IP Library Granted Patent US 12,467,387
Granted Patent B1
US 12,467,387 · App. 18/818,696 · Granted Nov 11, 2025

Turbine exhaust case structural flange

Inventor: Guy Lefebvre (St-Bruno-de-Montarville, CA)
Assignee: PRATT & WHITNEY CANADA CORP.
F01D25/243F01D9/00F01D9/02F01D9/04F01D25/24F05D2220/32
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 12,467,387
App. No.
18/818,696
Granted
Nov 11, 2025
Kind
B1
Abstract

A turbine exhaust case has an inner ring structurally connected to an outer ring via a plurality of struts. An outer flange projects outwardly from the outer case. The outer flange is made of a material different from that of the outer case and includes a ring portion having an inner diameter surface joined to an outer diameter surface of the outer case at a first axial location corresponding to a junction of a leading edge of the plurality of struts and the outer case. The outer flange further includes a tubular portion projecting axially from the ring portion to a second axial location disposed upstream of the struts, and an annular mounting portion projecting outwardly from an outer surface of the tubular portion at the second axial location.

Claims (68)

1 . A turbine exhaust case for a gas turbine engine, comprising:

an outer case extending around a central axis;

an inner case concentrically disposed inside the outer case, the inner case and the outer case defining an annular gas path therebetween;

a plurality of circumferentially spaced-apart struts extending across the annular gas path and structurally connecting the inner case to the outer case; and

an outer structural flange projecting outwardly from the outer case, the outer structural flange made of a material different from that of the outer case, the outer structural flange including:

a ring portion having an inner diameter surface joined to an outer diameter surface of the outer case at a first axial location corresponding to a junction of a leading edge of the plurality of circumferentially spaced-apart struts and the outer case;

a tubular portion projecting axially from the ring portion to a second axial location disposed upstream of the plurality of circumferentially spaced-apart struts relative to an exhaust gas flow through the annular gas path; and

an annular mounting portion projecting outwardly from an outer surface of the tubular portion at the second axial location;

wherein the ring portion extends radially outwardly to a radially outermost surface, the radially outermost surface of the ring portion spaced by a distance R 1 from an outer surface of the outer case, wherein the outer surface of the tubular portion is spaced from the outer surface of the outer case by a distance R 2 , wherein R 2 is smaller than R 1 ; and

wherein the radially outermost surface of the ring portion has an axial length F, wherein the inner diameter surface of the ring portion has an axial length C, and wherein the axial length F is at most ⅔ of the axial length C.

2 . The turbine exhaust case of claim 1 , wherein a radial thickness of the outer structural flange decreases along an axial direction from the ring portion to the tubular portion of the outer structural flange.

3 . The turbine exhaust case of claim 1 , wherein the outer structural flange has a transition portion axially between the ring portion and the tubular portion, the transition portion having a radial thickness which gradually decreases from the ring portion to the tubular portion, and wherein the transition portion has a sloped outer surface that slopes from the radially outermost surface of the ring portion to the outer surface of the tubular portion.

4 . The turbine exhaust case of claim 3 , wherein the sloped outer surface of the transition portion has a slope angle B ranging from 5 to 20 degrees.

5 . The turbine exhaust case of claim 3 , wherein the radially outermost surface of the ring portion and the sloped outer surface of the transition portion extend in series along an axial distance D, wherein the tubular portion has a constant radial wall thickness along an axial length E, and wherein the axial length E is at least equal to the axial distance D.

6 . The turbine exhaust case of claim 3 , wherein the radially outermost surface of the ring portion and the sloped outer surface of the transition portion extend in series along an axial distance D, wherein the inner diameter surface of the ring portion has an axial length C, and wherein the axial distance D is at least 3 times greater than the axial length C.

7 . The turbine exhaust case of claim 3 , wherein the inner diameter surface of the ring portion has an axial length C, and wherein the sloped outer surface of the transition portion has a slope height A that is equal to at least ½ of the axial length C.

8 . The turbine exhaust case of claim 1 , wherein the outer structural flange is made of a material having a greater tensile strength than that of the material forming the outer case.

9 . The turbine exhaust case of claim 1 , wherein the outer case, the inner case and the plurality of circumferentially spaced-apart struts are cast as a one-piece component, the one-piece component made out of a first material, and wherein the outer structural flange is made out of a second material, the second material having a greater tensile strength than the first material.

10 . The turbine exhaust case of claim 8 , further comprising a weld joint between the outer case and the outer structural flange, the weld joint extending circumferentially around the central axis.

