Claims
- 1. A method for insulating interior walls of lamination slots of dynamo-electric machine components by controlling displacement and speed profiles of a plurality of mechanical output members comprising:
moving at least one member located within a casing; translating the plurality of mechanical output members by the moving of the at least one member; and extending the plurality of mechanical output members at least in part from the casing.
- 2. The method defined in claim 1, further comprising:
moving a first mechanical output member that is coupled to a cutting member at least partially outside the casing; moving a second mechanical output member that is coupled to a forming member at least partially outside the casing; and moving a third mechanical output member that is coupled to an inserting member at least partially outside the casing.
- 3. The method defined in claim 1, wherein the extending the plurality of mechanical output members occurs from the top of the casing.
- 4. The method defined in claim 1, wherein the moving of the members is comprised of rotating a shaft with a plurality of cams coupled to a longitudinal axis of the shaft.
- 5. The method defined in claim 4, wherein the rotating of the shaft with the plurality of cams moves the output members.
- 6. The method defined in claim 4, further comprising controlling the moving of the output members by sufficiently contacting the plurality of cams with a roller coupled to at least one arm of a yoke.
- 7. The method defined in claim 6, further comprising minimizing the play between the rollers and the first plurality of cams.
- 8. A method for insulating interior walls of lamination slots of dynamo-electric machine components comprising:
cutting a strip of insulation material into a segment having a predetermined length; forming the cut segment of insulation material into a predetermined shape; inserting the formed segment of insulation material into the lamination slot; and controlling the cutting, forming, and inserting with a central control device having a single shaft and a plurality of cams coupled to a longitudinal axis of the shaft.
- 9. The method defined in claim 8, wherein the cutting comprises moving a cutting member.
- 10. The method defined in claim 8, wherein the forming comprises moving of a forming member.
- 11. The method defined in claim 8, wherein the inserting comprises moving of an inserting member.
- 12. The method defined in claim 8, wherein:
the controlling of the cutting is performed by a first plurality of cams; the controlling of the forming is performed by a second plurality of cams; and the controlling of the inserting is performed by third plurality of cams.
- 13. The method defined in claim 12, wherein the controlling the cutting further comprises sufficiently contacting each cam of the first plurality of cams with a roller coupled to at least one arm of a first yoke.
- 14. The method defined in claim 13, wherein the sufficiently contacting comprises minimizing the play between the rollers and the first plurality of cams.
- 15. The method defined in claim 12, wherein the controlling the forming further comprises sufficiently contacting each cam of the second plurality of cams with a roller coupled to at least one arm of a second yoke.
- 16. The method defined in claim 15, wherein the sufficiently contacting comprises minimizing the play between the rollers and the second plurality of cams.
- 17. The method defined in claim 12, wherein the controlling the inserting further comprises sufficiently contacting each cam of the third plurality of cams with a roller coupled to at least one arm of a third yoke.
- 18. The method defined in claim 17, wherein the sufficiently contacting comprises minimizing the play between the rollers and the third plurality of cams.
- 19. The method defined in claim 8, wherein the controlling is centrally driven by rotating the shaft.
- 20. The method defined in claim 19, further comprising transforming the rotation of the shaft to translate a cutting member to perform the cutting.
- 21. The method defined in claim 20, wherein the translation of the cutting member is periodic.
- 22. The method defined in claim 19, further comprising transforming the rotation of the shaft to translate a forming member to perform the forming.
- 23. The method defined in claim 22, wherein the translation of the forming member is periodic.
- 24. The method defined in claim 19, further comprising transforming the rotation of the main shaft to translate an inserting member to perform the inserting.
- 25. The method defined in claim 24, wherein the translation of the inserting member is periodic.
- 26. The method defined in claim 8, further comprising advancing to a state in preparation for insulating a next slot.
- 27. An apparatus for insulating interior walls of lamination slots of dynamo-electric machine components by controlling displacement and speed profiles of a plurality of mechanical output members comprising:
a casing; a plurality of mechanical output members extending at least partially outward from the casing; and movable members located within the casing that translate the plurality of mechanical output members at least partially outward from the casing.
- 28. The apparatus defined in claim 27, further comprising:
a cutting member outside the casing that is coupled to a first output member; a forming member outside the casing that is coupled to a second output member; and an inserting member coupled outside the casing that is coupled to a third output member.
- 29. The apparatus defined in claim 27, wherein the plurality of output members extend outward from the top of the casing.
- 30. The apparatus defined in claim 27, wherein the movable members are comprised of a shaft with a plurality of cams coupled to a longitudinal axis of the shaft.
- 31. The apparatus defined in claim 30, wherein the plurality of cams are coupled to the output members.
- 32. The apparatus defined in claim 30, wherein each cam of the plurality of cams is sufficiently contacted by a roller coupled to at least one arm of a first yoke.
- 33. The apparatus defined in claim 32, wherein play between the rollers and the first plurality of cams is minimized.
- 34. An apparatus for insulating interior walls of lamination slots of dynamo-electric machine components comprising:
a cutting member for cutting a strip of insulation material into a segment having a predetermined length; a forming member for forming the cut segment of insulation material into a predetermined shape; an inserting member for inserting the formed segment of insulation material into the lamination slot; and a central control device comprising a single shaft and a plurality of cams coupled to a longitudinal axis of the shaft for controlling the cutting member, forming member, and inserting member.
- 35. The apparatus defined in claim 34, wherein the cutting member is driven by the central control device.
- 36. The apparatus defined in claim 34, wherein the forming member is driven by the central control device.
- 37. The apparatus defined in claim 34, wherein the inserting member is driven by the central control device.
- 38. The apparatus defined in claim 34, wherein:
a first plurality of cams controls the cutting member; a second plurality of cams controls the forming member; and third plurality of cams controls the inserting member.
- 39. The apparatus defined in claim 38, wherein each cam of the first plurality of cams is sufficiently contacted by a roller coupled to at least one arm of a first yoke.
- 40. The apparatus defined in claim 39, wherein play between the rollers and the first plurality of cams is minimized.
- 41. The apparatus defined in claim 38, wherein each cam of the second plurality of cams is sufficiently contacted by a roller coupled to at least one arm of a second yoke.
- 42. The apparatus defined in claim 41, wherein play between the rollers and the second plurality of cams is minimized.
- 43. The apparatus defined in claim 38, wherein each cam of the third plurality of cams is sufficiently contacted by a roller coupled to at least one arm of a third yoke.
- 44. The apparatus defined in claim 43, wherein play between the rollers and the third plurality of cams is minimized.
- 45. The apparatus defined in claim 34, wherein the central control device is enclosed by a casing.
- 46. The apparatus defined in claim 34, wherein the central control device is a drive mechanism that rotates the shaft.
- 47. The apparatus defined in claim 46, wherein the cams on the shaft rotate to translate the cutting member to perform the cutting.
- 48. The apparatus defined in claim 47, wherein the translation of the cutting member is periodic.
- 49. The apparatus defined in claim 46, wherein the cams on the shaft rotate to translate the forming member to perform the forming.
- 50. The apparatus defined in claim 49, wherein the translation of the forming member is periodic.
- 51. The apparatus defined in claim 46, wherein the cams on the shaft rotate to translate the inserting member to perform the inserting.
- 52. The apparatus defined in claim 49, wherein the translation of the inserting member is periodic.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application No. 60/248,255, filed Nov. 14, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60248255 |
Nov 2000 |
US |