IP Library Granted Patent US 11,371,632
Granted Patent B2
US 11,371,632 · App. 16/521,122 · Granted Jun 28, 2022

Compliant jumper tube fitting

Inventors: Todd A. Davis (Tolland, CT); Brad E. Fiore (Vernon, CT)
Assignee: Raytheon Technologies Corporation
F16L27/02F01D9/06F02C7/06F05D2240/55F05D2260/60F05D2260/98
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Quick Facts
Patent No.
US 11,371,632
App. No.
16/521,122
Granted
Jun 28, 2022
Kind
B2
Abstract

A compliant jumper tube fitting assembly may comprise an outer housing comprising a first annular cylindrical structure including a first opening defined by a base wall, and an inner housing comprising a second annular cylindrical structure including a second opening defined by an annular wall, wherein the inner housing is configured to generate a seal between an inner diameter wall of the outer housing and an outer diameter wall of the inner housing in response to inserting the inner housing into a mouth end of the outer housing, wherein the inner housing is configured to receive an end fitting and generate a seal between an inner diameter wall of the inner housing in response to inserting the end fitting into the inner housing.

Claims (48)

1. A compliant jumper tube fitting assembly, comprising:

an outer housing comprising a first annular cylindrical structure including a first opening defined by a base wall;

an inner housing comprising a second annular cylindrical structure including a second opening defined by an annular wall; and

a retaining assembly comprising a lock ring,

wherein the inner housing is configured to generate a seal between an inner diameter wall of the outer housing and an outer diameter wall of the inner housing in response to inserting the inner housing into a mouth end of the outer housing,

wherein the inner housing is configured to receive an end fitting and generate a seal between an inner diameter wall of the inner housing in response to inserting the end fitting into the inner housing,

wherein a fluid communication between the first opening, the second opening, and the end fitting is enabled in response to inserting the end fitting into the inner housing,

wherein the inner housing is enclosed axially between the lock ring and the base wall, and

wherein the outer diameter wall includes a first arcuate transition portion and a second arcuate transition portion.

2. The compliant jumper tube fitting assembly of claim 1 , wherein the inner diameter wall of the outer housing defines a first bore diameter extending from the base wall toward the mouth end and includes a transition portion, wherein the first bore diameter increases toward a second bore diameter greater than the first bore diameter along the transition portion.

3. The compliant jumper tube fitting assembly of claim 2 , wherein the transition portion is located proximate the mouth end.

4. The compliant jumper tube fitting assembly of claim 3 , wherein the outer diameter wall of the inner housing comprises a first seal channel proximate the annular wall.

5. The compliant jumper tube fitting assembly of claim 4 , wherein the outer diameter wall of the inner housing comprises a second seal channel distal of the annular wall, wherein a first seal member is disposed within the first seal channel and a second seal member is disposed within the second seal channel.

6. The compliant jumper tube fitting assembly of claim 2 , wherein the retaining assembly is configured to inhibit the inner housing from translating relatively outward of the mouth end.

7. The compliant jumper tube fitting assembly of claim 1 , wherein the first seal channel is disposed relatively between the first arcuate transition portion and the second arcuate transition portion, and wherein a first seal member is disposed within the first seal channel.

8. A gas turbine engine, comprising:

a compressor section configured to compress a gas;

a combustor section aft of the compressor section and configured to combust the gas;

a turbine section aft of the combustor section and configured to extract work from the gas;

a tube assembly comprising a tube and an end fitting coupled to the tube;

a compliant jumper tube fitting assembly, comprising:

an outer housing comprising a first annular cylindrical structure including a first opening defined by a base wall; and

an inner housing comprising a second annular cylindrical structure including a second opening defined by an annular wall;

wherein the inner housing is configured to generate a seal between an inner diameter wall of the outer housing and an outer diameter wall of the inner housing in response to inserting the inner housing into a mouth end of the outer housing,

wherein the outer diameter wall includes a first arcuate transition portion and a second arcuate transition portion,

wherein a fluid communication between the first opening, the second opening, and the end fitting is enabled in response to inserting the end fitting into the inner housing,

wherein the end fitting of the tube assembly is configured to generate a second seal between an inner diameter wall of the inner housing and an outer diameter wall of the end fitting in response to inserting the end fitting into the inner housing, and

wherein the inner housing is configured to pitch and yaw relative to a centerline of the end fitting and maintain fluid communication between the end fitting and the outer housing.

