Claims
- 1. A coupling apparatus for connecting two shafts for rotational transmission of torque between the shafts, comprising a spool having an axis and having opposite, axially spaced ends and an exterior surface, a pair of flexible, annular elements each mounted on said spool in axially spaced apart relation adjacent a respective said end, at least one of said annular elements having an radially inner base having an inner peripheral surface adhesively bonded to said exterior surface of said spool, said at least one of said annular elements extending from said base thereof along a substantially arcuate path to a radially outer periphery, said outer periphery being attached to a ring member which surrounds the axis of said spool, at least one of said annular elements being made of an elastomeric material.
- 2. The invention as claimed in claim 1 wherein said outer periphery is adhesively bonded to said ring member.
- 3. The invention as claimed in claim 1 wherein both of said annular elements have bases having radially inner respective peripheral surfaces each of which is adhesively bonded to said surface of said spool.
- 4. The invention as claimed in claim 1 wherein both of said annular elements include outer peripheries each of which is adhesively bonded to a ring member which surrounds the axis of said spool.
- 5. The invention as claimed in claim 1 wherein each of said annular elements is made of an elastomeric material.
- 6. The invention as claimed in claim 5 wherein said elastomeric material is polyurethane.
- 7. The invention as claimed in claim 1 wherein at least one of the shafts includes a hub mounted on said one shaft and said hub having a radially extending flange, said ring member having means of attachment to the flange.
- 8. The invention as claimed in claim 1 wherein said base of said at least one annular element has a greater axial dimension than the remaining portion of said annular element.
- 9. The invention as claimed in claim 8 wherein each of said annular elements has a base that has a greater axial dimension than the remaining portion of said respective annular element.
- 10. The invention as claimed in claim 9 wherein each said annular element has a body portion extending from said respective base to said respective outer periphery, said body tapering from said base to a position intermediate between said base and said outer periphery where the axial dimension is reduced and said body increasing gradually in axial width from said position to said outer periphery.
- 11. The invention as claimed in claim 1 wherein said at least one of said annular elements has a body having opposite faces and a central axis spaced equidistantly from said opposite faces, said axis extending through said body from a point on said base to said outer periphery to an end point wherein an angle defined by a line extending from the point to the end point and a line extending radially of said spool axis and passing through the point on the base is between 3° to about 20°.
- 12. The invention as claimed in claim 11 wherein said angle is 13°.
- 13. The invention as claimed in claim 1 wherein both of said annular elements have a body having opposite faces and a central axis spaced equidistantly from said opposite faces, said axis extending through said body from a point on said base to said outer periphery to an end point wherein an angle defined by a line extending from the point to the end point and a line extending radially of said spool axis and passing through the point on the base is between 3° to about 20°.
- 14. The invention as claimed in claim 11 wherein said angle is 13°.
- 15. A coupling apparatus for connecting two shafts for rotational transmission of torque between the shafts, comprising a spool, a pair of flexible annular elements each mounted directly on said spool in axially spaced apart relation, a pair of hubs with one of said pair of hubs being attachable to one shaft and the other of said pair of hubs being attachable to the other of said shafts, each hub having a flange portion and at least two connecting members on each flange portion for connecting the respective flange to one of said annular elements, said annular elements each being made from an elastomer material, wherein each said annular element has an inner peripheral edge, each said inner peripheral edge being mounted on and adhesively bonded to the exterior surface of a hub element.
- 16. The coupling apparatus of claim 15 wherein said spool extends between said hubs.
- 17. The coupling apparatus of claim 15 wherein said spool is located radially outwardly of said flexible rings and hubs.
- 18. A coupling apparatus for connecting two shafts for rotational transmission of torque between the shafts, comprising a spool, a pair of hubs each for mounting on one of the shafts, each hub having an outer peripheral surface and a flexible ring mounted on said outer peripheral surface, each flexible ring having an outer peripheral edge connected to a reinforcing ring, said spool having opposite ends, each said end being connected to a said reinforcing ring.
