Claims
- 1. A method of winding a wire on an armature having an axial shaft, a core member permanently and fixedly mounted concentrically on said shaft, and a commutator permanently and fixedly mounted concentrically on said shaft at a location which is axially spaced from said core member, said core member having a plurality of circumferentially spaced, radially and axially extending slots, and said commutator having a plurality of circumferentially spaced coil lead termination structures, said wire being dispensed from a wire outlet of a wire dispensing member which is movable relative to said armature, said method comprising the steps of:
- anchoring the wire extending from said wire outlet relative to said armature;
- moving said wire dispensing member relative to said armature so that wire is pulled from said wire outlet during this step at least initially as a result of said anchoring step and is wound in a first coil around said core member by passing wire in a repeating succession (1) through a first slot, (2) adjacent a first axial end of said core member from said first slot to a second slot, (3) through said second slot, and (4) adjacent a second axial end of said core member from said second slot back to said first slot, the wire dispensing member following a first path of movement relative to said armature during this step such that the wire touches substantially only the wire dispensing member, the armature, and previously wound wire in travelling from said wire outlet to said first coil;
- after completion of said first coil, moving said wire dispensing member relative to said armature so that wire pulled from said wire outlet during this step passes through a first of said coil lead termination structures on said commutator so that said wire is permanently retained by said first coil lead termination structure prior to performance of any claimed step following this step, the wire dispensing member following a second path of movement relative to said armature during this step such that the wire touches substantially only the wire dispensing member, the armature, and previously wound wire in travelling from said wire outlet to said first coil lead termination structure; and
- after completion of the immediately preceding step, repeating the two preceding steps using the same wire dispensing member an a continuous continuation of the same wire, but using different slots of said core member as said first and second slots and using different coil lead termination structures of said commutator as said first coil lead termination structure until a desired number of coils have been wound on said core member.
- 2. The method defined in claim 1 wherein said second axial end of said core member is closer to said commutator than said first axial end of said core member, and wherein said step of moving said wire dispensing member relative to said armature to wind said wire around said core member comprises the step of passing said wire outlet between said second axial end of said core member and said commutator in order to pass said wire adjacent said second axial end of said core member from said second slot back to said first slot.
- 3. The method defined in claim 1 wherein each of said lead termination structures comprises a respective tang which extends radially out from said commutator and which is inclined away from said core member in the radially outward direction, and wherein said step of moving said wire dispensing member relative to said armature to pass said wire through said first coil lead termination structure comprises the steps of:
- moving said wire dispensing member relative to said armature so that said wire outlet passes adjacent a first circumferential side of the tang of said first coil lead termination structure to a first location which is axially beyond said tang in the direction away from said core member;
- moving said wire dispensing member relative to said armature so that said wire outlet passes substantially circumferentially relative to said armature from said first location to a second location which is also axially beyond said tang in the direction away from said core member but which is adjacent a second circumferential side of said tang; and
- moving said wire dispensing member relative to said armature so that said wire outlet passes adjacent said second circumferential side of said tang in moving from said second location back toward said core member and thereby looping said wire around said tang.
- 4. The method defined in claim 1 wherein each of said lead termination structures comprises a respective radially and axially extending channel in said commutator, and wherein said step of moving said wire dispensing member relative to said armature to pass said wire through said first coil lead termination structure comprises the steps of:
- moving said wire dispensing member relative to said armature so that said wire outlet passes substantially parallel to the channel of said first coil lead termination structure to a first location which is axially beyond said channel in the direction away from said core member so that said wire passes through said channel;
- crimping a portion of the channel which is radially outside of said wire so that said wire is retained in said channel; and
- moving said wire dispensing member relative to said armature so that said wire outlet moves from said first location back toward said core member.
Parent Case Info
This is a continuation of application Ser. No. 08/139,641, filed Oct. 8, 1993, now U.S. Pat. No. 5,413,289 which was a continuation of application Ser. No. 07/738,199, filed Jul. 30, 1991, now abandoned.
US Referenced Citations (20)
Foreign Referenced Citations (4)
Number |
Date |
Country |
209624 |
Jan 1987 |
EPX |
318063 |
May 1989 |
EPX |
429766 |
Jun 1991 |
EPX |
2054676 |
Feb 1981 |
GBX |
Continuations (2)
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Number |
Date |
Country |
Parent |
139641 |
Oct 1993 |
|
Parent |
738199 |
Jul 1991 |
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