TY - JOUR
T1 - Thimble permanent-magnet-biased radial magnetic bearing for magnetically-suspended-flywheel
AU - Wang, Xi
AU - Fang, Jiancheng
AU - Fan, Yahong
AU - Liu, Hu
AU - Wang, Chune
AU - Wen, Tong
AU - Sun, Jinji
PY - 2011/7/20
Y1 - 2011/7/20
N2 - 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.
AB - 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.
KW - Fault tolerance
KW - Magnetic field decoupling
KW - Magnetically suspended flywheels
KW - Permanent magnet biased magnetic bearings
KW - Stiffness
UR - https://www.scopus.com/pages/publications/79961230410
U2 - 10.3901/JME.2011.14.171
DO - 10.3901/JME.2011.14.171
M3 - 文章
AN - SCOPUS:79961230410
SN - 0577-6686
VL - 47
SP - 171
EP - 183
JO - Jixie Gongcheng Xuebao/Journal of Mechanical Engineering
JF - Jixie Gongcheng Xuebao/Journal of Mechanical Engineering
IS - 14
ER -