Claims
- 1. A sealing device having a general arc-shape for use between a gas turbine combustor transition duct aft frame and a turbine inlet, said sealing device comprising:a first end; a second end; a centerpoint positioned along said arc-shaped sealing device equidistant between said first and second ends; a plurality of mounting tabs, each of said mounting tabs having a first surface, a second surface, thereby defining a seal thickness there between, and a plurality of mounting holes; a first fold having a first radius R1 and connected to said mounting tabs; a plurality of flexible corrugations fixed to said first fold, each of said corrugations having two generally parallel walls of length L2, each of said walls having at least a feed hole and said walls are interconnected by a second fold, said second fold having a second radius R2; a sealing member fixed to one of said corrugations opposite said first fold and having a third radius R3, a third surface, a fourth surface, a plurality of sealing points located along said fourth surface, and a plurality of cooling holes; a seal length; a first coating applied to said first surface of said mounting tabs, said first coating consisting essentially of a primarily Aluminum-Bronze based composition; and a second coating applied to said second folds and said fourth surface of said sealing member as a wear material, said second coating is selected from a group comprising Titanium Aluminum Nitride, Aluminum Titanium Nitride, Titanium Nitride, Stellite 31, and Stellite 694.
- 2. The sealing device of claim 1 wherein said first coating is applied by cathodic arc deposition.
- 3. The sealing device of claim 1 wherein said sealing device is fabricated from Inconnel 718.
- 4. The sealing device of claim 1 wherein said seal thickness is at least 0.015 inches.
- 5. The sealing device of claim 1 wherein each mounting hole in said mounting tabs has a diameter of at least 0.500 inches.
- 6. The sealing device of claim 1 wherein said first radius R1 of said first fold is at least 0.150 inches.
- 7. The sealing device of claim 1 wherein said corrugations have a length L2 of at least 0.500 inches and a second radius R2 of said second fold of at least 0.062 inches.
- 8. The sealing device of claim 1 wherein said at least one feed hole has a diameter of at least 0.250 inches.
- 9. The sealing device of claim 1 wherein said third radius R3 of said sealing member is at least 0.350 inches.
- 10. The sealing device of claim 1 wherein said plurality of cooling holes of said sealing member have an equal diameter of at least 0.100 inches.
- 11. The sealing device of claim 1 wherein said cooling holes of said sealing member have a varying diameter wherein the smallest cooling hole diameter is proximate said first and second ends and the largest cooling hole diameter is proximate said centerpoint of said arc-shaped seal.
- 12. The sealing device of claim 1 wherein said first coating application is applied to said first surface at least 0.003 inches thick.
- 13. The sealing device of claim 1 wherein said second coating application is applied to said second folds and said fourth surface at a thickness greater than 0.000 inches but less than 0.002 inches.
- 14. The sealing device of claim 1 wherein said second folds and said fourth surface further include an Aluminum Bronze based overcoating applied at least 0.0003 inches thick over a second coating consisting of either Titanium Aluminum Nitride, Aluminum Titanium Nitride, or Titanium Nitride.
Parent Case Info
This application is a continuation-in-part of U.S. patent application Ser. No. 10/064,768, filed Aug. 15, 2002 now U.S. Pat. No. 6,675,584 and assigned to the same assignee hereof.
US Referenced Citations (12)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10/064768 |
Aug 2002 |
US |
Child |
10/295481 |
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US |