Claims
- 1. In a core winding apparatus, the combination comprising:
a drive shaft having a longitudinal axis; a plurality of pistons mounted for radial displacement in the shaft in axial arrays along the shaft axis, the axial arrays being arranged about the shaft in an annular array; a core receiving ring mounted about the shaft, the core for receiving elongated elements to be wound thereon; the pistons for selectively rotationally driving the core mounted on the core receiving ring; an inflatable bladder radially inwardly the drive shaft; and a plurality of elongated strips, each strip being in the interface between an axial array of the pistons and the bladder for selectively outwardly displacing the pistons to cause selective driving of a core received on the core receiving ring upon inflation of the bladder.
- 2. The combination of claim 1 wherein the strips are flat sheets of steel arranged in an annular array about the bladder.
- 3. The combination of claim 1 further including a clutch mechanism associated with the pistons and the core receiving ring for selectively driving the core mounted on the core receiving ring.
- 4. The combination of claim 3 wherein the clutch mechanism comprises cam means responsive to the outward displacement of the pistons for the selective gripping of the core mounted on the core receiving ring.
- 5. The combination of claim 5 wherein the cam means comprises a plurality of core gripping elements radially displaceable in the core receiving ring and a cam ring engaged with the elements and the pistons, the cam ring for selective rotation by the pistons in response to inflation of the bladder for camming the elements against the received core.
- 6. A core winding assembly comprising:
an outer ring member for releasably receiving a core thereon and having a plurality of annularly spaced first radial bores; a core gripping member movable in each of the bores and having a first position recessed in the bore and a second position protruding radially outwardly from the bore for gripping a core mounted thereon; an inner ring member radially within the outer ring member, the inner ring member having an inner annular surface facing radially inwardly and an outer ramped annular surface facing the outer ring member extending about the axis and sloping radially outwardly for engagement with and displacing the core gripping member radially outwardly to the second position upon relative rotation of the inner ring member about the axis with respect to the outer ring member; a drive shaft; a plurality of pistons in the drive shaft radially aligned with the inner ring member and mounted for radially displacement in the drive shaft for selectively gripping and engaging the inner ring member inner annular surface and for rotationally driving the gripped inner ring member, the pistons being aligned in axial arrays along the longitudinal axis of the drive shaft and in an annular array about the drive shaft axis; an elongated inflatable bladder radially inwardly the shaft; and an elongated strip in the interface between the bladder and each axial array of the pistons aligned along said axis, each said strips for urging the axially aligned pistons radially outwardly in response to inflation of the bladder into gripping engagement with the inner ring to rotationally drive the inner ring.
- 7. The assembly of claim 6 wherein the ramped annular surface comprises a groove semi-circular in transverse section, and the gripping member is a ball received in the groove.
- 8. The assembly of claim 6 including a plurality of said ramped annular surfaces each extending about the ring member equal amounts to subtend equal chords.
- 9. The assembly of claim 6 wherein the core gripping member is a ball.
- 10. The assembly of claim 6 wherein the inner ring is molded thermoset plastic material.
- 11. The assembly of claim 6 wherein the first bores alternate circumferentially with second bores about the outer ring member, the second bores including core gripping members resiliently urged radially outwardly from the outer ring member.
- 12. The assembly of claim 6 further including a bladder support stem within said bladder, and means for supplying pressurized air to the bladder for expanding the bladder for displacing the pistons.
- 13. In combination:
an elongated circular cylindrical stem having an axis; an elongated bladder mounted over the stem; a plurality of elongated strips over the bladder arranged in an annular array about the bladder and extending in an axial direction along the axis; input means for receiving pressurized air for selectively inflating the bladder; a shaft mounted about the bladder and having a plurality of radial bores; a piston in each said bores for radial outward displacement in the shaft, the pistons in engagement with said strips, the strips for urging the pistons radially outwardly in response to inflation of the bladder; an inner ring with an inner surface facing said pistons for selective friction engagement with the pistons upon said outward piston displacement, the inner ring having a plurality of like outer ramp surfaces each sloping radially outwardly in the same general circumferential direction about the shaft forming a cam surface; an outer ring with a plurality of bores; and a core gripping element captured in and recessed in each of the bores in a first position and protruding from the respective bore in a second core gripping position, the gripping element in engagement with the ramp surfaces for forming a clutch for selective rotatably driving the received core.
Parent Case Info
[0001] This application is a continuation-in-part of application Ser. No. 09/692,086 filed Oct. 19, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09692086 |
Oct 2000 |
US |
Child |
09817985 |
Mar 2001 |
US |