Claims
- 1. An apparatus for forming field coils on a stator for a dynamo-electric machine, said stator including a plurality of slots defined by stator teeth, said apparatus comprising:
a stator mount for supporting a stator; a winding tool defining a longitudinal axis and supported for reciprocating movement relative to said stator mount, said winding tool including a wire feed passage for feeding wire into slots of a stator supported by the stator mount; a drifting tool located adjacent a longitudinal end of said winding tool and supported for reciprocating movement along said longitudinal axis; and said drifting tool including at least one drifting blade extending radially outwardly for passing through a slot in the stator supported in said stator mount whereby said at least one drifting blade engages wire in the stator slot during longitudinal movement of said drifting tool through said stator.
- 2. The apparatus of claim 1 including a winding tool driver for driving said winding tool in reciprocating movement, and a drifting tool driver for driving said drifting tool in reciprocating movement.
- 3. The apparatus of claim 1 wherein said drifting tool comprises a cylindrical drifting tool body defined by a longitudinally extending cylindrical outer wall, and said at least one drifting blade attached to and extending longitudinally along said outer wall.
- 4. The apparatus of claim 3 wherein said at least one blade includes a base portion located adjacent said outer wall of said drifting tool body and a drifting portion located radially outwardly from said base portion, said base portion including a width dimension less than a width dimension of said drifting portion for passage through a slot opening of stator, located radially inwardly of said slot.
- 5. The apparatus of claim 4 wherein a radially outer longitudinal edge of said drifting portion is defined by an arcuate surface spanning between radially extending, opposing faces of said drifting portion.
- 6. The apparatus of claim 1 wherein said at least one blade is supported on a drifting tool body and includes a longitudinal end section which angles radially inwardly from a radially outer edge of said drifting portion toward said drifting tool body.
- 7. The apparatus of claim 1 wherein said winding tool includes a plurality of wire apertures for feeding a plurality of wires from said wire feed passage into the slots of the stator supported on said stator mount, and said drifting tool includes a plurality of drifting blades for simultaneously entering a plurality of slots in the stator.
- 8. The apparatus of claim 1 wherein said at least one drifting blade extends at an angle relative to said longitudinal axis.
- 9. The apparatus of claim 8 wherein said drifting tool is supported for rotational movement about said longitudinal axis.
- 10. The apparatus of claim 1 including an upper wire retainer supported for movement toward an end of the stator for engaging cross-over wires extending across the end of the stator, said upper wire retainer including a plate supporting a plurality of fingers extending toward said longitudinal axis.
- 11. An apparatus for forming field coils on a stator for a dynamo-electric machine, said stator including a plurality of slots defined by stator teeth, said apparatus comprising:
a stator mount for supporting a stator; a winding tool defining a longitudinal axis and supported for reciprocating movement relative to said stator mount, said winding tool including a wire feed passage for feeding wire into slots of a stator supported by the stator mount; a wire feed mechanism for feeding wire to said winding tool; said wire feed passage comprising an upstream, main passage for guiding a plurality of wires and a plurality of downstream, branch passages, each branch passage for guiding a single wire; and wherein said branch passages are separated from each other by passage walls, said passage walls having a thickness, at an interface between said main passage and said branch passages, which is less than the width of said branch passages.
- 12. The apparatus of claim 11 wherein said winding tool is cylindrical and said wire passage extends from one side of said winding tool, where said winding tool receives said wire from said wire feed mechanism, to a diametrically opposite side of said winding tool, where wire feed apertures associated with said wire passage are located for feeding wire from said winding tool.
- 13. The apparatus of claim 11 wherein said winding tool comprises a wire guide base and a wire guide cap, the wire guide base including grooves formed along an exposed surface thereof, and the wire guide cap including a contact surface defining a contour to match a contour of the exposed surface, said contact surface contacting said exposed surface and covering said grooves to thereby define said branch passages.
- 14. The apparatus of claim 13 including a winding tool sleeve positioned around said wire guide base and said wire guide cap, said sleeve defining a plurality of wire apertures, each wire aperture associated with each of said branch passages for feeding wires from said winding tool.
- 15. The apparatus of claim 11 further including a drifting tool, said drifting tool being positioned in alignment with an upper end of said winding tool, and said drifting tool and said winding tool including cooperating elements for engagement with each other to facilitate alignment between said drifting tool and said winding tool.
- 16. The apparatus of claim 11 including a wire feed plate for feeding wire to said winding tool, said wire feed plate comprising a drive belt and a wire drive pulley in engagement with said drive belt, said wire drive pulley including a groove for receiving wire therein to thereby maintain the wire in engagement with a predetermined portion of an outer surface of said wire drive pulley.
- 17. The apparatus of claim 16 wherein said wire feed plate comprises a wire exit member including a wire pick-up lip extending into said groove for engaging wire located in said groove and directing the wire toward said main passage of said wire feed passage.
