Claims
- 1. A high speed generator, comprising:
a stator; and a rotor rotationally mounted within the stator, the rotor including:
a shaft, at least a first and a second pole, each pole extending radially outwardly from the shaft and spaced apart from one another to form an interpole region therebetween, and a coil support wedge positioned in the interpole region, the support wedge including:
an integrally formed, longitudinally extending main body having at least a first end, a second end, and an outer surface, a first fluid passageway having an inlet port formed in the support wedge first end and an outlet port formed in the support wedge second end, a second fluid passageway having an inlet port formed in the support wedge second end and an outlet port formed in the support wedge first end, the second fluid passageway inlet port in fluid communication with the first fluid passageway outlet port, a third fluid passageway having an inlet port formed in the support wedge first end and extending at least partially into the support wedge to an end, and a fourth fluid passageway having an outlet port formed in the support wedge first end and extending at least partially into the support wedge to an end, the end of the fourth fluid passageway in fluid communication with the end of the third fluid passageway.
- 2. The generator of claim 1, further comprising:
an end plug sealingly coupled to the support wedge second end, whereby the first fluid passageway outlet port and the second fluid passageway inlet port are sealed from an environment external to the support wedge.
- 3. The generator of claim 1, further comprising:
a flow channel coupling the ends of the third and fourth fluid passageways in fluid communication with one another.
- 4. The generator of claim 3, wherein the flow channel comprises an orifice formed through the wedge outer surface.
- 5. The generator of claim 4, further comprising:
an orifice plug sealingly coupled in the orifice.
- 6. The generator of claim 1, further comprising:
a manifold integrally formed on the support wedge first end, the manifold including:
a fifth fluid passageway having an inlet formed in a first surface of the manifold and an outlet port in fluid communication with the first fluid passageway; and a sixth fluid passageway having an inlet formed in the first surface of the manifold and an outlet in fluid communication with the fourth fluid passageway.
- 7. The generator of claim 6, wherein the fifth and sixth fluid passageways are configured substantially perpendicular to the first and fourth fluid passageways, respectively.
- 8. The generator of claim 6, further comprising:
an end plate coupled to a second surface of the manifold and sealingly covering at least the first and third fluid passageway inlet ports and the second and fourth fluid passageway outlet ports.
- 9. The generator of claim 8, further comprising:
a slot formed in the second surface of the manifold, wherein the slot is configured to couple the second fluid passageway outlet port in fluid communication with the third fluid passageway inlet port when the end plate is coupled to the second surface.
- 10. The generator of claim 1, further comprising:
at least two flow orifices formed in the shaft; a first tube having a first end inserted in the first fluid passageway inlet port and a second end inserted in one of the flow orifices; and a second tube having a first end inserted in the fourth fluid passageway outlet port and a second end inserted in another one of the flow orifices.
- 11. A rotor for use in a high speed generator, comprising:
a shaft; at least a first and a second pole, each pole extending radially outwardly from the shaft and spaced apart from one another to form an interpole region therebetween; and
a coil support wedge positioned in the interpole region, the support wedge including:
an integrally formed, longitudinally extending main body having at least a first end, a second end, and an outer surface, a first fluid passageway having an inlet port formed in the support wedge first end and an outlet port formed in the support wedge second end, a second fluid passageway having an inlet port formed in the support wedge second end and an outlet port formed in the support wedge first end, the second fluid passageway inlet port in fluid communication with the first fluid passageway outlet port, a third fluid passageway having an inlet port formed in the support wedge first end and extending at least partially into the support wedge to an end, and a fourth fluid passageway having an outlet port formed in the support wedge first end and extending at least partially into the support wedge to an end, the end of the fourth fluid passageway in fluid communication with the end of the third fluid passageway.
- 12. The rotor of claim 11, further comprising:
an end plug sealingly coupled to the support wedge second end, whereby the first fluid passageway outlet port and the second fluid passageway inlet port are sealed from an environment external to the support wedge.
- 13. The rotor of claim 12, further comprising:
a flow channel coupling the ends of the third and fourth fluid passageways in fluid communication with one another.
