摘要
为满足航天用扁平转子磁悬浮飞轮对低功耗磁轴承的需求,提出一类同极性嵌环式永磁偏置径向磁轴承(Radial permanent-magnet-biased magnetic bearing,RPMB),旋转损耗低,工作气隙径向内外双环、轴向同层分布,径向磁力为平面汇交力系,具有磁极轴向短、可灵活设计的独特优势。根据全主动、主被动两类磁悬浮飞轮的不同需求,采用磁路分析与有限元仿真的方法,对磁极对齐型、磁极交错型、磁极偏置型三种嵌环式RPMB进行了有针对性的分析与设计,所设计的全主动磁悬浮飞轮,具有轴向长度短、质量小、精度高的优点;所设计的两轴主动磁悬浮飞轮,经优化设计,具有高被动刚度、高电流刚度、电流刚度高稳定性的优点。
To satisfy the requirement on low-power magnetic bearings of magnetically-suspended-flywheel(MSFW) with flat rotor applied in spacecraft,a class of radial permanent-magnet-biased magnetic bearing(RPMB),named thimble-RPMB,is presented.It is homopolar,so it has low rotational loss.Its poles have short axial length and flexible pole-arrangement,because its working gaps distribute along two concentric circles in only one layer,and radial magnetic forces are concurrent in one plane.According to different requirements of completely-active MSFW and 2-axis-active MSFW,3 species of thimble-RPMB are analyzed and designed,namely,pole-aligned,pole-interlaced and pole-biased,by the equivalent-magnetic-circuit method and FEA simulation.The designed completely-active MSFW has short axial length,light weight,and high precision.The optimally designed 2-axis-active MSFW has high passive stiffness,high current stiffness,and high stability of current stiffness.
出处
《机械工程学报》
EI
CAS
CSCD
北大核心
2011年第14期171-183,共13页
Journal of Mechanical Engineering
基金
国家杰出青年科学基金(60825305)
国家重点基础研究发展计划(973计划
2009CB72400103)资助项目
关键词
磁悬浮飞轮
永磁偏置磁轴承
刚度
磁路解耦
容错
Magnetically suspended flywheels Permanent magnet biased magnetic bearings Stiffness Magnetic field decoupling Fault tolerance