IP Library › Granted Patent US 10,961,880
Granted Patent B2
US 10,961,880 · App. 16/211,530 · Granted Mar 30, 2021

Lubrication circuit, particularly in an aircraft engine

Inventor: Gabriel aloys Karcher (Moissy-Cramayel, FR)
Assignee: SAFRAN AIRCRAFT ENGINES
F01M1/02B64D33/00B64D37/16F01D25/20F01M1/10F01M5/00F02C7/06F16H57/045F16H57/0441F16H57/0471F16N13/22F16N29/02F16N39/00F05D2260/602F05D2260/98F16N2210/08F16N2250/06F16N2280/04
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Quick Facts
Patent No.
US 10,961,880
App. No.
16/211,530
Granted
Mar 30, 2021
Kind
B2
Abstract

A lubrication circuit comprising an oil tank ( 4 ) integrated into a first lubricated chamber ( 5 ) comprises an evacuation conduit ( 20 ) on a recovery conduit ( 10 ) from lubricated chambers of the circuit leading to the reservoir ( 4 ), opening up into an outlet ( 21 ) when an excessive pressure in the tank, that is a symptom of progressive filling, is reached. Application to aircraft engine lubrication circuits, particularly to guard against fuel leaks in the lubricant as a result of a defective heat exchanger.

Claims (24)

1. Lubrication circuit of a first chamber ( 5 ) and at least one second chamber ( 2 ) for an aircraft engine, the lubrication circuit comprising:

a lubricant tank ( 4 ),

a discharge conduit ( 6 ) from the lubricant tank ( 4 ) into the first chamber ( 5 ),

a ventilation conduit ( 8 ) connecting the first chamber ( 5 ) to the second chamber ( 2 ),

a lubricant recovery conduit ( 10 ) connecting the second chamber ( 2 ) to the lubricant tank ( 4 ) and equipped with a pump ( 11 ) forcing a flow towards the lubricant tank ( 4 ), and an outlet ventilation conduit ( 9 ) connecting the first chamber ( 5 ) to a medium external to the circuit, an evacuation conduit ( 20 ) connecting to the lubricant recovery conduit ( 10 ) between the pump ( 11 ) and the lubricant tank ( 4 ) and leading to an outlet ( 21 ), the evacuation conduit ( 20 ) being equipped with a discharge valve ( 22 ) preventing backflows to the lubricant recovery conduit and configured to open when the pressure in the lubricant recovery conduit exceeds a predetermined overpressure threshold,

a control valve ( 23 ) on the ventilation conduit ( 8 ),

a depressurization conduit ( 38 ) connected to the control valve ( 23 ) and leading to a depressurization outlet ( 24 ), and

a valve control conduit ( 25 ) originating from the evacuation conduit ( 20 ) downstream from the discharge valve ( 22 ),

wherein the control valve ( 23 ) is configured to bring the ventilation conduit ( 8 ) into communication with the depressurization conduit ( 38 ) when a pressure threshold is reached in the valve control conduit ( 25 ).

2. Lubrication circuit according to claim 1 , wherein the evacuation conduit comprises a second valve ( 26 ) between the valve control conduit ( 25 ) and the outlet ( 21 ), opening at an overpressure less than said overpressure threshold in the lubricant recovery conduit and greater than or equal to the pressure threshold that can control the control valve ( 23 ).

3. Lubrication circuit according to claim 1 , further comprising a lubricant supply conduit ( 14 ) leading from the tank ( 4 ) and passing through a heat exchanger ( 15 ) through which another fluid passes.

4. Lubrication oil circuit according to claim 3 , wherein the outlet leads to a combustion chamber of the engine.

5. Lubrication circuit according to claim 1 , wherein the outlet ( 21 ) is a recovery tank for excess liquid.

6. Aircraft engine comprising a shaft, a first chamber ( 5 ) that is a gearbox, a second chamber ( 2 ) that is a chamber containing shaft bearing support blocks, and a lubrication circuit for the first chamber and the second chamber, the lubrication circuit comprising:

a lubricant tank ( 4 ),

a discharge conduit ( 6 ) from the tank ( 4 ) into the first chamber ( 5 ),

a ventilation conduit ( 8 ) connecting the first chamber ( 5 ) to the second chamber ( 2 ),

a lubricant recovery conduit ( 10 ) connecting the second chamber ( 2 ) to the tank ( 4 ) and equipped with a pump ( 11 ) forcing a flow towards the tank ( 4 ), and an outlet ventilation conduit ( 9 ) connecting the first chamber ( 5 ) to a medium external to the circuit, an evacuation conduit ( 20 ) connecting to the recovery conduit ( 10 ; 37 ) between the pump ( 11 ) and the tank ( 4 ) and leading to an outlet ( 21 ), the evacuation conduit ( 20 ) being equipped with a discharge valve ( 22 ) preventing backflows to the recovery conduit and configured to open when the pressure in the recovery conduit exceeds a predetermined overpressure threshold,

a control valve ( 23 ) on the ventilation conduit ( 8 ),

a depressurisation conduit ( 38 ) connected to the control valve ( 23 ) and leading to a depressurisation outlet ( 24 ), and

a valve control conduit ( 25 ) originating from the evacuation conduit downstream from the discharge valve ( 22 ),

wherein the valve is configured to bring the ventilation conduit ( 8 ) into communication with the depressurisation conduit ( 38 ) when a pressure threshold is reached in the control conduit.

7. Aircraft engine according to claim 6 , the lubrication circuit comprising a supply circuit ( 14 ) for lubricant originating from the tank ( 4 ) and passing through a heat exchanger ( 15 ) through which another fluid passes, in which the other fluid is fuel transported in a circuit ( 16 ) crossing the lubrication circuit at the heat exchanger ( 15 ).

8. Aircraft engine according to claim 7 , wherein the evacuation outlet ( 21 ) is a fuel tank of the aircraft.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2019
From: KARCHER, GABRIEL ALOYS
To: SAFRAN AIRCRAFT ENGINES
Reel/Frame 048614/0555 →
Priority Claims (1)
FR 17 61870 · Dec 8, 2017 · national
Continuity (1)
Related Publication 20190178119A1 · Jun 13, 2019
Cited By (2)
US 12,228,245 US 12,674,545