Claims
- 1. A method for facilitating a fabrication of a high temperature superconducting electrical machine, said method comprising the steps of:
fabricating a back iron; attaching a plurality of non-magnetic teeth to the back iron; and installing the back iron in the machine.
- 2. A method according to claim 1 wherein said step of fabricating a back iron further comprises the step of fabricating a back iron having a plurality of tooth slots, said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching a back section of each tooth to a tooth slot.
- 3. A method according to claim 1 wherein said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching a plurality of non-magnetic teeth to the back iron with at least one key.
- 4. A method according to claim 3 wherein said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching a plurality of non-magnetic teeth to the back iron with an adhesive.
- 5. A method according to claim 1 wherein said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching a plurality of non-magnetic teeth comprising at least one of a glass laminate, a carbon fiber, and a fiber polymer to the back iron with at least one key.
- 6. A method according to claim 1 wherein said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching at least one non-magnetic tooth including at least one embedded conductor.
- 7. A method for fabricating a stator with non-magnetic teeth, said method comprises the steps of:
fabricating a back iron; and attaching a non-magnetic tooth back portion to the back iron.
- 8. A method according to claim 7 wherein said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching a substantially circular back portion unitary with the plurality of non-magnetic teeth to the back iron.
- 9. A method according to claim 8 wherein said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching a substantially circular back portion unitary with the plurality of non-magnetic teeth to the back iron with a key.
- 10. A method according to claim 7 wherein said step of attaching a plurality of non-magnetic teeth further comprises the step of attaching a plurality of non-magnetic teeth comprising at least one of a glass laminate, a carbon fiber, and a fiber polymer to the back iron.
- 11. A method according to claim 7 wherein said step of attaching a non-magnetic tooth back portion further comprises the step of attaching a non-magnetic tooth back portion including at least one embedded conductor to the back iron.
- 12. A stator comprising:
a back iron; and a plurality of non-magnetic teeth unitary with a back portion, said back portion mounted on said back iron.
- 13. A stator according to claim 12 wherein said back portion is substantially circular.
- 14. A stator according to claim 13 further comprising at least one key extending from said back portion.
- 15. A stator according to claim 12 wherein said back portion is mounted on said back iron with a key.
- 16. A stator according to claim 12 wherein said non-magnetic teeth comprise at least one of a glass laminate, a carbon fiber, and a fiber polymer.
- 17. A stator according to claim 16 wherein at least one of said non-magnetic teeth comprises at least one embedded conductor.
- 18. A dynamoelectric machine comprising:
a housing; a stator comprising a bore therethrough mounted in said housing, said stator comprising a back iron and a plurality of non-magnetic teeth unitary with a back portion, said back portion mounted to said back iron; a plurality of armature windings mounted on said teeth; and a rotor rotatably mounted in said bore, said rotor comprising a plurality of field windings.
- 19. A machine according to claim 18 wherein said back section is substantially circular.
- 20. A machine according to claim 18 wherein said field windings are superconducting field windings.
- 21. A machine according to claim 20 further comprising:
a rotor jacket surrounding said field windings; and a vacuum pump in flow communication with an interior of said rotor jacket.
- 22. A machine according to claim 21 further comprising a cryogenic cooler coupled to said rotor shaft.
- 23. A machine according to claim 18 wherein said field windings configured for synchronous operation with said armature windings.
- 24. A machine according to claim 18 wherein said back portion keyed to said back iron.
- 25. A machine according to claim 24 wherein said back portion adhesively bonded to said back iron.
- 26. A machine according to claim 18 wherein said non-magnetic teeth comprise at least one of a glass laminate, a fiber polymer, and a carbon fiber.
- 27. A machine according to claim 18 wherein at least one of said non-magnetic teeth comprise at least one conductor.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/199,424, filed Apr. 25, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60199424 |
Apr 2000 |
US |