Claims
- 1. A dynamo-electric machine component comprising:
poles that are geometrically defined by slot passages in a casing, wherein the slot passages have openings between adjoining poles and wherein the openings have widths that are substantially comparable to the widths of the slot passages over their depths; and wire coils placed around the poles, from directions that are generally along the radii of the dynamo-electric machine component.
- 2. The component of claim 1 wherein the wire coils comprise conductors having cross sections that are comparable to the widths of the slot passages.
- 3. The component of claim 1 wherein the wire coils comprise coils pre-formed on pockets that are transferred onto the poles and attached to the casing.
- 4. The component of claim 1 wherein the wire coils comprise a conductor wound in a wave configuration.
- 5. The component of claim 1 further comprising slot covers that have pole extension sections.
- 6. The component of claim 5 wherein a slot cover further comprises an intervening insulating section between two pole extension sections, and wherein the two pole extension sections respectively abut the poles adjoining a slot passage.
- 7. The component of claim 5 wherein the adjoining poles comprise seats for holding the slot cover by its edges.
- 8. The component of claim 5 further comprising a ring for holding the slot covers by their ends, wherein the ring is attachable to an axial face of the stator.
- 9. The component of claim 1 further comprising a cover structure having alternating insulating sections and pole extension sections, wherein the cover structure is disposed in the casing such that alternating sections are respectively over the slot passages and the poles.
- 10. The component of claim 9 wherein surfaces of the pole extension sections that are disposed over the poles are in mechanical contact with surfaces of the later, and wherein the mechanically contacting surfaces are conformably shaped.
- 11. A method for the assembly of a dynamo-electric machine component, comprising:
providing a casing having poles that are geometrically defined by slot passages, wherein the slot passages have openings between adjoining poles and wherein the openings have widths that are substantially comparable to the widths of the slot passages over their depths; and placing wire coils around the poles by moving wire conductors on to the poles from directions that are generally along the radii of the casing.
- 12. The method of claim 11 wherein placing wire coils comprises inserting a conductor in a wave configuration in the slot passages around the poles.
- 13. The method of claim 11 wherein placing wire coils comprises:
providing a mandrel with seats that can be aligned with the casing slot passages; placing a wire coil conductor on the mandrel, wherein the wire coil conductor passes through the mandrel seats; inserting the mandrel in the bore of the stator casing; aligning the mandrel seats with the casing slot passages; and transferring the wire coil conductor from the mandrel seats into the casing slot passages.
- 14. The method of claim 11 further comprising:
lining the walls of the slot passages with insulating inserts; and using removable pins to temporarily tack the insulating inserts prior to insertion of a conductor in the casing slot passages.
- 15. The method of claim 11 wherein placing wire coils comprises using a nozzle to dispense a conductor for making a wire coil.
- 16. The method of claim 15 wherein using a nozzle comprises:
moving the nozzle relative to the casing substantially along one of the slot passages to dispense a stretch of the conductor; moving the nozzle relative to the casing substantially along a radial casing direction to pull the dispensed stretch of conductor into the slot passage; and moving the nozzle relative to the casing substantially along an axial face of the casing to dispense a conductor length leading to a next slot passage.
- 17. The method of claim 15 further comprising using guide forms to shape the conductor dispensed by the nozzle.
- 18. The method of claim 11 further comprising installing pole extensions abutting the poles after placing the wire coils around the poles.
- 19. The method of claim 11 further comprising installing slot covers over the slot passages after placing the wire coils around the poles.
- 20. The method of claim 19 wherein installing slot covers comprises placing a slot cover that has a pair of pole extension portions and an intervening insulating portion over a slot passage so that the pair of pole extension sections respectively abut the two poles adjoining the slot passage.
- 21. The method of claim 19 wherein providing a casing having poles according to the method of claim 12 further comprises providing a casing in which the poles have seats for receiving edges of the slot covers.
- 22. The method of claim 19 further comprising holding the installed slot covers by their ends.
- 23. The method of claim 19 wherein installing slot covers comprises inserting a cover structure in a bore of the casing, wherein the cover structure comprises alternating insulating and pole extension sections, and wherein inserting the cover structure comprises:
aligning the cover structure so that the insulating sections cover the slot passages and the pole extension sections abut the poles; and securing the position of the aligned cover structure with respect to the casing.
- 24. A method for the assembly of a dynamo-electric machine component comprising:
providing a casing having poles; placing wire coils around the poles; and, then placing pole extensions next to the poles.
- 25. The method of claim 24 wherein placing a wire coil around the poles comprises:
winding wire coils on movable pockets; and, moving the movable pockets onto the poles.
- 26. A method for the assembly of a dynamo-electric machine component, comprising:
providing a casing having a set of poles; pre-forming wire coils on moveable pockets; and attaching the moveable pockets to the casing so that the pre-formed wire coils are placed around the poles.
- 27. The method of claim 26 wherein pre-forming the wire coils on moveable pockets comprises using a mandrel having a number of extensions for supporting the moveable pockets while forming the wire coils on them, and wherein the extensions are geometrically alignable with the poles such that the moveable pockets are transferable from the extensions to the casing poles.
- 28. The method of claim 27 wherein providing a casing further comprises providing mechanical catches to attach the moveable pockets to the casing, and wherein attaching the moveable pockets to the casing comprises:
transferring the moveable pockets from the extensions to the poles; and using the mechanical catches to secure the position of the moveable pockets transferred to the poles.
- 29. The method of claim 27 wherein the dynamo-electric machine component is a component operable by flowing poly-phase current through the wire coils placed around the poles, wherein each current phase is associated with a subset of the poles, and wherein the number of extensions on the mandrel for supporting the moveable pockets corresponds to the number of poles in the subset associated with a specific current phase.
- 30. The method of claim 29 further comprising forming wire coils on moveable pockets supported on the number of extensions on the mandrel; and
transferring the moveable pockets with preformed wire coils to the poles in the subset associated with a specific phase.
- 31. The method of claim 27 further comprising using a plurality of the mandrels, wherein each mandrel is disposed at a workstation, and wherein at each workstation wire coils are placed around a fraction of the set of casing poles.
- 32. A workstation for the assembly of a dynamo-electric machine component according to the method of claim 26, comprising:
a rotatable mandrel with a number of radial extensions for supporting the movable pockets; a dispenser for winding wire coils around the movable pockets supported on the radial extensions; means for aligning the radial extensions with the casing poles; and a transfer mechanism for transferring the movable pockets supported on the radial extensions on to the aligned casing poles.
- 33. The workstation of claim 32 wherein the movable pockets are rotatably supported on the radial extensions, further comprising drive mechanisms to rotate the movable pockets to pull wire around trunks of the movable pockets.
Parent Case Info
[0001] This application claims the benefit of U.S. provisional application No. 60/380,893 filed May 14, 2002 and U.S. provisional application No. 60/396,406 filed Jul. 15, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60380893 |
May 2002 |
US |
|
60396406 |
Jul 2002 |
US |