IP Library Granted Patent US 8,026,624
Granted Patent B2
US 8,026,624 · App. 12/179,911 · Granted Sep 27, 2011

Turbojet comprising a current generator mounted in the fan and a method of mounting said generator in the fan

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Quick Facts
Patent No.
US 8,026,624
App. No.
12/179,911
Granted
Sep 27, 2011
Kind
B2
Abstract

A twin-spool gas turbine turbojet comprising a high-pressure rotor; a low-pressure rotor; a low-pressure rotor shaft connected to a fan housed in a fan casing; and a fixed cowl element centered on the axis of the engine, upstream of the fan, on which there is mounted an electric current generator designed to take mechanical power off the low-pressure rotor shaft and convert it into electrical power.

Claims (27)

1. A twin-spool gas turbine turbojet comprising:

a high-pressure rotor;

a low-pressure rotor;

a low-pressure rotor shaft connected to a fan housed in a fan casing at an upstream end of the low-pressure rotor shaft, in reference to a direction of thrust; and

a fixed cowl element centered on an axis of an engine upstream of the fan in the direction of the thrust and on which there is mounted an electric current generator designed to take mechanical power off the low-pressure rotor shaft and convert it into electrical power.

2. The turbojet as claimed in claim 1 , wherein the current generator includes a stator element connected to the fixed cowl element, and a rotor element driven by the upstream end of the low-pressure rotor shaft.

3. The turbojet as claimed in claim 2 , wherein

power transmission pinions are formed respectively on the rotor element of the current generator and on the upstream end of the low-pressure rotor shaft, and

the power transmission pinions mesh with one another to transmit rotational movement of the low-pressure rotor shaft to the rotor element of the current generator.

4. The turbojet as claimed in claim 1 , further comprising:

a fan disk on which fan blades are mounted, in which a rotor element of the current generator is rotationally driven by a journal secured to said fan disk.

5. The turbojet as claimed in one of claims 3 and 4 , wherein the cowl element is connected to the fan casing by radial retaining arms.

6. The turbojet as claimed in claim 5 , wherein ducts for lubricating the current generator are formed in the radial retaining arms.

7. The turbojet as claimed in claim 5 , wherein electric cables are formed in the radial retaining arms.

8. The turbojet as claimed in claim 1 , wherein the fan includes a moving cowl element of a frustoconical shape and the fixed cowl element is upstream of the moving cowl element in the direction of the thrust.

9. The turbojet as claimed in claim 2 , wherein the rotor element is an electromagnet extending axially along the axis of the engine and the stator element includes windings that extend coaxially with the rotor element.

10. The turbojet as claimed in claim 4 , wherein the journal is mounted between the fan disk and the rotor element and the journal is connected by a screw-nut connection to the fan disk and to the rotor element.

11. The turbojet as claimed in claim 6 , wherein electric cables are formed in the radial retaining arms.

12. A method of mounting a current generator in the fan of a gas turbojet including a high-pressure rotor; a low-pressure rotor; a low-pressure rotor shaft connected to a fan housed in a fan casing at an upstream end of the low-pressure rotor shaft, in reference to a direction of thrust; and a fixed cowl element centered on an axis of an engine upstream of the fan in the direction of the thrust and on which there is mounted an electric current generator designed to take mechanical power off the low-pressure rotor shaft and convert it into electrical power, the method comprising:

mounting the current generator on the fixed cowl element;

positioning the fixed cowl element on the fan in such a way that the rotor element of the generator is in contact with the upstream end of the low-pressure rotor shaft; and

immobilizing the cowl element on the fan casing with radial retaining arms.

13. A twin-spool gas turbine turbojet comprising:

a high-pressure rotor;

a low-pressure rotor;

a low-pressure rotor shaft connected to a fan housed in a fan casing at an upstream end of the low-pressure rotor shaft, in reference to a direction of thrust; and

a fixed cowl element centered on an axis of an engine upstream of the fan in the direction of the thrust and on which there is mounted means for generating electric power from mechanical power of the low-pressure rotor shaft.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE COVER SHEET TO REMOVE APPLICATION NOS. 10250419, 10786507, 10786409, 12416418, 12531115, 12996294, 12094637 12416422 PREVIOUSLY RECORDED ON REEL 046479 FRAME 0807. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Aug 24, 2018
From: SNECMA
To: SAFRAN AIRCRAFT ENGINES
Reel/Frame 046939/0336 →
CHANGE OF NAME Recorded May 23, 2018
From: SNECMA
To: SAFRAN AIRCRAFT ENGINES
Reel/Frame 046479/0807 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2008
From: BEUTIN, BRUNO ALBERT; COLIN, ANTOINE OLIVIER FRANCOIS
To: SNECMA
Reel/Frame 021296/0912 →