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首页> 外文期刊>Superconductor Science & Technology >Low frequency rotational loss in a high-temperature superconducting bearing and its application in micro-thrust measurement for space propulsion
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Low frequency rotational loss in a high-temperature superconducting bearing and its application in micro-thrust measurement for space propulsion

机译:高温超导轴承低频旋转损耗及其在空间推进的微推力测量中的应用

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High-temperature superconducting (HTS) magnetic bearings have great potential in the field of rotating machinery, such as flywheels and momentum wheels, because of their low friction and self-stabilizing capability. The study of rotational loss in HTS bearing is of great significance to achieve better efficiency. Previous research indicates that low rotational loss has a close relation with hysteresis loss in HTSs and eddy-current losses in the surrounding metal materials. A low coefficient of friction (<10(-8)) at low speed is attractive for high precision instruments. This paper first presents a short overview of low rotational loss in HTS bearings, and then a special design of HTS bearing is given for application in micro-thrust measurements of space propulsion. The load capacity of the bearing allows for up to 10 kg, which means that the entire thruster system can be suspended to avoid measuring the internal force. Two different measuring methods are designed to fit several operational modes of the micro-thruster, and the measured thrust level is from 1 mN to 100 mN. The bearing system shows great response to short pulse modes of the micro-thruster, and an impulse of 1 mN.s was identified accurately. The measured thrust shows great agreement with the designed values of the micro-thruster, indicating the effective application of the HTS bearing for micro-thrust measurements.
机译:高温超导(HTS)磁性轴承在旋转机械领域具有很大的潜力,例如飞轮和动量轮,因为它们的摩擦力低和自稳定性能力。 HTS轴承旋​​转损失的研究具有重要意义,以实现更好的效率。以前的研究表明,低旋转损耗与周围金属材料中HTSS和涡流损耗的滞后损失密切相关。低速下的低摩擦系数(<10(-8))对于高精度仪器具有吸引力。本文首先介绍了HTS轴承低旋转损耗的简短概述,然后给出了HTS轴承的特殊设计,以应用于空间推进的微推力测量。轴承的负载能力允许高达10千克,这意味着可以悬挂整个推进器系统以避免测量内力。两种不同的测量方法旨在适合微小推进器的几种操作模式,测量的推力水平为1ml至100mN。轴承系统对微小推进器的短脉冲模式显示出很大的反应,并且准确地识别了1mN的脉冲。测量的推力与微推进器的设计值表现出很大的一致,表明HTS轴承对微推力测量的有效应用。

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