- 19. The coupling apparatus of claim 18 wherein each end of said spool has one row of circumferentially spaced apertures to allow connection to a said reinforcing ring.
- 20. The coupling apparatus of claim 19 wherein at least one end of said spool has a plurality of circumferentially extending rows of apertures with said rows of apertures being spaced apart axially to accommodate variations in the distance between the shafts to be connected.
- 21. The coupling apparatus of claim 18 wherein said flexible rings are made of an elastomer material.
- 22. The coupling apparatus of claim 18 wherein each said flexible ring has a cross section that tapers non-linearly from a selected thickness on its radially inner portion to its radially outer portion.
- 23. The coupling apparatus of claim 1 wherein said spool includes a telescoping portion.
- 24. The coupling apparatus of claim 23 wherein said spool and said telescoping portion are rigidly attached together.
- 25. The coupling apparatus of claim 22 wherein each said flexible rings has an axis extending from said base thereof along a substantially arcuate path to a radially outer periphery.
- 26. A coupling apparatus for connecting two shafts for rotational transmission of torque between the shafts, comprising a spool having a cylindrical surface and is free of any flanges, a pair of flexible rings each having an inner surface mounted directly on said cylindrical surface of said spool in axially spaced apart relation, a pair of hubs with one of said pair of hubs being attachable to one shaft and the other of said pair of hubs being attachable to the other of said shafts, each hub having a flange portion and at least two connecting members on each flange portion for connecting the respective flange to one of said flexible rings, said flexible rings each being made from an elastomer material, each said flexible ring extending from said base thereof along a substantially arcuate path to a radially outer periphery.
- 27. The invention as claimed in claim 1 wherein said ring member has a face and inner peripheral surface and said outer periphery of said annular member is adhesively bonded to said face and said inner periphery of said ring member.
- 28. The invention as claimed in claim 8 wherein said ring member includes a plurality of blind, threaded holes and said flange has a plurality of unthreaded holes, matching the said blind threaded holes of said ring, said means of attachment being threaded fasteners.
- 29. The invention as claimed in claim 11 wherein said curved central axis intersects a line passing through said point on the base and a line extending radially from said point on the base.
- 30. A coupling apparatus for connecting two shafts for rotational transmission of torque between the shafts comprising a spool having a cylindrical surface and a pair of flexible annular members each having an inner surface adhesively bonded directly onto said cylindrical surface of said spool in axially spaced apart relation, each said flexible member having an outer periphery adhesively bonded to a reinforcing ring, each said reinforcing ring having attachment means for attaching a said ring to a shaft, said annular members being made from an elastomer material.
- 31. The invention as claimed in claim 30 wherein each said annular member includes a body and a base portion with said body tapering inwardly from said base portion to a position intermediate said base portion and said respective outer periphery and outwardly from said position intermediate to said outer periphery.
- 32. The invention as claimed in claim 30 wherein said outer periphery includes a radially extending and an axially extending surfaces and said respective reinforcing ring having surfaces complimentary to said radially extending and said axially extending surfaces with said axially extending surface being positioned radially inwardly of said radially extending surface.
- 33. The invention as claimed in claim 30, wherein said reinforcing ring has a lip extending axially of said spool and located radially outwardly of said outer periphery of each said respective annular member.
- 34. The invention as claimed in claim 30 wherein each said reinforcing ring includes attachment means for attaching said respective reinforcing ring to a shaft.
- 35. The invention as claimed in claim 34 wherein said attachment means comprises a plurality of threaded bores.
- 36. The invention as claimed in claim 35 wherein each said bore extends in an axial direction and is blind.
- 37. The invention as claimed in claim 30 wherein each said annular element is curved from a base thereof to said outer periphery.
Parent Case Info
[0001] This is continuation is part of application Ser. No. 09/696,004, filed Oct. 26, 2000, now U.S. Pat. No.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09696004 |
Oct 2000 |
US |
Child |
10309281 |
Dec 2002 |
US |