- 18. The apparatus of claim 16 including a first tensioner pulley engaged with said drive belt, and a second tensioner pulley engaged with said drive belt, a first tensioner plate mounting said first tensioner pulley, a second tensioner plate mounting said second tensioner pulley, and a support plate pivotally supporting said each of said first tensioner plate and said second tensioner plate.
- 19. The apparatus of claim 18 wherein said first tensioner plate engages against said second tensioner plate, and including an adjustment mechanism engaged with said first tensioner plate to move said first tensioner plate, resulting in simultaneous movement of said second tensioner plate, to thereby adjust the tension on said drive belt.
- 20. An apparatus for forming field coils on a stator for a dynamo-electric machine, said stator including a plurality of slots defined by stator teeth, said apparatus comprising:
a stator mount for supporting a stator; a winding tool defining a longitudinal axis and supported for reciprocating movement relative to said stator mount, said winding tool including a wire feed passage for feeding wire into slots of a stator supported by the stator mount; a wire feed mechanism for feeding wire to said wire feed passage, said wire feed mechanism comprising a wire feed plate including a drive belt and a wire drive pulley in engagement with said drive belt, said wire drive pulley including a groove for receiving wire therein to thereby maintain the wire in engagement with a predetermined portion of an outer surface of said wire drive pulley; and said wire feed mechanism further comprising a wire exit member including a wire pick-up lip extending into said groove for engaging wire located in said groove and directing the wire toward said wire feed passage whereby a leading end of wire located in said groove will be diverted from said groove to said wire feed passage.
- 21. The apparatus of claim 20 including a first tensioner pulley engaged with said drive belt, and a second tensioner pulley engaged with said drive belt, a first tensioner plate mounting said first tensioner pulley, a second tensioner plate mounting said second tensioner pulley, and a support plate pivotally supporting said each of said first tensioner plate and said second tensioner plate.
- 22. The apparatus of claim 21 wherein said first tensioner plate engages against said second tensioner plate, and including an adjustment mechanism engaged with said first tensioner plate to move said first tensioner plate, resulting in simultaneous movement of said second tensioner plate, to thereby adjust the tension on said drive belt.
- 23. The apparatus of claim 20 wherein said wire feed passage comprises a main passage for guiding plurality of wires and a plurality of branch passages defined within said winding tool and connected to said main passage, and wherein said branch passages are separated from each other by passage walls, said passage walls having a thickness, at an interface between said main passage and said branch passages, which is less than the width of said branch passages whereby the leading end of a single wire will be directed from said main passage to each of said branch passages.
- 24. An apparatus for forming field coils on a stator for a dynamo-electric machine, said stator including a plurality of slots defined by stator teeth, said apparatus comprising:
a stator mount for supporting a stator; a winding tool defining a longitudinal axis and supported for reciprocating movement relative to said stator mount, said winding tool including a wire feed passage for feeding wire into slots of a stator supported in said stator mount; and an upper wire retainer supported for movement toward an end of the stator for engaging cross-over wires extending across the end of the stator.
- 25. The apparatus of claim 24 wherein said upper wire retainer is supported for movement independently of said winding tool.
- 26. The apparatus of claim 24 wherein said upper wire retainer comprises at least one finger extending radially toward said longitudinal axis.
- 27. The apparatus of claim 26 wherein said at least one finger includes an end with a tang extending substantially perpendicular therefrom.
- 28. The apparatus of claim 26 including a plurality of fingers extending toward said longitudinal axis.
- 29. The apparatus of claim 28 wherein said fingers each terminate in an end located to extend radially over a portion of a slot of the stator.
- 30. The apparatus of claim 28 wherein said upper wire retainer comprises a plate supporting said fingers.
- 31. A method of forming field coils on a stator for a dynamo-electric machine, said stator including a plurality of slots defined by stator teeth, the method including the steps of:
providing a stator mount for supporting a stator, and a stator supported in said stator mount; providing a winding tool having a wire feed aperture; providing a drifting tool located adjacent an end of said winding tool and comprising at least one radially extending drifting blade; driving said winding spindle in reciprocating movement in opposing first and second directions, and simultaneously feeding wire from said winding tool into the slots of said stator; and wherein said at least one drifting blade enters and passes through a slot of said stator during movement of said winding tool in said first direction whereby said at least one blade displaces wire within said slot simultaneously with said winding tool feeding wire into said slot, and said at least one drifting blade moves to a position displaced from said end of said stator during movement of said winding tool in said second direction.
- 32. The method of claim 31 wherein said drifting tool comprises a plurality of radially extending drifting blades and said plurality of blades entering corresponding slots in said stator to displace wire within said slots.
- 33. The method of claim 31 wherein said winding spindle and said drifting tool are driven in rotational movement during said reciprocating movement to form field coils within skewed slots of said stator.
CROSS REFERENCE TO RELATED APPLICATION
[0001] The benefit of prior U.S. Provisional Application No. 60/240,647 filed Oct. 16, 2000 is hereby claimed.
Provisional Applications (1)
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Number |
Date |
Country |
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60240647 |
Oct 2000 |
US |