IP Library Granted Patent US 9,726,028
Granted Patent B2
US 9,726,028 · App. 13/171,699 · Granted Aug 8, 2017

Ductile alloys for sealing modular component interfaces

Inventors: John J. Marra (Winter Springs, FL); Brian J. Wessell (Orlando, FL); Allister W. James (Chuluota, FL); Jan H. Marsh (Orlando, FL); Paul J. Gear (Longwood, FL)
Assignee: SIEMENS ENERGY, INC.
F01D9/042B22D19/0072B22D19/04F01D11/006F05D2300/10F05D2300/506F05D2300/518Y10T29/49323
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Quick Facts
Patent No.
US 9,726,028
App. No.
13/171,699
Granted
Aug 8, 2017
Kind
B2
Abstract

A vane assembly ( 10 ) having: an airfoil ( 12 ) and a shroud ( 14 ) held together without metallurgical bonding there between; a channel ( 22 ) disposed circumferentially about the airfoil ( 12 ), between the airfoil ( 12 ) and the shroud ( 14 ); and a seal ( 20 ) disposed in the channel ( 22 ), wherein during operation of a turbine engine having the vane assembly ( 10 ) the seal ( 20 ) has a sufficient ductility such that a force generated on the seal ( 20 ) resulting from relative movement of the airfoil ( 12 ) and the shroud ( 14 ) is sufficient to plastically deform the seal ( 20 ).

Claims (16)

1. A vane assembly comprising:

an airfoil and a shroud held together without metallurgical bonding there between;

a channel disposed circumferentially about the airfoil, between the airfoil and the shroud;

a seal disposed in the channel, wherein during operation of a turbine engine comprising the vane assembly the seal comprises a sufficient ductility such that a force generated on the seal resulting from relative movement of the airfoil and the shroud is sufficient to plastically deform the seal; and

wherein the shroud is monolithic, the vane assembly further comprising interlocking features of the airfoil and the shroud that hold the airfoil and the shroud together.

2. The vane assembly of claim 1 , wherein the airfoil and the shroud comprise sufficient structural integrity to operate without the seal.

3. The vane assembly of claim 1 , wherein the relative movement causes seal material to move from an area of decreased channel volume to an area of increased channel volume.

4. The vane assembly of claim 1 , wherein the channel is formed in only one of the airfoil or the shroud.

5. The vane assembly of claim 1 , wherein the channel comprises a groove in the airfoil and an associated groove in the shroud.

6. The vane assembly of claim 1 , wherein the channel spans less than an entire perimeter of the airfoil.

7. The vane assembly of claim 6 , wherein an ungrooved area of the airfoil between ends of the channel is disposed on a suction side of the airfoil.

8. The vane assembly of claim 1 , wherein the seal comprises a seal material comprising a Young's modulus of no more than approximately 220 GPa (20 million psi) at 800° C.

9. The vane assembly of claim 1 , wherein the seal comprises a seal material comprising a creep rate of no less than 0.001 s−1 at a temperature of 800° C. with an applied stress of 500 MPa.

10. The vane assembly of claim 1 , wherein the seal comprises a seal material comprising a melting temperature not greater than twice an operating temperature of the seal.

11. The vane assembly of claim 10 , wherein the seal operating temperature is 500° C.±100° C.

12. The vane assembly of claim 1 , wherein the seal comprises aluminum, aluminum alloys, tin, tin alloys, pure nickel, bronze, or brass.

Assignments (2)
CONFIRMATORY LICENSE Recorded Mar 2, 2015
From: SIEMENS ENERGY, INC.
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 035198/0675 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 29, 2011
From: MARRA, JOHN J.; WESSELL, BRIAN J.; JAMES, ALLISTER W.; MARSH, JAN H.; GEAR, PAUL J.
To: SIEMENS ENERGY, INC.
Reel/Frame 026519/0766 →
Continuity (1)
Related Publication 20130004294A1 · Jan 3, 2013