Claims
- 1. A high-pressure liquid propellant duct formed by the process of:
synthesizing a nanophase aluminum alloy to form a nanophase aluminum alloy billet; extruding the nanophase aluminum alloy billet into an extruded billet having a predetermined geometrical shape; and bending the extruded billet into a profile to form the high-pressure liquid duct.
- 2. The high-pressure liquid propellant duct of claim 1 further comprising a process step of flow forming the extruded billet before bending the extruded billet.
- 3. The high-pressure liquid propellant duct of claim 1, wherein the nanophase aluminum alloy is synthesized by a process of:
cryogenic milling the nanophase aluminum alloy; out-gassing the nanophase aluminum alloy; and hot isostatic pressing the nanophase aluminum alloy to form the nanophase aluminum alloy billet.
- 4. The high-pressure liquid propellant duct of claim 1, wherein extruding the nanophase aluminum alloy billet further comprises a process of:
machining a center hole through the nanophase aluminum alloy billet; securing an internal sleeve within the center hole; positioning a leader at one end of the nanophase aluminum alloy billet; positioning a follower at another end of the nanophase aluminum alloy billet; securing an extrusion mandrel within the internal sleeve, the leader, the billet, and the follower; and placing an extrusion jacket over the nanophase aluminum alloy billet, the leader, and the follower, wherein the nanophase aluminum alloy billet, the leader, the follower, the extrusion jacket, and the internal sleeve are extruded through an extrusion die.
- 5. The high-pressure liquid propellant duct of claim 4, wherein the extrusion jacket is copper.
- 6. The high-pressure liquid propellant duct of claim 4, wherein the internal sleeve is copper.
- 7. The high-pressure liquid propellant duct of claim 4, wherein the leader and follower are aluminum.
- 8. The high-pressure liquid propellant duct of claim 1, wherein the nanophase aluminum alloy billet is extruded at an area reduction ratio of approximately 20:1.
- 9-14. Cancelled
- 15. A duct assembly comprising:
a high-pressure liquid propellant duct formed from a nanophase aluminum alloy, and a high-pressure liquid ducting flange formed from a ceramic particulate in a metal matrix, wherein the high-pressure liquid propellant duct and the high-pressure liquid ducting flange are joined by solid-state friction welding.
- 16. The duct assembly of claim 15, wherein the solid-state friction welding further comprises inertia welding.
- 17. The duct assembly of claim 15, wherein the solid-state friction welding further comprises friction stir welding.
- 18. The duct assembly of claim 15, wherein the solid-state friction welding further comprises a combination of inertia welding and friction stir welding.
- 19. The duct assembly of claim 15 further comprising a collar disposed around the high-pressure liquid propellant duct and the high-pressure liquid ducting flange.
- 20. The duct assembly of claim 19, wherein the collar is welded to the high-pressure liquid propellant duct and the high-pressure liquid ducting flange.
- 21-49. Cancelled
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of U.S. patent application Ser. No. 09/945,280 filed on Aug. 31, 2001, presently pending.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09945280 |
Aug 2001 |
US |
Child |
10352307 |
Jan 2003 |
US |