Claims
- 1. An alternator comprising:
a frame; a field coil supported fixedly to the frame; a pair of pole cores each having a plurality of nail parts, respectively; a non-magnetic ring coupling the nail parts adjacent to each other in a rotation direction of the pole cores; and a plurality of permanent magnets interposed between the nail parts and fixed to the non-magnetic ring.
- 2. The alternator as in claim 1, wherein at least one of the non-magnetic ring and each of the permanent magnets has a slit groove at a location of engagement therebetween.
- 3. The alternator as in claim 1, wherein each of the permanent magnets is pressed by adjacent two of the nail parts and the non-magnetic ring.
- 4. The alternator as in claim 3, wherein a spacing between side faces of the adjacent two of the nail parts is decreased from a radially inner side to a radially outer side of each of the pole cores.
- 5. The alternator as in claim 1, wherein one of the pole cores has a cylindrical part and the nail parts extend from the cylindrical part in an axial direction, and wherein the pole cores are assembled to each other in an axially pressed condition.
- 6. The alternator as in claim 1, wherein the permanent magnets are selected among a plurality types having different magnetic forces.
- 7. The alternator as in claim 1, wherein each of the permanent magnets is made of a resinous soft magnetic material.
- 8. The alternator as in claim 2, wherein the non-magnetic ring has the slit grooves at a radially inner side thereof and the permanent magnets have the slit grooves at a radially outer side thereof, and wherein the permanent magnets are arranged radially inside the non-magnetic ring.
- 9. The alternator as in claim 3, wherein the permanent magnets are arranged radially outside the non-magnetic ring.
- 10. A method of manufacturing the alternator as in claim 1 comprising steps of:
fixing the permanent magnets to the non-magnetic ring; assembling a fixed unit of the permanent magnets and the non-magnetic ring to one of the pole cores in an axial direction; and assembling another one of the pole cores to the one of the pole cores in the axial direction.
- 11. An alternator comprising:
a frame; a pair of pole cores supported rotatably in the frame and having a plurality of nail parts, respectively; a non-magnetic ring coupling the nail parts adjacent to each other in a rotation direction of the pole cores; and a plurality of permanent magnets interposed between the nail parts and fixed to the non-magnetic ring, wherein the non-magnetic ring and each of the permanent magnets have respective slit grooves which engage with each other.
- 12. An alternator comprising:
a frame; a pair of pole cores supported rotatably in the frame having a plurality of nail parts, respectively; a non-magnetic ring coupling the nail parts adjacent to each other in a rotation direction of the pole cores; and a plurality of permanent magnets interposed between the nail parts and fixed to the non-magnetic ring, wherein each of the permanent magnets is pressed by adjacent two of the nail parts and the non-magnetic ring.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2000-337842 |
Nov 2000 |
JP |
|
2001-161893 |
May 2001 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is based on and incorporates herein by reference Japanese Patent Applications No. 2000-337842 filed on Nov. 6, 2000 and No. 2001-161893 filed on May 30, 2001.