IP Library › Granted Patent US 11,333,041
Granted Patent B2
US 11,333,041 · App. 17/083,565 · Granted May 17, 2022

Turbine nozzle having an angled inner band flange

Inventors: Michal Czarnecki (Mazowieckie, PL); Michal Kowalczyk (Mazowieckie, PL); Adam Krysztopa (Mazowieckie, PL); Piotr Pachota (Mazowieckie, PL)
Assignee: General Electric Company Polska Sp. Z o.o.
F01D25/243F01D9/041F01D11/001F01D11/005F01D11/006F05D2220/323F05D2230/60F05D2240/128F05D2240/55F05D2240/80F05D2250/232F05D2250/314
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Quick Facts
Patent No.
US 11,333,041
App. No.
17/083,565
Granted
May 17, 2022
Kind
B2
Abstract

An inner band assembly for at turbine nozzle of a rotary machine that includes a centerline axis, the inner band assembly comprising a platform portion, a first flange portion coupled to the platform portion and obliquely oriented with respect to the centerline axis, and a second flange coupled to the first flange and obliquely oriented with respect to the first flange. Wherein the platform portion and the first flange intersect.

Claims (36)

1. An inner band assembly for a turbine nozzle of a rotary machine that includes a centerline axis, the inner band assembly comprising:

a platform portion;

a first flange coupled to and extending from the platform portion wherein the first flange is obliquely oriented with respect to the centerline axis; and

a second flange coupled to the first flange wherein the second flange is obliquely oriented with respect to the first flange;

wherein the platform portion and the first flange intersect at a point that is axially aligned with a throat location that is at least partially defined by the turbine nozzle, and wherein at least a portion of the first flange is spaced from the platform portion to define a cavity between at least a portion of the first flange and the platform portion.

2. The inner band assembly of claim 1 wherein at least a portion of the platform portion extends in an axial direction, and wherein at least a portion of the second flange extends in a radial direction.

3. The inner band assembly of claim 2 wherein the first flange is obliquely oriented with respect to the platform portion.

4. The inner band assembly of claim 1 wherein the first flange comprises:

a first end coupled to the platform portion;

a second end coupled to the second flange;

a forward surface extending between the first end and the second end; and

an aft surface extending between the first end and the second end wherein the forward surface and the aft surface define a thickness therebetween wherein the thickness of the first flange is constant between the first end and the second end.

5. The inner band assembly of claim 1 wherein the platform portion includes a platform seal slot including a first end and a second end, and wherein the first flange includes flange seal slot that intersects the platform seal slot wherein the flange seal slot is obliquely oriented with respect to the platform seal slot.

6. The inner band assembly of claim 5 wherein the flange seal slot intersects the platform seal slot at the throat location at least partially defined by the turbine nozzle.

7. The inner band assembly of claim 5 wherein the flange seal slot extends into the second flange.

8. The inner band assembly of claim 7 wherein the second flange includes a forward surface, and wherein the flange seal slot is at least partially defined in the forward surface.

9. The inner band assembly of claim 1 wherein the second flange is oriented perpendicular to the centerline axis.

10. A turbine nozzle for a rotary machine including a centerline axis, the turbine nozzle comprising:

an airfoil comprising a leading edge and a trailing edge wherein the airfoil defines a throat location proximate to the trailing edge; and

an inner band assembly comprising:

a platform portion coupled to the airfoil; and

a first flange coupled to and extending from the platform portion wherein the first flange is obliquely oriented with respect to the platform portion;

wherein the platform portion and the first flange intersect at a point axially aligned with the throat location, and wherein at least a portion of the first flange is spaced from the platform portion to define a cavity between at least a portion of the first flange and the platform portion.

11. The turbine nozzle of claim 10 wherein the first flange is obliquely oriented with respect to the centerline axis.

12. The turbine nozzle of claim 10 , further comprising a second flange coupled to the first flange wherein the second flange is obliquely oriented with respect to the first flange.

13. The turbine nozzle of claim 12 wherein at least a portion of the platform portion extends in an axial direction, and wherein at least a portion of the second flange extends in a radial direction.

14. The turbine nozzle of claim 12 wherein the first flange is positioned radially inward of the platform portion and wherein the second flange is positioned radially inward of the first flange.

15. The turbine nozzle of claim 12 wherein the second flange is axially offset from the throat location.

16. The turbine nozzle of claim 10 wherein the platform portion includes a platform seal slot including a first end and a second end, wherein the first flange includes flange seal slot that intersects the platform seal slot, wherein the flange seal slot is obliquely oriented with respect to the platform seal slot, and wherein the flange seal slot intersects the platform seal slot at the throat location.

17. The turbine nozzle of claim 10 wherein the platform portion includes a platform seal slot including a first end and a second end, wherein the first flange includes flange seal slot that intersects the platform seal slot, wherein the flange seal slot is obliquely oriented with respect to the platform seal slot, wherein the flange seal slot extends into the second flange, wherein the second flange includes a forward surface, and wherein the flange seal slot is at least partially defined in the forward surface.

18. A method of manufacturing a turbine nozzle for a rotary machine including a centerline axis, the method comprising:

coupling an airfoil to a platform portion of an inner band assembly;

coupling a first flange of the inner band assembly to the platform portion such that the first flange is obliquely oriented with respect to the centerline axis and extends from the platform portion, and such that the first flange and the platform portion intersect at a throat location at least partially defined by the airfoil, wherein at least a portion of the first flange is spaced from the platform portion to define a cavity between at least a portion of the first flange and the platform portion; and

coupling a second flange of the inner band assembly to the first flange such that the second flange is obliquely oriented with respect to the first flange.

19. The method of claim 18 wherein coupling the first flange to the platform portion comprises coupling the first flange to the platform portion such that the first flange is obliquely oriented with respect to the platform portion.

20. The method of claim 18 wherein coupling the airfoil to the platform portion comprises coupling the airfoil to the platform portion such that at least a portion of the platform portion extends in an axial direction, and wherein coupling the second flange to the first flange comprises coupling the second flange to the first flange such that at least a portion of the second flange extends in a substantially radial direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2020
From: CZARNECKI, MICHAL; KOWALCZYK, MICHAL; KRYSZTOPA, ADAM; PACHOTA, PIOTR
To: GENERAL ELECTRIC COMPANY POLSKA SP. Z O. O.
Reel/Frame 054209/0055 →
Priority Claims (1)
EP 174616045 · Sep 15, 2017 · regional
Continuity (2)
Continuation 16057908 · Aug 8, 2018
Related Publication 20210040866A1 · Feb 11, 2021
Cited By (1)
US 12,442,309