IP Library Granted Patent US 11,933,221
Granted Patent B2
US 11,933,221 · App. 17/967,315 · Granted Mar 19, 2024

Tongue joint including mating channel for cooling

Inventors: Corey D. Anderson (East Hartford, CT); Edward Boucher (Watertown, CT); Rebecca R. Dunnigan (Sturbridge, MA); Nicholas Broulidakis (Vernon, CT); Matthew Murakami (West Hartford, CT); Daniel R. Brandt (Easthampton, CT); Konrad Kuc (West Hartford, CT); Victoria M. Imlach (Marlborough, CT); Sushruth G. Kamath (Manchester, CT); Manuel A. Casares Rivas (East Hartford, CT); Eric G. Leamon (Manchester, CT); Adam Castles (Norwood, MA); Edmond Cheung (East Hartford, CT); Kyra A. Thole-Wilson (West Hartford, CT); Javier Nebero Johnson (East Hartford, CT)
Assignee: RTX Corporation
F02C7/18F23R3/60F05D2220/32F05D2230/60F05D2260/232
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,933,221
App. No.
17/967,315
Granted
Mar 19, 2024
Kind
B2
Abstract

A gas turbine engine including a core having a compressor section fluidly connected to a combustor via a primary flowpath and a turbine section connected to the combustor via the core flow path. An assembly is disposed within the gas turbine engine and includes a first part connected to a second part via a radial stack joint. The first part includes a radially inward facing surface contacting a corresponding radially outward facing surface of the second part. A fastener protrudes through the first part and the second part and is configured to maintain the relative positions of the first part and the second part. A channel is disposed on at least one of the radially inward facing surfaces and is positioned between the fastener and a circumferential edge of the first part. The channel is connected to at least one cooling air source.

Claims (13)

1. A gas turbine engine comprising:

a core including a compressor section fluidly connected to a combustor via a primary flowpath and a turbine section connected to the combustor via a core flow path;

an assembly disposed within the gas turbine engine, the assembly including a first part connected to a second part via a radial stack joint, the first part including a radially inward facing surface contacting a corresponding radially outward facing surface of the second part over an extent, and one of the contacting radially inward facing surface and the radially outward facing surface being a tongue extending from an associated one of the first and second part;

a fastener extends through the radially inward facing surface of the first part and the radially outward facing surface of the second part in the extent and configured to maintain the relative positions of the first part and the second part; and

a channel disposed on at least one of the radially inward facing surface and the radially outward facing surface positioned radially between the radially inward facing surface and the radially outward facing surface and positioned between the fastener and a circumferential edge of the first part, the channel being connected to at least one cooling air source; and

wherein the first and second parts are combustor panels in the combustor.

2. The gas turbine engine of claim 1 , wherein the channel includes a radially outward intrusion into the radially inward facing surface of the first part.

3. The gas turbine engine of claim 1 , wherein the channel includes a radially inward intrusion into the radially outward facing surface of the second part.

4. The gas turbine engine of claim 3 , wherein the channel includes a radially outward intrusion into the radially inward facing surface of the first part and wherein the radially outward intrusion into the radially inward facing surface is at least partially overlapping the radially inward intrusion into the radially outward facing surface thereby creating a single channel.

5. The gas turbine engine of claim 1 , wherein the channel includes at least one cooling hole extending from the channel.

6. The gas turbine engine of claim 5 , wherein the least one cooling hole extends at least partially radially outward from the channel.

7. The gas turbine engine of claim 1 , further comprising a leakage path between the first part and the second part, the leakage path connecting the channel to a portion of the first part connecting the leakage path to a radially outward facing surface of the first part.

8. The gas turbine engine of claim 1 , wherein the channel includes at least a portion aligned with the circumferential edge of the first part.

Assignments (2)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064402/0837 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2022
From: ANDERSON, COREY D.; BOUCHER, EDWARD; DUNNIGAN, REBECCA R.; BROULIDAKIS, NICHOLAS; MURAKAMI, MATTHEW; BRANDT, DANIEL R.; KUC, KONRAD; IMLACH, VICTORIA M.; KAMATH, SUSHRUTH G.; CASARES RIVAS, MANUEL A.; LEAMON, ERIC G.; CASTLES, ADAM; CHEUNG, EDMOND; THOLE-WILSON, KYRA A.; JOHNSON, JAVIER NEBERO
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 061540/0278 →
Continuity (2)
Provisional Application 63270099 · Oct 21, 2021
Related Publication 20230129962A1 · Apr 27, 2023