IP Library Granted Patent US 12692800
Granted Patent B2
US 12692800 · App. 18/644,705 · Granted Jul 28, 2026

Sleeve for serially-arranged seal elements

Inventor: Lorenzo Sanzari (Montreal, CA)
Assignee: PRATT & WHITNEY CANADA CORP.
F01D25/183F01D25/16F05D2240/54F05D2240/55F05D2300/224
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 12692800
App. No.
18/644,705
Granted
Jul 28, 2026
Kind
B2
Abstract

A seal arrangement of a gas turbine engine includes two seal assemblies arranged in a serial relationship relative to an engine central longitudinal axis. Each seal assembly includes a seal carrier, and a primary seal element positioned in the seal carrier and configured to seal to a rotating component of the gas turbine engine abutting the primary seal element. A seal sleeve is positioned radially outboard of the seal carriers of the two seal assemblies. The seal sleeve is configured to retain the two seal assemblies in position abutting the rotating component.

Claims (53)

1 . A seal arrangement of a gas turbine engine, comprising:

two seal assemblies arranged in a serial relationship relative to an engine central longitudinal axis, each seal assembly including:

a seal carrier; and

a primary seal element disposed radially inboard of the seal carrier and configured to seal to a rotating component of the gas turbine engine abutting the primary seal element; and

a seal sleeve disposed radially outboard of the seal carriers of the two seal assemblies, the seal sleeve configured to retain the two seal assemblies in position abutting the rotating component.

2 . The seal arrangement of claim 1 , wherein the two seal assemblies are two identical seal assemblies.

3 . The seal arrangement of claim 1 , wherein the primary seal element is a carbon seal element.

4 . The seal arrangement of claim 1 , wherein the seal sleeve includes one or more airflow openings to direct an airflow toward the two seal assemblies to pressurize the two seal assemblies.

5 . The seal arrangement of claim 1 , wherein the seal sleeve includes:

a sleeve base defining a first axial end of the seal sleeve, and configured to axially retain the two seal assemblies; and

a sleeve arm extending axially from the sleeve base and disposed radially between the two seal assemblies and a rotationally fixed structure of the gas turbine engine.

6 . The seal arrangement of claim 5 , further comprising a sleeve removal feature disposed at the sleeve base to aid in removal of the seal sleeve.

7 . The seal arrangement of claim 1 , wherein a first seal assembly of the two seal assemblies is disposed at a first orientation, and a second seal assembly of the two seal assemblies is disposed at a second orientation opposite the first orientation.

8 . A bearing arrangement of a gas turbine engine, comprising:

a bearing housing;

a bearing assembly disposed in the bearing housing, including:

a bearing inner race;

a bearing outer race disposed radially outwardly from the bearing inner race; and

one or more bearing elements located radially between the bearing inner race and the bearing outer race; and

a seal arrangement disposed in the bearing housing, including:

two seal assemblies arranged in a serial relationship relative to an engine central longitudinal axis, each seal assembly including:

a seal carrier; and

a primary seal element disposed radially inboard of the seal carrier and configured to seal to a rotating component of the gas turbine engine abutting the primary seal element; and

a seal sleeve disposed radially outboard of the seal carriers of the two seal assemblies, the seal sleeve configured to retain the two seal assemblies in position abutting the rotating component.

9 . The bearing arrangement of claim 8 , wherein the two seal assemblies are two identical seal assemblies.

10 . The bearing arrangement of claim 8 , wherein the primary seal element is a carbon seal element.

11 . The bearing arrangement of claim 8 , wherein the seal sleeve includes one or more airflow openings to direct an airflow toward the two seal assemblies to pressurize the two seal assemblies.

12 . The bearing arrangement of claim 8 , wherein the seal sleeve includes:

a sleeve base defining a first axial end of the seal sleeve, and configured to axially retain the two seal assemblies; and

a sleeve arm extending axially from the sleeve base and disposed radially between the two seal assemblies and a rotationally fixed structure of the gas turbine engine.

13 . The bearing arrangement of claim 12 , further comprising a sleeve removal feature disposed at the sleeve base to aid in removal of the seal sleeve.

14 . The bearing arrangement of claim 8 , wherein a first seal assembly of the two seal assemblies is disposed at a first orientation, and a second seal assembly of the two seal assemblies is disposed at a second orientation opposite the first orientation.

15 . A gas turbine engine, comprising:

one or more rotating shafts;

one or more turbines operably connected to the one or more rotating shafts;

one or more bearing arrangements, each bearing arrangement supportive of a shaft of the one or more rotating shafts, a bearing arrangement of the one or more bearing arrangements, including:

a bearing housing;

a bearing assembly disposed in the bearing housing, including:

a bearing inner race;

a bearing outer race disposed radially outwardly from the bearing inner race; and

one or more bearing elements located radially between the bearing inner race and the bearing outer race; and

a seal arrangement disposed in the bearing housing, including:

two seal assemblies arranged in a serial relationship relative to an engine central longitudinal axis, each seal assembly including:

a seal carrier; and

a primary seal element disposed radially inboard of the seal carrier and configured to seal to a rotating component of the gas turbine engine abutting the primary seal element; and

a seal sleeve disposed radially outboard of the seal carriers of the two seal assemblies, the seal sleeve configured to retain the two seal assemblies in position abutting the rotating component.

16 . The gas turbine engine of claim 15 , wherein the two seal assemblies are two identical seal assemblies.

17 . The gas turbine engine of claim 15 , wherein the primary seal element is a carbon seal element.

18 . The gas turbine engine of claim 15 , wherein the seal sleeve includes one or more airflow openings to direct an airflow toward the two seal assemblies to pressurize the two seal assemblies.

19 . The gas turbine engine of claim 15 , wherein the seal sleeve includes:

a sleeve base defining a first axial end of the seal sleeve, and configured to axially retain the two seal assemblies; and

a sleeve arm extending axially from the sleeve base and disposed radially between the two seal assemblies and a rotationally fixed structure of the gas turbine engine.

20 . The gas turbine engine of claim 15 , wherein a first seal assembly of the two seal assemblies is disposed at a first orientation, and a second seal assembly of the two seal assemblies is disposed at a second orientation opposite the first orientation.