Claims
- 1. A magneto-rheological (“MR”) fluid damper comprising:
a damper body tube containing an MR fluid; a piston assembly disposed in the damper body tube to form an annular flow gap between the piston assembly and the damper body tube, the piston assembly comprising a piston core containing ferrous material and an electromagnetic coil mounted on the piston core for generating a magnetic field; and a ferromagnetic member operatively positioned outside of the damper body tube substantially adjacent the piston assembly for providing at least a part of a magnetic flux return path for the magnetic field.
- 2. The MR fluid damper of claim 1 wherein the piston assembly further comprises a flux ring surrounding and operatively coupled to the piston core to form the annular flow gap with the piston core, the flux ring being in sealing, sliding contact with an inner surface of the damper body tube, the ferromagnetic member operatively cooperating with the flux ring to strengthen the magnetic field passing through the annular flow gap.
- 3. The MR fluid damper of claim 1 further comprising a housing tube receiving the damper body tube and the ferromagnetic member is mounted in the housing tube.
- 4. The MR fluid damper of claim 3 further comprising a bearing sleeve and the ferromagnetic member is a sleeve press-fit inside the bearing sleeve.
- 5. The MR fluid damper of claim 4 wherein the ferromagnetic member is constructed of a thin layer of bearing material on a soft steel base, the ferromagnetic member contacting and guiding motion of the damper body tube.
- 6. The MR fluid damper of claim 1 wherein the damper body tube comprises a twin tube damper body tube having an open ended inner tube slidingly received within an open ended outer tube, the ferromagnetic member being operatively coupled to a selected one of the inner and outer tubes.
- 7. The MR fluid damper of claim 1 wherein the damper body tube comprises a monotube damper body tube, the MR fluid damper further comprising a housing encompassing and slidingly receiving the monotube damper body tube, the ferromagnetic member being operatively coupled to the housing.
- 8. The MR fluid damper of claim 7 wherein the ferromagnetic member comprises a ferromagnetic member operatively coupled to the housing by insertion between the housing and the cylindrical reservoir.
- 9. The MR fluid damper of claim 8 wherein the piston assembly includes a piston rod connected to the housing whereby the piston assembly is stationary with respect to the ferromagnetic member.
- 10. The MR fluid damper of claim 9 wherein the ferromagnetic member is axially sized and aligned to correspond to the piston core.
- 11. The MR fluid damper of claim 7 wherein the ferromagnetic member comprises a bearing surface slidingly contacting the damper body tube.
CROSS REFERENCE TO PENDING APPLICATIONS
[0001] This application is also related to the following co-pending and commonly owned application which was filed on even date herewith by Ilya Lisenker: U.S. Ser. No. ______ entitled “MAGNETO-RHEOLOGICAL DAMPER WITH DUAL FLUX RING SPACER” and which is hereby incorporated by reference herein in its entirety.