11 . The turbine exhaust case of claim 10 , wherein a strut of the plurality of circumferentially spaced-apart struts has a hollow core circumscribed by a strut wall, wherein an axial thickness of the strut wall at the leading edge of the strut increases at the junction with the outer case.

12 . The turbine exhaust case of claim 1 , wherein a radial thickness of the tubular portion is smaller that a radial thickness of the ring portion, and wherein the tubular portion is spaced radially from the outer case by an annular gap.

13 . A gas turbine engine comprising:

a turbine including a turbine rotor rotatable about a central axis;

a turbine support case (TSC) surrounding the turbine rotor;

a turbine exhaust case (TEC) mounted to and extending downstream from the TSC relative to a flow of combustion gases through the turbine, the TEC including:

an outer case extending around the central axis;

an inner case concentrically disposed within the outer case;

an annular exhaust gas path radially between the inner case and the outer case for discharging the combustion gases from the turbine;

a plurality of struts extending across the annular exhaust gas path from the inner case to the outer case; and

an outer structural flange extending radially outwardly from the outer case, the outer structural flange including:

a ring portion having an inner diameter surface joined to an outer diameter surface of the outer case at a first axial location aligned with a junction of a leading edge of the plurality of struts and the outer case;

a tubular portion projecting axially from the ring portion to a second axial location disposed upstream of the plurality of struts; and

an annular mounting portion projecting radially outwardly from the tubular portion at the second axial location, the annular mounting portion secured to a corresponding flange of the TSC;

wherein the outer structural flange has a transition portion axially between the ring portion and the tubular portion, the transition portion having a radial thickness which gradually decreases from the ring portion to the tubular portion, and wherein the transition portion has a sloped outer surface that slopes from the radially outermost surface of the ring portion to the outer surface of the tubular portion; and

wherein the sloped outer surface of the transition portion has a slope angle B ranging from 5 to 20 degrees.

14 . The gas turbine engine according to claim 13 , wherein the inner case, the outer case and the plurality of struts form a monolithic component made of a first material, and wherein the outer structural flange of the TEC is made from a second material, the second material different from the first material.

15 . The gas turbine engine according to claim 14 , wherein the ring portion has a greater radial thickness than that of the tubular portion.

16 . The gas turbine engine according to claim 13 , wherein a radius is provided at a junction of the sloped outer surface and the outer surface of the tubular portion.

17 . A turbine exhaust case for a gas turbine engine, comprising:

an outer case extending around a central axis;

an inner case concentrically disposed inside the outer case, the inner case and the outer case defining an annular gas path therebetween;

a plurality of circumferentially spaced-apart struts extending across the annular gas path and structurally connecting the inner case to the outer case; and

an outer structural flange projecting outwardly from the outer case, the outer structural flange made of a material different from that of the outer case, the outer structural flange including:

a ring portion having an inner diameter surface joined to an outer diameter surface of the outer case at a first axial location corresponding to a junction of a leading edge of the plurality of circumferentially spaced-apart struts and the outer case;

a tubular portion projecting axially from the ring portion to a second axial location disposed upstream of the plurality of circumferentially spaced-apart struts relative to an exhaust gas flow through the annular gas path; and

an annular mounting portion projecting outwardly from an outer surface of the tubular portion at the second axial location;

wherein the outer structural flange has a transition portion axially between the ring portion and the tubular portion, the transition portion having a radial thickness which gradually decreases from the ring portion to the tubular portion, and wherein the transition portion has a sloped outer surface that slopes from the radially outermost surface of the ring portion to the outer surface of the tubular portion; and

wherein the radially outermost surface of the ring portion and the sloped outer surface of the transition portion extend in series along an axial distance D, the tubular portion having a constant radial wall thickness along an axial length E, and wherein the axial length E is at least equal to the axial distance D.

18 . A turbine exhaust case for a gas turbine engine, comprising:

an outer case extending around a central axis;

an inner case concentrically disposed inside the outer case, the inner case and the outer case defining an annular gas path therebetween;

a plurality of circumferentially spaced-apart struts extending across the annular gas path and structurally connecting the inner case to the outer case; and

an outer structural flange projecting outwardly from the outer case, the outer structural flange made of a material different from that of the outer case, the outer structural flange including:

a ring portion having an inner diameter surface joined to an outer diameter surface of the outer case at a first axial location corresponding to a junction of a leading edge of the plurality of circumferentially spaced-apart struts and the outer case;

a tubular portion projecting axially from the ring portion to a second axial location disposed upstream of the plurality of circumferentially spaced-apart struts relative to an exhaust gas flow through the annular gas path; and

