IP Library Granted Patent US 11,136,991
Granted Patent B2
US 11,136,991 · App. 16/866,303 · Granted Oct 5, 2021

Tandem blade rotor disk

Inventors: John C. Ditomasso (Glastonbury, CT); Matthew P. Forcier (South Windsor, CT)
Assignee: Raytheon Technologies Corporation
F04D29/324F01D5/142F01D5/146F01D5/3007F01D5/3038F01D5/34F04D19/02F04D29/321F04D29/322F04D29/644F02C3/04F05D2220/32
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Quick Facts
Patent No.
US 11,136,991
App. No.
16/866,303
Granted
Oct 5, 2021
Kind
B2
Abstract

A tandem rotor disk apparatus may include a rotor disk body concentric about an axis. The tandem rotor disk apparatus may also include a first blade extending radially outward of the rotor disk body and a second blade extending radially outward of the rotor disk body. The first blade may be offset from the second blade in a direction parallel to the axis. The tandem rotor disk apparatus may be implemented in a gas turbine engine with no intervening stator vane stages disposed between the first blade and the second blade. The tandem rotor disk apparatus may include two separate rotor disk bodies.

Claims (20)

1. A tandem rotor disk apparatus comprising:

a first rotor disk body concentric about an axis;

a second rotor disk body directly coupled to the first rotor disk body and concentric about the axis;

a first blade extending radially outward of the first rotor disk body; and

a second blade extending radially outward of the second rotor disk body;

wherein the first rotor disk body and the first blade are offset from the second rotor disk body and the second blade in a direction parallel to the axis;

wherein the first rotor disk body is coupled to the second rotor disk body via one or more tie rods; and

wherein the first rotor disk body directly engages the second rotor disk body at a first shoulder radially outward of the one or more tie rods and a second shoulder radially inward of the one or more tie rods.

2. The tandem rotor disk apparatus of claim 1 , wherein the first rotor disk body is coupled to the second rotor disk body via a snap interference fit.

3. The tandem rotor disk apparatus of claim 1 , wherein the first shoulder and the second shoulder each is a step interface between the first rotor disk body and the second rotor disk body comprising radially extending surfaces and axially extending surfaces.

4. A gas turbine engine comprising:

a blade stage comprising sets of tandem blades circumferentially distributed about an engine central longitudinal axis of the gas turbine engine, wherein each set of tandem blades comprises a forward blade and an aft blade that are directly axially adjacent to each other without an intervening stator vane;

a first rotor disk body having the forward blade of each set of tandem blades extending radially outward therefrom; and

a second rotor disk body having the aft blade of each set of tandem blades extending radially outward therefrom;

wherein the first rotor disk body is coupled to the second rotor disk body via one or more tie rods;

wherein the first rotor disk body directly engages the second rotor disk body at a shoulder radially inward of the one or more tie rods.

5. The gas turbine engine of claim 4 , wherein the blade stage is of a compressor section.

6. The gas turbine engine of claim 5 , wherein the blade stage is an aft-most blade stage of the compressor section.

7. The gas turbine engine of claim 4 , wherein the first rotor disk body directly engages the second rotor disk body at another shoulder radially outward of the one or more tie rods.

8. The gas turbine engine of claim 4 , wherein the shoulder is a step interface between the first rotor disk body and the second rotor disk body comprising radially extending surfaces and axially extending surfaces.

Assignments (2)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064714/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2020
From: DITOMASSO, JOHN C.; FORCIER, MATTHEW P.
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 052564/0840 →
Continuity (2)
Division 15642677 · Jul 6, 2017
Related Publication 20200392967A1 · Dec 17, 2020