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磁悬浮可控超导发电机双球形转子的优化设计与实验研究

Optimal design and experiment study of the double spherical rotor of the MSCSG.

作者信息

Wang Weijie, Chen Xiaocen, Liu Qiang, Fan Yahong

机构信息

Department of Aerospace Science and Technology, Space Engineering University, Beijing, China.

Beijing Institute of Special Electromechanical Technology, Beijing, China.

出版信息

Sci Prog. 2021 Jan-Mar;104(1):36850421998488. doi: 10.1177/0036850421998488.

Abstract

The magnetically suspended control and sense gyroscope (MSCSG) integrates spacecraft attitude measurement and control function; this paper proposes a double spherical rotor (DSR) for MSCSG. The DSR realizes the five degrees of freedom (DOFs) full active control and full channel magnetic path decoupling by the following design: the spherical axial/radial reluctance magnetic bearings are adopted to control the 3DOFs translation of rotor in the range of double spherical envelope, Lorentz force magnetic bearing (LFMB) is used to precisely drive the 2DOFs universal deflection of rotor. The optimization model is established based on the structural mechanical analysis, taking the deviation between rotor centroid and shape center as the optimization objective, choosing the first order resonance frequency, maximum equivalent stress, rigid body displacement, polar moment of inertia and inertia ratio as constraints. Then the DSR is optimized and simulated by the finite element, the MSCSG principle prototype based on DSR is successfully developed, the online dynamic balance experiment and modal test of the DSR are conducted, where the vibration amount of the DSR decreases from 20 μm before the experiment to 0.14 μm after the experiment, which decreases by 99.3%, the first test modal is 2881 Hz which is 5% different from the finite element simulation value of 3034 Hz. The results show that the DSR has the good mechanical properties and magnetic circuit decoupling characteristics.

摘要

磁悬浮控制与传感陀螺仪(MSCSG)集成了航天器姿态测量与控制功能;本文提出了一种用于MSCSG的双球形转子(DSR)。该双球形转子通过以下设计实现了五自由度(DOF)的全主动控制和全通道磁路解耦:采用球形轴向/径向磁阻磁轴承控制转子在双球形包络范围内的三自由度平移,采用洛伦兹力磁轴承(LFMB)精确驱动转子的两自由度万向偏转。基于结构力学分析建立优化模型,以转子质心与形心的偏差为优化目标,选择一阶共振频率、最大等效应力、刚体位移、极惯性矩和惯性比作为约束条件。然后利用有限元对双球形转子进行优化和仿真,成功研制了基于双球形转子的MSCSG原理样机,并对双球形转子进行了在线动平衡实验和模态测试,实验前双球形转子的振动量为20μm,实验后降至0.14μm,降幅为99.3%,首次测试模态为2881Hz,与有限元仿真值3034Hz相差5%。结果表明,双球形转子具有良好的力学性能和磁路解耦特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6403/10358513/487bdcc77a2f/10.1177_0036850421998488-fig1.jpg

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