了一种扭转推力架,用于研究微牛顿脉冲推进器的平均推力。推力架的主体主要由扭转平衡、一对弯曲枢轴、电容式位移传感器、校准组件和涡流阻尼器组成。对支架的行为进行了彻底的研究。分析了推力测量的原理。平均推力由摆轮的平均平衡角位移和弹簧刚度决定。推力支架的负载能力高达 10 kg,理论上可以测量高达 609.6 μN 的力,分辨率为 24.4 nN。静态校准基于由多匝线圈和永磁体组成的校准组件进行。校准结果显示出良好的重复性(小于0.68%FSO)和良好的线性度(小于0.88%FSO)。还利用多匝线圈和永磁体的组装作为激励器,对微型推进器进行仿真,以进一步研究推力架的性能。测试了具有相同振幅和脉冲宽度的 17、33.5 和 55 Hz 的三组力脉冲。各频率的重复性误差分别为7.04%、1.78%和5.08%。

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