- 14. The rotor of claim 13, wherein the flow channel comprises an orifice formed through the wedge outer surface.
- 15. The rotor of claim 14, further comprising:
an orifice plug sealingly coupled in the orifice.
- 16. The rotor of claim 11, further comprising:
a manifold integrally formed on the support wedge first end, the manifold including:
a fifth fluid passageway having an inlet formed in a first surface of the manifold and an outlet port in fluid communication with the first fluid passageway; and a sixth fluid passageway having an inlet formed in the first surface of the manifold and an outlet in fluid communication with the fourth fluid passageway.
- 17. The rotor of claim 16, wherein the fifth and sixth fluid passageways are configured substantially perpendicular to the first and fourth fluid passageways, respectively.
- 18. The rotor of claim 17, further comprising:
an end plate coupled to a second surface of the manifold and sealingly covering at least the first and third fluid passageway inlet ports and the second and fourth fluid passageway outlet ports.
- 19. The rotor of claim 18, further comprising:
a slot formed in the second surface of the manifold, wherein the slot is configured to couple the second fluid passageway outlet port in fluid communication with the third fluid passageway inlet port when the end plate is coupled to the second surface.
- 20. The rotor of claim 11, further comprising:
at least two flow orifices formed in the shaft; a first tube having a first end inserted in the first fluid passageway inlet port and a second end inserted in one of the flow orifices; and a second tube having a first end inserted in the fourth fluid passageway outlet port and a second end inserted in another one of the flow orifices.
- 21. An interpole coil support wedge for placement in an interpole region that is formed between adjacent poles of a rotor assembly, comprising:
an integrally formed, longitudinally extending main body having at least a first end, a second end, and an outer surface; a first fluid passageway having an inlet port formed in the support wedge first end and an outlet port formed in the support wedge second end; a second fluid passageway having an inlet port formed in the support wedge second end and an outlet port formed in the support wedge first end, the second fluid passageway inlet port in fluid communication with the first fluid passageway outlet port; a third fluid passageway having an inlet port formed in the support wedge first end and extending at least partially into the support wedge to an end; and a fourth fluid passageway having an outlet port formed in the support wedge first end and extending at least partially into the support wedge to an end, the end of the fourth fluid passageway in fluid communication with the end of the third fluid passageway.
- 22. The support wedge of claim 21, further comprising:
an end plug sealingly coupled to the support wedge second end, whereby the first fluid passageway outlet port and the second fluid passageway inlet port are sealed from an environment external to the support wedge.
- 23. The support wedge of claim 21, further comprising:
a flow channel coupling the ends of the third and fourth fluid passageways in fluid communication with one another.
- 24. The support wedge of claim 23, wherein the flow channel comprises an orifice formed through the wedge outer surface.
- 25. The support wedge of claim 24, further comprising:
an orifice plug sealingly coupled in the orifice.
- 26. The support wedge of claim 21, further comprising:
a manifold integrally formed on the support wedge first end, the manifold including:
a fifth fluid passageway having an inlet formed in a first surface of the manifold and an outlet port in fluid communication with the first fluid passageway; and a sixth fluid passageway having an inlet formed in the first surface of the manifold and an outlet in fluid communication with the fourth fluid passageway.
- 27. The support wedge of claim 26, wherein the fifth and sixth fluid passageways are configured substantially perpendicular to the first and fourth fluid passageways, respectively.
- 28. The support wedge of claim 26, further comprising:
an end plate coupled to a second surface of the manifold and sealingly covering at least the first and third fluid passageway inlet ports and the second and fourth fluid passageway outlet ports.
- 29. The support wedge of claim 28, further comprising:
a slot formed in the second surface of the manifold, wherein the slot is configured to couple the second fluid passageway outlet port in fluid communication with the third fluid passageway inlet port when the end plate is coupled to the second surface.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0001] This invention was made with Government support under Agreement No. MDA972-94-2-0003 awarded by ARPA. The Government may have certain rights in this invention.