Claims
- 1. Apparatus for forming a multi-coil winding for a dynamo-electric machine component core, the apparatus comprising:
gripper structure for positioning an initial lead of at least one wire; forming structure configured to sequentially form each of a first coil portion and a second coil portion by winding the at least one wire into wire turns about a coil axis, successive ones of the wire turns being positioned in respective, successive, substantially parallel planes; and wire feeding mechanism configured to translate substantially perpendicularly to said parallel planes to position the wire turns, wherein the feeding mechanism translates in a first direction along the coil axis away from the initial lead to form the first coil portion and translates in an opposite second direction along the coil axis to form the second coil portion.
- 2. The apparatus of claim 1 wherein the feeding mechanism is further configured to position a final lead of the at least one wire after winding a final turn of the second coil portion.
- 3. The apparatus of claim 1 wherein the feeding mechanism is further configured to position a final lead of the at least one wire, after winding a final turn of the second coil portion, away from a portion of the core exposed to another component of the dynamo-electric machine.
- 4. The apparatus of claim 1 further comprising forming mechanism configured to shape each of the first and second coil portions into an undulated configuration having a plurality of radial lobes alternated with hollows positioned in angular intervals around a circumference of each of the coil portions.
- 5. The apparatus of claim 4 wherein the forming mechanism is further configured to arrange the second coil portion at a position angularly shifted relative to the first coil portion, wherein the lobes of the second coil portion are positioned at angular positions corresponding to hollows of the first coil portion.
- 6. The apparatus of claim 5 wherein the forming mechanism is further configured to shape a wire portion connecting the first coil portion with the second coil portion to form a loop following an annular path matching the profile of one lobe of one of the two coil portions for one part and the profile of a hollow of the other coil portion opposite to the lobe for another part.
- 7. A method for forming a multi-coil winding for a dynamo-electric machine component core, the method comprising:
positioning an initial lead of at least one wire; and sequentially forming a first coil portion and a second coil portion by winding the at least one wire into wire turns about a coil axis, successive ones of the wire turns being positioned in respective, successive, substantially parallel planes, wherein the wire turns are wound away from the initial lead in a first direction substantially perpendicular to the parallel planes to form the first coil portion, and wherein the wire turns are wound in an opposite second direction to form the second coil portion.
- 8. The method of claim 7 further comprising positioning a final lead of the at least one wire after winding a final turn of the second coil portion.
- 9. The method of claim 7 further comprising positioning a final lead of the at least one wire, after winding a final turn of the second coil portion, away from a portion of the core exposed to another component of the dynamo-electric machine.
- 10. The method of claim 7 wherein forming the first coil portion further comprises shaping the first coil portion in an undulated configuration having a plurality of radial lobes alternated with hollows positioned in angular intervals around a circumference of the first coil portion.
- 11. The method of claim 10 wherein forming the second coil portion further comprises:
shaping the second coil portion in the undulated configuration; and arranging the second coil portion at a position angularly shifted relative to the first coil portion, wherein the second coil portion has lobes at the same angular positions of the hollows of the first coil portion.
- 12. The method of claim 11 further comprising shaping a wire portion connecting the first coil portion with the second coil portion to form a loop following an annular path matching the profile of one lobe of one of the two coil portions for one part and the profile of a hollow of the other coil opposite to the lobe for another part.
- 13. A method for winding coils of wire around a coil axis for depositing on a core for a dynamo-electric machine comprising:
winding a first portion of a coil around a form structure so that an early turn of the first portion is adjacent a first location along the coil axis on the form structure and so that subsequent turns are deposited on the form structure progressing in a first direction along the coil axis away from the first location; removing the first portion of the coil from the form structure without breaking the wire extending back from a final turn of the first portion; and winding a second portion of the coil around the form structure so that successive turns of the second portion are deposited on the form structure progressing in a second direction along the coil axis that is opposite to the first direction.
- 14. The method of claim 13 further comprising positioning a final turn of the second portion along the coil axis substantially adjacent to the first location.
