USRE31525EExpiredUtility

Adaptable resilient motor mounting

Priority: May 25, 1977Filed: Sep 18, 1980Granted: Feb 28, 1984
Est. expiryMay 25, 1997(expired)· nominal 20-yr term from priority
F16M 1/04H02K 5/00F16M 5/00
39
PatentIndex Score
20
Cited by
14
References
20
Claims

Abstract

Method and apparatus for supporting a motor having cradle engageable rings at opposite ends thereof in the arms of a selected one of a plurality of different size support or cradle bases is disclosed wherein the motor has at least one end shield with an axially extending hub and a resilient mounting ring embracing that hub and movable axially therealong. A support base has a cradle portion for engaging the mounting ring to support the hub and a clamp arrangement for securing the ring to the cradle portion. The opposite motor end may have a similar axially extending hub on the opposite motor end shield embraced by another mounting ring clampable in a second similar cradle portion. To adapt the mounting arrangement to a selected cradle base, a cradle engaging mounting ring is slid axially along the motor hub until the separation between the rings is appropriate for positioning the motor adjacent to the base with the rings in registry with corresponding base cradle portions whereupon the base and rings are engaged and the rings secured, for example by clamping to the respective base cradle portion. Annular adapters may additionally be provided to conform the radius of a ring to the radius of curvature of the particular ring engaging cradle portion. A motor mounting arrangement adaptable to various size cradle bases is thereby provided.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
       1. The method of supporting a motor having cradle engageable rings each mounted on a hub at opposite ends thereof in the arms of a selected one of a plurality of different size cradle bases comprising the steps of: sliding at least one of the cradle engaging rings.Iadd., having a deviation from a circular configuration generally mating with respect to its associated motor hub and being substantially less in axial dimension than the associated motor hub, .Iaddend.axially along the .Iadd.associated .Iaddend.motor hub until the separation between the rings is appropriate for positioning the motor adjacent the selected base with the rings in registry with corresponding base arms;   engaging the base arms with the corresponding rings; and   securing the rings to the base.   
     
     
       2. The method of claim 1 wherein the step of engaging includes providing an annular filler strip to conform the radius of a circular ring and the radius of a circular segment of a base arm mating with the ring. 
     
     
       3. The method of claim 1 wherein the step of securing includes clampingly engaging the periphery of each ring. 
     
     
       4. The method of mounting an electric motor having resilient mounting members disposed on motor end .[.shield.]. .Iadd.shields including .Iaddend.hubs at opposite motor ends generally coaxial with the motor rotor axis in a support bracket having generally parallel extending arms, the extremities of which are contoured to mate with the mounting members comprising the steps of: axially displacing one of the mounting members on the pertaining hub .Iadd.with the one mounting member and its pertaining hub having generally mating deviations from a circular configuration and with the pertaining hub being a number of times greater in axial length than the one mounting member to provide a number of different relative axial positions therebetween .Iaddend.to position the mounting members axially in alignment with their respective arm extremities .Iadd.at one of such relative axial positions.Iaddend.;   juxtaposing the mounting members and their respective arm extremities; and   securing the mounting members to their respective arms.   
     
     
       5. The method of claim 4 wherein the step of juxtaposing includes providing an adapter strip about the periphery of each mounting member to accommodate the member to the corresponding arm extremity contour. 
     
     
       6. The method of claim 4 wherein the step of securing includes clamping the mounting members to their respective arms. 
     
     
       7. The method of claim 6 wherein the step of clamping includes for each mounting member: providing a clamping band, passing that band from an arm extremity around the mounting member and back to the arm extremity, and tightening the clamping band about the mounting member to firmly urge the mounting member into engagement with the corresponding contoured arm extremity. 
     
     
       8. A resilient mounting arrangement for a rotating machine having a pair of opposed end shields with hubs axially extending therefrom in opposite directions comprising: a first resilient annulus having an interior .Iadd.generally .Iaddend.conforming to a first hub peripheral surface;   a second resilient annulus .[.having an interior conforming to the.]. .Iadd.and a .Iaddend.second hub peripheral surface .[.and.]. .Iadd.including generally mating deviations from a circular configuration, with said second resilient annulus having a width substantially less than the axial length of the associated second hub and with the second resilient annulus being .Iaddend.axially movable along that surface to vary the axial separation of the resilient annuli to accommodate differing machine mounting brackets.   
     
     
       9. The mounting arrangement of claim 8 wherein the second hub periphery and second resilient annulus interior include mating deviations from circular for preventing rotation of the second annulus relative to the second hub. 
     
     
       10. The mounting arrangement of claim 9 wherein the deviations comprise splines on the second hub and corresponding axially extending grooves along the annulus interior. 
     
     
       11. The mounting arrangement of claim 8 wherein the first resilient annulus is axially fixed relative to the first hub. 
     
     
       12. The mounting arrangement of claim 8 further including first and second adapter rings selectively disposable about the outer periphery of the respective annuli to provide further mounting bracket adaptability. 
     
     
       13. An electric motor having a frame with an axially extending hub, a ring embracing the hub, the ring and hub including mating portions .Iadd.deviating from a circular configuration with the axial width of the ring portion being substantially less than the axial length of the associated hub portion .Iaddend.for allowing axial movement of the ring on the hub while preventing relative rotation of the ring and hub, a support base with a cradle portion for engaging the ring to support the hub, and means for securing the ring to the cradle portion. 
     
     
       14. The electric motor of claim 13 further comprising means connecting the motor frame and the support base for precluding further relative axial movement between the ring and hub. 
     
     
       15. The electric motor of claim 13 wherein the ring includes an inner annular resilent member and an outer annular adapter member, the adapter member being selectively removable to conform the ring to a cradle portion having a lesser radius of curvature. 
     
     
       16. In a resiliently mounted motor, a motor end shield having an axially extending hub, a mounting ring embracing the hub and movable axially therealong, .Iadd.said mounting ring and hub including generally mating deviations from a circular configuration, with said mounting ring having an axial dimension substantially less than that of the associated hub to permit the ring and hub to include a number of different relative axial positions, .Iaddend.a support base with a cradle portion for engaging the mounting ring to support the hub, means for securing the ring to the cradle portion, and means connecting the motor and the support base for fixing the relative axial position of the ring and hub at a preferred location and precluding further axial motion therebetween. 
     
     
       17. The mounted motor of claim 16 including means associated with the ring and hub for preventing relative rotation therebetween. 
     
     
       18. The mounted motor of claim 16 wherein the ring includes an inner annular resilient member and an outer annular adapter member, the adapter member being selectively removable to conform the ring to a cradle portion having a lesser radius of curvature. 
     
     
       19. The mounted motor of claim 16 wherein the support base includes a second cradle portion and the motor has a second end shield with an axially extending hub, the means connecting comprising a second mounting ring embracing and axially fixed to the second end shield hub, and means securing the second mounting ring to the second cradle portion. .Iadd. 
     
     
       20.  The mounted motor of claim 16 in which the mounting ring is adapted to have the same side facing the motor end shield when the mounting ring and hub are disposed in any one of the different relative axial positions. .Iaddend. .Iadd.21. The method of claim 4 in which during the step of axially displacing one of the mounting members on the pertaining hub, the one mounting member has the same side facing an associated end shield at the relative axial positions. .Iaddend.

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