9. The gas turbine engine of claim 8 , wherein the inner diameter wall of the outer housing defines a first bore diameter extending from the base wall toward the mouth end and includes a transition portion, wherein the first bore diameter increases toward a second bore diameter greater than the first bore diameter along the transition portion.

10. The gas turbine engine of claim 9 , wherein the transition portion is located proximate the mouth end.

11. The gas turbine engine of claim 9 , wherein the outer housing includes a retaining assembly comprising a lock ring and configured to inhibit the inner housing from translating relatively outward of the mouth end.

12. The gas turbine engine of claim 10 , wherein the outer diameter wall of the inner housing comprises a first seal channel proximate the annular wall.

13. The gas turbine engine of claim 12 , wherein the first seal channel is disposed relatively between the first arcuate transition portion and the second arcuate transition portion, and wherein a first seal member is disposed within the first seal channel.

14. The gas turbine engine of claim 12 , wherein the outer diameter wall of the inner housing comprises a second seal channel distal of the annular wall, wherein a first seal member is disposed within the first seal channel and a second seal member is disposed within the second seal channel.

15. An article of manufacture including a compliant jumper tube fitting assembly, comprising:

an outer housing comprising a first annular cylindrical structure including a first opening defined by a base wall;

an inner housing comprising a second annular cylindrical structure including a second opening defined by an annular wall; and

a retaining assembly comprising a lock ring,

wherein the inner housing is configured to generate a seal between an inner diameter wall of the outer housing and an outer diameter wall of the inner housing in response to inserting the inner housing into a mouth end of the outer housing,

wherein the inner housing is configured to receive an end fitting and generate a seal between an inner diameter wall of the inner housing in response to inserting the end fitting into the inner housing,

wherein a fluid communication between the first opening, the second opening, and the end fitting is enabled in response to inserting the end fitting into the inner housing,

wherein the inner housing is disposed axially between the lock ring and the base wall, and

wherein the outer diameter wall includes a first arcuate transition portion and a second arcuate transition portion.

16. The article of manufacture of claim 15 , wherein the inner diameter wall of the outer housing defines a first bore diameter extending from the base wall toward the mouth end and includes a transition portion, wherein the first bore diameter increases toward a second bore diameter greater than the first bore diameter along the transition portion,

wherein the transition portion is located proximate the mouth end, and

wherein the outer diameter wall of the inner housing comprises a first seal channel proximate the annular wall.

17. The article of manufacture of claim 16 , wherein the first seal channel is disposed relatively between the first arcuate transition portion and the second arcuate transition portion, and wherein a first seal member is disposed within the first seal channel.

18. The article of manufacture of claim 16 , wherein the outer diameter wall of the inner housing comprises a second seal channel distal of the annular wall, wherein a first seal member is disposed within the first seal channel and a second seal member is disposed within the second seal channel.

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 SPELLING ON THE ADDRESS 10 FARM SPRINGD ROAD FARMINGTONCONNECTICUT 06032 PREVIOUSLY RECORDED ON REEL 057190 FRAME 0719. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECT SPELLING OF THE ADDRESS 10 FARM SPRINGS ROAD FARMINGTON CONNECTICUT 06032. Recorded Aug 19, 2021
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 057226/0390 →
CHANGE OF NAME Recorded Aug 16, 2021
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 057190/0719 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2019
From: DAVIS, TODD A.; FIORE, BRAD E.
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 049850/0414 →
Continuity (1)
Related Publication 20210025527A1 · Jan 28, 2021