- 15. The method of claim 13 further comprising shaping the first portion in an undulated configuration having a plurality of radial lobes alternated with hollows positioned in angular intervals around a circumference of the first portion.
- 16. The method of claim 15 further comprising:
shaping the second portion in the undulated configuration; and arranging the second portion at a position angularly shifted relative to the first portion, wherein the second coil portion has lobes at the same angular positions of the hollows of the first coil portion.
- 17. The method of claim 16 further comprising shaping a wire portion connecting the first portion with the second portion to form a loop following an annular path matching the profile of one lobe of one of the two portions for one part and the profile of a hollow of the other portion opposite to the lobe for another part.
- 18. A method of winding a pair of half-coils using wire that emanates from a wire dispenser and that is continuous between the half-coils, the respective half-coils being intended for insertion in a dynamo-electric machine core with respective different angular registrations relative to a circumference of the core, comprising:
winding a first plurality of substantially planar turns of wire on a forming structure starting from an initial lead to produce a first of the half-coils; winding a second plurality of substantially planar turns of wire on the forming structure ending with a final lead to produce a second of the half-coils; and displacing at least one of the initial and final leads out of the plane of the turn of wire from which that lead extends.
- 19. The method defined in claim 18 wherein the displacing comprises:
causing relative movement between the wire dispenser and the forming structure substantially perpendicular to the plane of a turn of wire on the forming structure.
- 20. The method defined in claim 18 wherein the displacing leaves the lead that is displaced in a position that results in that lead being at a desired location radially of the core when the half-coils are inserted in the core.
- 21. The method defined in claim 20 wherein the desired location is more centrally located between inner and outer circumferences of the core than the displaced lead would be if it were not displaced.
- 22. The method defined in claim 18 wherein each of the half-coils is substantially helical on the forming structure, except to the extent that results from the displacing of at least one of the leads.
- 23. The method defined in claim 18 further comprising:
removing the first half-coil from the forming structure prior to winding the second half-coil on the forming structure.
- 24. The method defined in claim 18 wherein the winding of the first half-coil is done in a first direction around the forming structure, and the winding of the second half-coil is done in a second direction around the forming structure that is opposite to the first direction.
- 25. The method defined in claim 18 further comprising:
forming a reversal loop in the wire extending between the first and second half-coils.
- 26. A method for forming a series of coils each wound around a coil axis, for placement into a dynamo-electric machine component core, the method comprising:
sequentially forming each of the coils by winding at least one wire having an initial and final lead into wire turns that are positioned in successive, substantially parallel planes spaced along the coil axis; controlling a sequence of directions along the coil axis for distributing the wire turns of the coils, the sequence including a first direction substantially perpendicular to the parallel planes and a second opposite direction; positioning the final lead of each of the coils relative to the parallel planes; and programmably controlling a relationship between the sequence of distribution directions and the positions of the final leads to surround each of the initial and final leads between wire turns of radially adjacent coils when the coils are sequentially placed into the core.
- 27. Apparatus for forming a series of coils for placement into a dynamo-electric machine component core, the method comprising:
forming structure configured to rotate about a coil axis to sequentially form each of the coils by winding at least one wire having an initial and final lead into wire turns that are positioned in successive, substantially parallel planes that are substantially perpendicular to the coil axis; wire feeding mechanism configured to translate parallel to the axis to distribute the wire turns of the coils and to position a final lead of each of the coils relative to the parallel planes; and programmable control apparatus configured to control the translation of the feeding mechanism relative to the rotation of the forming structure to produce a series of coils wherein each of the initial and final leads is surrounded between wire turns of radially adjacent coils when the coils are sequentially placed into the core.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. provisional application No. 60/334,472, filed Nov. 16, 2001, and U.S. provisional application No. 60/333,498, filed Nov. 28, 2001, which are hereby incorporated by reference in their entireties.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60334472 |
Nov 2001 |
US |
|
60333498 |
Nov 2001 |
US |