IP Library › Granted Patent US 10,519,796
Granted Patent B2
US 10,519,796 · App. 15/022,227 · Granted Dec 31, 2019

Variable area turbine vane row assembly

Inventor: Eric A. Grover (Tolland, CT)
Assignee: UNITED TECHNOLOGIES CORPORATION
F01D17/162F01D9/041F05D2220/32F05D2240/123F05D2240/124F05D2250/73
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Quick Facts
Patent No.
US 10,519,796
App. No.
15/022,227
Granted
Dec 31, 2019
Kind
B2
Abstract

The present disclosure relates generally to a variable area turbine vane row assembly. In an embodiment, the variable area turbine vane row assembly includes rotatable vanes that are circumferentially biased and/or axially biased with respect to adjacent fixed vanes. In another embodiment, the variable area turbine vane row assembly includes multiple rotatable vanes positioned between adjacent fixed vanes, which may optionally be circumferentially biased and/or axially biased with respect to each other as well as to the adjacent fixed vanes.

Claims (16)

1. A variable area turbine vane row assembly, comprising:

a first fixed vane located in a first circumferential vane row organized circumferentially around a rotational axis of a gas turbine engine;

a second fixed vane located in the first circumferential vane row, the second fixed vane being proximate the first fixed vane; and

a plurality of rotatable vanes located in the first circumferential vane row, the plurality of rotatable vanes being positioned between the first fixed vane and the second fixed vane;

wherein no other fixed vanes are positioned between the first fixed vane and the second fixed vane within the first circumferential vane row, and

wherein the first fixed vane, the second fixed vane, and the plurality of rotatable vanes form a segment of the first circumferential vane row.

2. The variable area turbine vane row assembly of claim 1 , wherein the plurality of rotatable vanes comprises three rotatable vanes.

3. The variable area turbine vane row assembly of claim 1 , wherein the plurality of rotatable vanes comprises a first rotatable vane and a second rotatable vane.

4. The variable area turbine vane row assembly of claim 3 , wherein the first rotatable vane is asymmetrically positioned within the first circumferential van row between the first fixed vane and the second rotatable vane in at least one of a circumferential direction as measured circumferentially around the rotational axis of the gas turbine engine and an axial direction as measured axially along the rotational axis of the gas turbine engine.

5. The variable area turbine vane row assembly of claim 4 , wherein the first rotatable vane is circumferentially biased toward the first fixed vane in the circumferential direction as measured circumferentially around the rotational axis of the gas turbine engine within the first circumferential vane row.

6. The variable area turbine vane row assembly of claim 5 , wherein the first rotatable vane is circumferentially biased toward a suction side of the first fixed vane in the circumferential direction as measured circumferentially around the rotational axis of the gas turbine engine within the first circumferential vane row.

7. The variable area turbine vane row assembly of claim 5 , wherein the first rotatable vane is circumferentially biased toward a pressure side of the first fixed vane in the circumferential direction as measured circumferentially around the rotational axis of the gas turbine engine within the first circumferential vane row.

8. The variable area turbine vane row assembly of claim 3 , wherein the first rotatable vane is axially biased in aft design direction with respect to the first fixed vane and the second fixed vane in the axial direction as measured axially along the rotational axis of the gas turbine engine within the first circumferential vane row.

9. The variable area turbine vane row assembly of claim 3 , wherein the first rotatable vane is axially biased in a forward design direction with respect to the first fixed vane and the second fixed vane in the axial direction as measured axially along the rotational axis of the gas turbine engine within the first circumferential vane row.

10. The variable area turbine vane row assembly of claim 3 , wherein the first rotatable vane is both circumferentially biased toward the first fixed vane in the circumferential direction as measured circumferentially around the rotational axis of the gas turbine engine within the first circumferential vane row and axially biased in a forward design direction with respect to the first fixed vane and the second fixed vane in the axial direction as measured axially along the rotational axis of the gas turbine engine within the first circumferential vane row.

11. The variable area turbine vane row assembly of claim 3 , wherein the first rotatable vane is both circumferentially biased toward the first fixed vane in the circumferential direction as measured circumferentially around the rotational axis of the gas turbine engine within the first circumferential vane row and axially biased in an aft design direction with respect to the first fixed vane and the second fixed vane in the axial direction as measured axially along the rotational axis of the gas turbine engine within the first circumferential vane row.

Assignments (4)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064714/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE AND REMOVE PATENT APPLICATION NUMBER 11886281 AND ADD PATENT APPLICATION NUMBER 14846874. TO CORRECT THE RECEIVING PARTY ADDRESS PREVIOUSLY RECORDED AT REEL: 054062 FRAME: 0001. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF ADDRESS. Recorded Mar 4, 2021
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 055659/0001 →
CHANGE OF NAME Recorded Sep 4, 2020
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 054062/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2016
From: GROVER, ERIC A.
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 038084/0024 →
Continuity (2)
Provisional Application 61878458 · Sep 16, 2013
Related Publication 20160230584A1 · Aug 11, 2016