IP Library Granted Patent US 10,895,194
Granted Patent B2
US 10,895,194 · App. 15/473,678 · Granted Jan 19, 2021

Cooling system, and internal combustion engine comprising a cooling system of said type

Inventor: Oliver Markin (Markdorf, DE)
Assignee: MTU Friedrichshafen GmbH
F01P11/0285F01P11/029F01P11/04F01P2060/12F02B39/005
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Quick Facts
Patent No.
US 10,895,194
App. No.
15/473,678
Granted
Jan 19, 2021
Kind
B2
Abstract

A cooling system including a first coolant line and a second coolant line, at least one first component to be cooled, into which the first coolant line opens, and a first ventilation line. The first ventilation line is fluidically connected to the at least one first component and is configured for ventilating the at least one first component. The first ventilation line opens into the second coolant line.

Claims (33)

1. A cooling system, comprising:

a first coolant line and a second coolant line;

at least one first component to be cooled, into which the first coolant line opens, the at least one first component being in the form of a turbine housing of an exhaust-gas turbocharger;

a second component to be cooled, the second component being in the form of a compressor housing of the exhaust-gas turbocharger; and

a first ventilation line fluidically connected to the at least one first component and configured for ventilating the at least one first component, the first ventilation line opens into the second coolant line,

wherein the second coolant line is formed as a coolant path in the second component.

2. The cooling system of claim 1 wherein the first ventilation line opens into the second coolant line outside of at least one of said at least one first component and the second component to be cooled.

3. The cooling system of claim 1 , wherein a first pressure prevails in the first coolant line, a second pressure prevails in the second coolant line, wherein the first pressure of the first coolant line is higher than the second pressure of the second coolant line.

4. The cooling system of claim 1 , wherein said first coolant line has a first cross-sectional area, said first ventilation line has a second cross-sectional area, wherein the first cross-sectional area is larger than the second cross-sectional area by a factor of one of 16 to 400, 25 to 225, and 36 to 100.

5. The cooling system of claim 1 , wherein said first ventilation line is fluidically connected to said at least one first component at a connection point which is arranged higher than an opening-in point of said first coolant line into said at least one first component.

6. The cooling system of claim 1 , wherein the cooling system further includes an air separator which is arranged downstream of an opening-in point of the first ventilation line into the second coolant line.

7. The cooling system of claim 6 , wherein the cooling system further includes a second ventilation line fluidically connected to said air separator.

8. The cooling system of claim 7 , wherein said air separator has a separation means which is designed to separate air out of a coolant flow passing through the air separator and to supply said air to said second ventilation line.

9. The cooling system of claim 7 , wherein the cooling system further includes an expansion tank, and at least one of the second coolant line and the second ventilation line open into said expansion tank of the cooling system.

10. The cooling system of claim 9 , wherein the second coolant line is arranged spatially closer to said expansion tank than said at least one first component.

11. An internal combustion engine, comprising:

a cooling system, including:

a first coolant line and a second coolant line;

at least one first component to be cooled, into which the first coolant line opens, the at least one first component being in the form of a turbine housing of an exhaust-gas turbocharger;

a second component to be cooled, the second component being in the form of a compressor housing of the exhaust-gas turbocharger; and

a first ventilation line fluidically connected to the at least one first component and configured for ventilating the at least one first component, the first ventilation line opens into the second coolant line,

wherein the second coolant line is formed as a coolant path in the second component.

12. The internal combustion engine of claim 11 , wherein said cooling system further includes a second component to be cooled, and said second coolant line is formed as a coolant path in the second component.

13. The internal combustion engine of claim 12 , wherein the first ventilation line opens into the second coolant line outside of at least one of said at least one first component and the second component to be cooled.

14. The internal combustion engine of claim 11 , wherein a first pressure prevails in the first coolant line, a second pressure prevails in the second coolant line, wherein the first pressure of the first coolant line is higher than the second pressure of the second coolant line.

15. The internal combustion engine of claim 11 , wherein said first coolant line has a first cross-sectional area, said first ventilation line has a second cross-sectional area, wherein the first cross-sectional area is larger than the second cross-sectional area by a factor of one of 16 to 400, 25 to 225, and 36 to 100.

16. The internal combustion engine of claim 11 , wherein said first ventilation line is fluidically connected to said at least one first component at a connection point which is arranged higher than an opening-in point of said first coolant line into said at least one first component.

17. The internal combustion engine of claim 11 , wherein the cooling system further includes an air separator which is arranged downstream of an opening-in point of the first ventilation line into the second coolant line.

18. A cooling system, comprising:

a first coolant line and a second coolant line;

at least one first component to be cooled, into which the first coolant line opens; and

a first ventilation line fluidically connected to the at least one first component and configured for ventilating the at least one first component, the first ventilation line opening directly into the second coolant line,

wherein the second coolant line is formed as a coolant path in the second component such that air discharged from the at least one first component is not led directly to one of a bubble separator and an expansion tank.

Assignments (2)
CHANGE OF NAME Recorded Dec 13, 2021
From: MTU FRIEDRICHSHAFEN GMBH
To: ROLLS-ROYCE SOLUTIONS GMBH
Reel/Frame 058741/0679 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2017
From: MARKIN, OLIVER
To: MTU FRIEDRICHSHAFEN GMBH
Reel/Frame 042127/0957 →
Priority Claims (1)
DE 10 2014 014 718 · Oct 2, 2014 · national
Continuity (2)
Continuation PCTEP2015072748 · Oct 1, 2015
Related Publication 20170204776A1 · Jul 20, 2017