Design of composite flywheel rotor

被引:5
作者
Bai Y. [1 ]
Gao Q. [1 ]
Li H. [1 ]
Wu Y. [1 ]
Xuan M. [1 ]
机构
[1] State Key Laboratory of Applied Optics, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences
来源
Frontiers of Mechanical Engineering in China | 2008年 / 3卷 / 3期
关键词
Analysis of simulation; Composite material; Design and facture; Energy density; Flywheel rotor;
D O I
10.1007/s11465-008-0045-y
中图分类号
学科分类号
摘要
A design method for a flywheel rotor composed of a composite rim and a metal hub is proposed by studying the connection between the rotor and the driving machine. The influence of some factors such as the rotor material, configuration, connection, and fracture techniques on energy density is analyzed. The results show that the ratio of the inner radius to outer radius of the rim is the key factor, and is determined by the rim material. Optimizing the hub can further efficiently improve energy density. The composite flywheel rotor is produced and its rotation stress has been tested at the speed of 20 krpm. The emulation results are consistent with testing results, which proves that the introduced design method is useful. © 2008 Higher Education Press and Springer-Verlag GmbH.
引用
收藏
页码:288 / 292
页数:4
相关论文
共 11 条
[1]  
Jia H.G., Zhao H.B., Bai Y., Single axis double flywheels integrated power and attitude control system, Optics and Precision Engineering, 12, pp. 504-509, (2004)
[2]  
Liu Z.H., Bai Y., Li H.W., Analysis on errors of single axis energy storage/attitude control system with double flywheels, Optics and Precision Engineering, 14, pp. 127-132, (2006)
[3]  
Han B.C., Fang J.C., Wu Y.H., Simulation of an integrated power/attitude control system with single axis double flywheels, Journal of System Simulation, 18, pp. 2511-2515, (2006)
[4]  
Han B.C., Hu G., Fang J.C., Optimization design of magnetic suspended gyroscope rotor, Optics and Precision Engineering, 14, pp. 662-666, (2006)
[5]  
Yang J.W., Wu Y.H., Jia H.G., Design method and magnetic field analysis of axial-magnetized permanent magnet micro motor, Optics and Precision Engineering, 14, pp. 83-88, (2006)
[6]  
Ha S.K., Kim D.J., Sung T.H., Optimum design of multi-ring composite flywheel rotor using a modified generalized plane strain assumption, International Journal of Mechanical Science, 49, pp. 993-1007, (2001)
[7]  
Jinhua H., Fadel G.M., Heterogeneous flywheel modeling and optimization, Materials and Design, 21, pp. 111-125, (2000)
[8]  
Qin Y., Xia Y.M., A Study on the Structure and Strength of Composite Flywheel, ACTA Armamentar II, 27, pp. 750-756, (2006)
[9]  
Li W.C., Shen Z.P., Composite material flywheel structure and energy storing density, Acta Energiae Solaris Sinica, 22, pp. 96-101, (2001)
[10]  
Li C.G., Fu H.Z., Yu Q., Aerospace Materials, (2002)