an annular mounting portion projecting outwardly from an outer surface of the tubular portion at the second axial location;

wherein the outer structural flange has a transition portion axially between the ring portion and the tubular portion, the transition portion having a radial thickness which gradually decreases from the ring portion to the tubular portion, and wherein the transition portion has a sloped outer surface that slopes from the radially outermost surface of the ring portion to the outer surface of the tubular portion; and

wherein the radially outermost surface of the ring portion and the sloped outer surface of the transition portion extend in series along an axial distance D, wherein the inner diameter surface of the ring portion has an axial length C, and wherein the axial distance D is at least 3 times greater than the axial length C.

19 . A turbine exhaust case for a gas turbine engine, comprising:

an outer case extending around a central axis;

an inner case concentrically disposed inside the outer case, the inner case and the outer case defining an annular gas path therebetween;

a plurality of circumferentially spaced-apart struts extending across the annular gas path and structurally connecting the inner case to the outer case; and

an outer structural flange projecting outwardly from the outer case, the outer structural flange made of a material different from that of the outer case, the outer structural flange including:

a ring portion having an inner diameter surface joined to an outer diameter surface of the outer case at a first axial location corresponding to a junction of a leading edge of the plurality of circumferentially spaced-apart struts and the outer case;

a tubular portion projecting axially from the ring portion to a second axial location disposed upstream of the plurality of circumferentially spaced-apart struts relative to an exhaust gas flow through the annular gas path; and

an annular mounting portion projecting outwardly from an outer surface of the tubular portion at the second axial location;

wherein the outer structural flange has a transition portion axially between the ring portion and the tubular portion, the transition portion having a radial thickness which gradually decreases from the ring portion to the tubular portion, and wherein the transition portion has a sloped outer surface that slopes from the radially outermost surface of the ring portion to the outer surface of the tubular portion; and

wherein the inner diameter surface of the ring portion has an axial length C, and wherein the sloped outer surface of the transition portion has a slope height A that is equal to at least ½ of the axial length C.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2024
From: LEFEBVRE, GUY, MR.
To: PRATT & WHITNEY CANADA CORP.
Reel/Frame 068436/0340 →
References Cited (28)
US 7802962B2 · Sjoeqvist · 2010 [cited by applicant]
US 8408011B2 · Fontaine et al. · 2013 [cited by applicant]
US 8827638B2 · Delitz · 2014 [cited by applicant]
US 9243514B2 · Krotzer, Jr. et al. · 2016 [cited by applicant]
US 9759356B2 · Ott et al. · 2017 [cited by applicant]
US 9822652B2 · Sjoqvist et al. · 2017 [cited by applicant]
US 10100676B2 · Farah et al. · 2018 [cited by applicant]
US 10240485B2 · Grussmann · 2019 [cited by applicant]
US 10280790B2 · Mountz et al. · 2019 [cited by applicant]
US 10533437B2 · Dale et al. · 2020 [cited by applicant]
US 10815832B2 · Staffier et al. · 2020 [cited by applicant]
US 10907508B2 · Knight et al. · 2021 [cited by applicant]
US 11002152B2 · Smedresman et al. · 2021 [cited by applicant]
US 11156123B2 · Sakamoto et al. · 2021 [cited by applicant]
US 11319879B2 · Iwai et al. · 2022 [cited by applicant]
US 11319897B2 · Joo et al. · 2022 [cited by applicant]
US 11473449B2 · Lefebvre · 2022 [cited by applicant]
US 11506385B2 · Onishi et al. · 2022 [cited by applicant]
US 11629615B2 · Lefebvre · 2023 [cited by applicant]
US 11629616B1 · Loucks et al. · 2023 [cited by applicant]
US 11739663B2 · Kerns et al. · 2023 [cited by applicant]
US 20080206047A1 · Dakowski · 2008 [cited by examiner]
US 20160333740A1 · Sluyter · 2016 [cited by examiner]
US 20220381156A1 · Lefebvre · 2022 [cited by examiner]
KR 20210103853A · 2021 [cited by applicant]
KR 20210106800A · 2021 [cited by applicant]
“Haynes 282”, Haynes International, “https://haynesintl.com/en/alloys/alloy-portfolio/high-temperature-alloys/haynes-282/#tensile-properties”. [cited by examiner]
“Special Metals INCONEL Alloy 718”, Special Metals, “https://asm.matweb.com/search/specificmaterial.asp?bassnum=ninc34”. [cited by examiner]