IP Library Patent Application 18352945
Patent Application
App. No. 18/352,945

Localized Rework Using Powder be Fusion Generated Segments

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Quick Facts
Patent No.
US None
App. No.
18/352,945
Filed
Jul 14, 2023
Art Unit
2852
USPC
73/760
Abstract

A method for repairing a stator stage is disclosed herein. The method includes receiving a stator stage including a plurality of stator vanes disposed between an outer diameter and an inner diameter, analyzing the stator stage for defects, determining there is a first defect in a first segment of a the stator stage, the first segment including at least one of a first portion of the outer diameter, a first portion of the inner diameter, or a first stator vane, removing the first segment from the stator stage forming a void in the stator stage, manufacturing a second segment that is the same size as the first segment, attaching the second segment to the stator stage to fill the void, performing a blending process on the stator stage including the second segment to smooth the plurality of stator vanes including the second stator vane.

Claims (39)

1 . A method comprising:

receiving a stator stage including a plurality of stator vanes disposed between an outer diameter and an inner diameter;

analyzing the stator stage for defects;

determining, based on the analysis, that there is a first defect in a first segment of the stator stage, the first segment including at least one of a first portion of the outer diameter, a first portion of the inner diameter, or a first stator vane;

removing the first segment from the stator stage forming a void in the stator stage;

manufacturing a second segment including at least one of a second portion of the outer diameter, a second portion of the inner diameter, or a second stator vane, the second segment being the same size as the first segment;

attaching the second segment to the stator stage to fill the void;

performing a blending process on the stator stage including the second segment to smooth the plurality of stator vanes including the second stator vane.

2 . The method of claim 1 , wherein the analysis identifies defects on a surface of the stator stage and below the surface of the stator stage.

3 . The method of claim 2 , wherein the analysis further includes using a heat map to identify locations of the stator stage with a higher probability of having a defect.

4 . The method of claim 1 , wherein the first defect is disposed between a leading edge of the first stator vane and a trailing edge of the first stator vane, is disposed on the first portion of the outer diameter, or is disposed on the first portion of the inner diameter.

5 . The method of claim 1 , wherein the first segment has a first size and shape and the second segment has the first size and shape.

6 . The method of claim 1 , wherein the void is defined a first edge of the outer diameter and a second edge of the outer diameter and a first edge of the inner diameter and a second edge of the inner diameter.

7 . The method of claim 6 , wherein the attaching the second segment includes attaching the first edge of the outer diameter and the second edge of the outer diameter to the second portion of the outer diameter and attaching the first edge of the inner diameter and the second edge of the inner diameter to the second portion of the inner diameter.

8 . The method of claim 1 , wherein the first segment further includes a third stator vane adjacent the first stator vane.

9 . The method of claim 1 , wherein the manufacturing the second segment includes using an additive manufacturing process.

10 . The method of claim 9 , wherein the additive manufacturing process is a powder bed fusion process.

11 . A method of repairing a stator stage for use with a turbine engine, comprising:

receiving the stator stage including a plurality of stator vanes disposed between an outer diameter and an inner diameter, the stator stage having a first defect identified on a first segment of the stator stage, the first segment including a first portion of the outer diameter, a first portion of the inner diameter, and a first stator vane;

removing the first segment from the stator stage forming a void in the stator stage, the void defined by a first edge of the outer diameter and an opposing second edge of the outer diameter and a first edge of the inner diameter and an opposing second edge of the inner diameter;

manufacturing a second segment including a second portion of a second outer diameter, a second portion of a second inner diameter, and a second stator vane; and

attaching the second segment to the stator stage to fill the void, including attaching the second portion of the second outer diameter to the first edge of the outer diameter and the second edge of the outer diameter and attaching the second portion of the second inner diameter to the first edge of the inner diameter and the second edge of the inner diameter.

12 . The method of repairing the stator stage for use with the turbine engine of claim 11 , further comprising:

performing a blending process on the stator stage to smooth and shape the plurality of stator vanes, including the second stator vane of the second segment.

13 . The method of repairing the stator stage for use with the turbine engine of claim 11 , further comprising:

forming a first edge profile on the first edge of the outer diameter and the opposing second edge of the outer diameter;

forming a second edge profile on the first edge of the inner diameter and the opposing second edge of the inner diameter;

forming a third edge profile on the second portion of the second outer diameter of the second segment, the third edge profile complimenting the first edge profile; and

forming a fourth edge profile on the second portion of the second inner diameter of the second segment, the fourth edge profile complimenting the second edge profile.

14 . The method of repairing the stator stage for use with the turbine engine of claim 11 , wherein the first segment and the second segment have the same size and shape.

15 . The method of repairing the stator stage for use with the turbine engine of claim 14 , wherein the size and shape of the first segment and the second segment are predefined.

16 . The method of repairing the stator stage for use with the turbine engine of claim 11 , wherein the manufacturing the second segment including using a powder bed fusion process.

17 . A method of repairing a stator stage for use with a turbine engine, comprising:

receiving the stator stage including a plurality of stator vanes and a void, the plurality of stator vanes being disposed between a first outer diameter and first inner diameter and the void being defined by a first edge of the first outer diameter and an opposing second edge of the first outer diameter and a first edge of the first inner diameter and an opposing second edge of the first inner diameter;

manufacturing a first segment including a first portion of a second outer diameter, a first portion of a second inner diameter, and a first stator vane; and

attaching the first segment to the stator stage to fill the void, including attaching the first portion of the second outer diameter to the first edge of the first outer diameter and the opposing second edge of the first outer diameter, and attaching the first portion of the second inner diameter to the first edge of the first inner diameter and the opposing second edge of the first inner diameter.

18 . The method of repairing the stator stage for use with the turbine engine of claim 17 , wherein the void has a predefined size and shape and the first segment is manufactured to match the predefined size and shape.

19 . The method of repairing the stator stage for use with the turbine engine of claim 17 , wherein the manufacturing the first segment includes using a powder bed fusion process.

20 . The method of repairing the stator stage for use with the turbine engine of claim 17 , wherein the manufacturing the first segment includes forming an edge profile on the first portion of the second outer diameter.

Assignments (3)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064402/0837 →
CHANGE OF NAME Recorded Jul 24, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064368/0168 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2023
From: KERNOZICKY, GARRETT; BOYER, JESSE R; RAGHAVAN, ASHWIN; BREITZMANN, PETER JOHN; BAPTIST, PRABA KHARAN; VUKOVINSKY, MICHAEL L; BINEK, LAWRENCE A
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 064264/0803 →