Method of manufacturing rotary electric machine
A coil strand is wound on an insulator to produce a divided core member, and then the divided core member is placed on a table. While the table rotates about its axis, ends of the coil strands are inserted into lead end holding grooves, which are defined in a surface of the insulator on an outer circumferential edge of a stator and which extend along a circumferential direction of the stator.
1. A method of manufacturing a rotary electric machine, which incorporates a stator including a stator core having an annular assembly of plural divided core members, comprising the steps of:
(a) winding a coil strand on an insulator that surrounds a portion of a divided iron core, thereby producing a divided core member;
(b) placing the divided core member on a table; and
(c) while the table rotates about its axis, inserting ends of the coil strands into lead end holding grooves, the leading end holding grooves are defined in a surface of the insulator on an outer circumferential edge of the stator and extend along a circumferential direction of the stator.
2. The method according to claim 1 , wherein at least step (b) and step (c) are repeated.
3. The method according to claim 1 , wherein the ends of the coil strand are temporarily wound around respective pulleys.
4. The method according to claim 3 , further comprising the step of:
(d) after pulling the ends of the coil strand to a region at which terminals of the rotary electric machine are located, severing portions of the ends of the coil strand, which extend between the lead end holding grooves and the pulleys.
5. The method according to claim 4 , wherein steps (b), (c) and (d) are repeatedly performed in an order from a divided core member nearest to the region at which the terminals of the rotary electric machine are located, thereby placing the plural divided core members in an annular pattern.
6. The method according to claim 5 , further comprising the steps of:
(e) when a last divided core member is placed in a second region remote from the region at which the terminals of the rotary electric machine are located, spacing two of the divided core members adjacent to the second region away from each other, and placing a last divided core member in the second region; and
(f) bringing the two divided core members adjacent to the second region toward the last divided core member, which has been placed in the second region, thereby joining the last divided core member and the two divided core members to each other.