Nova Patents
CA1169902A

Linear magnetic bearing

Abstract

LINEAR MAGNETIC BEARING Abstract A linear magnetic bearing includes a stator memberstationary relative to x, y and z axes and having alongitudinal axis on the z axis as well as a memberlongitudinally translatable relative to said axes. Thetranslatable member is controlled to have a longitudin-al axis coincident with the z axis. Permanent magnet means on one of the members positions the translatablemember in a plane defined by the x-y axes relative tothe stationary member. The position of the translatablemember is sensed by sensors relative to thestationary member in the plane defined by the x-y axes.Electro-magnet means on one member respondsto the sensor to center the longitudinal axisof the translatable member on the z axis. First lowreluctance magnetic flux paths for the permanent magnetmeans exist through both of the members and aradial air gap between the members.Second low reluctance magnetic flux paths exist for theelectro-magnet means through both of the members and a radialair gap so no net force is applied to thetranslatable member in the direction of the z axis by eitherthe permanent magnet means or the electro-magnet means.The first and second low reluctance flux paths are arrangedso that both the electro-magnets and permanent magnetsshare: a common air gap but the electro-magnet fluxes donot pass through the high reluctance permanent magnets.One of the members includes two fixedly spaced elements along the z axis. Each fixedly spaced elementhas four radial pole facesfor the permanent magnet flux pathe. At least two of theradial pole faces of each element provide x and/or y positioncontrol via the electro-magnet flux interaction with thepermanent magnet flux in the common air gaps.

Term

Term ended

Expired 17 September 2001, 25 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

8 claims: 3 independent, 5 dependent

  1. 1
    -19 Claims 1. A linear magnetic bearing having mutually orthogonal x, y and z axes, and comprising:a stator member stationary relative to said axes and having a longitudinal axis on the z axis, a member movable relative to said axes, said members being mechanically free of each other, said movable member adapted to have a longitudinal axis along the z axis, permanent magnet means on one of said members for positioning the movable member in a plane defined by the x-y axes relative to the stationary member, sensor means for sensing the position of the movable member relative to the stationary member in the plane defined by the x-y axes, electro-magnet means on one of said members responsive to the sensor means for centering the longitudinal axis of the movable member on the z axis, a radial air gap being established between said members in the plane defined by the x-y axes, said members including means for establishing first low reluctance magnetic flux paths for the permanent magnet means through both of the members and the air gap, and second low-reluctance magnetic flux paths for the electro-magnets through both of the members and the air gap so that no net force is applied to the movable member in the direction of the z axis by either the permanent magnet means or the electro-magnet means, said permanent magnet means having high magnetic reluctance compared to the flux paths, said first and second low reluctance flux paths being arranged so that the fluxes from the electro-magnet means do not pass through the permanent magnet means.
  2. 5
    The magnetic bearing of claim 4 wherein each element includes a pair of permanent magnets diametrically polarized on the element at right angles to the diametrically opposed pole faces of the second flux paths, said pair of permanent magnets being located on opposite sides of the z axis and polarized so they tend to repel each other, whereby each permanent magnet establishes separate flux routes, and a pair of electro-magnets diametrically polarized on the element in alignment with the diametrically opposed pole faces of the second flux paths, said pair of electro-magnets being located on opposite sides of the z axis and polarized so they are in series aiding relation for the flux of the second paths.
  3. 8
    The magnetic bearing of claim 6 wherein each of the elements includes first and second pairs of diametrically opposed radial pole faces respectively intersecting the x and y axes, the electro-magnet means including a coil for each of the pole faces, the fluxes derived from the for each pair of diametrically opposed pole faces being in series aiding relation, the electro-magnet fluxes derived from the coils for the diametrically opposed pole faces along one axis of one element being in series aiding relation with the permanent magnet fluxes in the one. element, the electro-magnet fluxes derived from the coils on the diametrically opposed pole faces along said one axis of a -22second element being in series bucking relation with the permanent magnet flux in the second of the elements.