IP Library Granted Patent US 12,359,672
Granted Patent B2
US 12,359,672 · App. 18/136,137 · Granted Jul 15, 2025

Rotor blade inspection system

Inventors: Scott Goyette (Moosup, CT); Janet Shaw (Tolland, CT); Gregory S. Hagen (Glastonbury, CT); Paul Attridge (Colchester, CT); Zaffir A. Chaudhry (South Glastonbury, CT); David L. Lincoln (Cromwell, CT); Jeffrey P. King (Coventry, CT)
Assignee: RTX Corporation
F04D27/001F04D29/542F05D2220/36F05D2240/12F05D2270/8041
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Quick Facts
Patent No.
US 12,359,672
App. No.
18/136,137
Granted
Jul 15, 2025
Kind
B2
Abstract

An inspection system for rotating fan rotor blades is provided that includes a plurality of cameras and light sources and a system controller. The cameras are controllable to capture an image of a leading edge of a fan rotor blade and produce signals representative of the captured image. Each respective camera is mounted with an inlet guide vane disposed forward of the fan rotor blade stage. The light sources are each associated with a respective camera. The system controller is in communication with the cameras, the light sources, and a non-transitory memory storing instructions. The instructions when executed cause the system controller to: control the light sources to selectively illuminate the fan rotor blades, and control the cameras to image respective fan rotor blades and produce signals representative thereof, and provide inspection information representative of the leading edge of respective fan rotor blades.

Claims (31)

1. An inspection system for a fan rotor blade in a fan rotor blade stage of a gas turbine engine, the fan rotor blade having a leading edge, the system comprising:

a plurality of cameras, each camera of the plurality of cameras controllable to capture an image of at least a portion of the leading edge of the fan rotor blade and produce signals representative of the captured image, wherein each camera is mounted with an inlet guide vane disposed forward of the fan rotor blade stage;

a plurality of light sources, each light source of the plurality of light sources associated with a respective camera of the plurality of cameras; and

a system controller in communication with the plurality of cameras, the plurality of light sources, and a non-transitory memory storing instructions, which instructions when executed cause the system controller to:

control each of the plurality of light sources to selectively illuminate at least portions of the fan rotor blade;

control each of the plurality of cameras to capture images of said at least a portion of the leading edge of the fan rotor blade and produce signals representative of the captured images; and

provide inspection information representative of said at least a portion of the leading edge of the fan rotor blade using the signals representative of the captured images,

wherein said each camera mounted with an inlet guide vane is mounted in said inlet guide vane.

2. The inspection system of claim 1 , wherein each respective said light source is mounted with a respective said camera.

3. The inspection system of claim 1 , wherein multiple cameras among the plurality of cameras are mounted in a single inlet guide vane.

4. The inspection system of claim 3 , wherein all cameras of the plurality of cameras are mounted in said single inlet guide vane.

5. The inspection system of claim 4 , wherein at least one camera among the plurality of cameras is mounted in a housing, and the housing is mounted in said single inlet guide vane.

6. The inspection system of claim 5 , wherein the housing has an interior compartment and wherein the at least one camera is fixed in the interior compartment of the housing.

7. The inspection system of claim 5 , wherein the housing has an interior compartment and wherein the at least one camera is mounted to be selectively translatable in the interior compartment of the housing.

8. The inspection system of claim 1 , wherein a first camera among the plurality of cameras is mounted in a first inlet guide vane, and a second camera among the plurality of cameras is mounted in a second inlet guide vane.

9. The inspection system of claim 8 , wherein the first said camera is mounted in the first said inlet guide vane at a first radial position, and the second said camera is mounted in the second said inlet guide vane at a second radial position, wherein the first radial position is different from the second radial position.

10. The inspection system of claim 8 , wherein:

the first camera is mounted in a housing and the housing is mounted in the first inlet guide vane, and/or

the second camera is mounted in a housing, and the housing is mounted in the second inlet guide vane.

11. A fan inlet guide vane stage for use with a fan rotor stage having a plurality of fan rotor blades, each fan rotor blade having a respective leading edge, the fan inlet guide vane stage comprising:

a plurality of inlet guide vanes, each inlet guide vane having a respective trailing edge;

a plurality of cameras, each camera configured for imaging a respective leading edge of a fan rotor blade of the plurality of fan rotor blades; and

a plurality of light sources;

wherein each respective camera and each respective light source are mounted with an inlet guide vane of the plurality of inlet guide vanes, and

wherein each respective camera mounted with an inlet guide vane is mounted in said inlet guide vane.

12. The fan inlet guide vane stage of claim 11 , wherein each respective camera mounted with an inlet guide vane is mounted in said inlet guide vane proximate the respective trailing edge of said inlet guide vane.

13. The fan inlet guide vane stage of claim 11 , wherein all cameras of the plurality of cameras are mounted in a single inlet guide vane.

14. The fan inlet guide vane stage of claim 13 , wherein at least one camera among the plurality of cameras is mounted in a housing, and the housing is mounted in said single inlet guide vane.

15. The fan inlet guide vane stage of claim 14 , wherein said at least one camera is mounted in an interior compartment disposed in said single inlet guide vane.

16. The fan inlet guide vane stage of claim 11 , wherein a first camera among the plurality of cameras is mounted in a first inlet guide vane and a second camera among the plurality of cameras is mounted in a second inlet guide vane.

17. The fan inlet guide vane stage of claim 16 , wherein the first said camera is mounted in the first said inlet guide vane at a first radial position, and the second said camera is mounted in the second said inlet guide vane at a second radial position, wherein the first radial position is different from the second radial position.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2025
From: GOYETTE, SCOTT; HAGEN, GREGORY S.; CHAUDHRY, ZAFFIR A.; LINCOLN, DAVID L.; KING, JEFFREY P.
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 071458/0297 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2025
From: SHAW, JANET; ATTRIDGE, PAUL
To: RTX CORPORATION
Reel/Frame 071458/0333 →
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064402/0837 →
Continuity (1)
Related Publication 20240352938A1 · Oct 24, 2024
References Cited (15)
US 7527471B2 · Schilling · 2009 [cited by examiner]
US 8587660B2 · Mitra · 2013 [cited by examiner]
US 10217208B2 · Kell · 2019 [cited by examiner]
US 10914191B2 · Finn · 2021 [cited by examiner]
US 11230927B2 · Anderson · 2022 [cited by examiner]
US 11339660B2 · Lipkin · 2022 [cited by applicant]
US 20150114006A1 · Tan · 2015 [cited by applicant]
US 20160335761A1 · Kell · 2016 [cited by applicant]
US 20190338666A1 · Finn · 2019 [cited by applicant]
US 20190339165A1 · Finn · 2019 [cited by applicant]
US 20200056501A1 · Eastment · 2020 [cited by examiner]
US 20200225178A1 · Nalladega · 2020 [cited by applicant]
David Choi et al. “New Non-Volatile Memory Structures for FPGA Architectures” Jul. 7, 2008 IEEE transactions on very large scale integration (VLSI) systems, vol. 16, No. 7 (Year: 2008). [cited by examiner]
Suo Shaoxuan et al: “Aero-engine Fan Blade Detection Based on Mobile Manipulator Visual System”, 2022 International Conference on Sensing, Measurement & Data Analytics in The Era of Artificial Intelligence (ICSMD), IEEE… [cited by applicant]
EP Search Report for EP Patent Application No. 24171094.6 dated Sep. 20, 2024. [cited by applicant]