IP Library Granted Patent US 10,697,338
Granted Patent B2
US 10,697,338 · App. 15/861,815 · Granted Jun 30, 2020

Exhaust system

Inventors: Felix Neumann (Aichwald, DE); Alexander Kauderer (Kuchen, DE); Wolfgang Datz (Tübingen, DE); Philip Weinmann (Esslingen, DE); Simon Krammer (Winnenden, DE); Andreas Sauer (Eislingen, DE)
Assignee: Eberspächer Exhaust Technology GmbH & Co. KG
F01N3/035F01N3/021F01N3/0234F01N3/103F01N3/106F01N3/2006F01N3/2066F01N3/2882F01N5/02F01N11/002F01N13/0097F01N13/08F01N13/14F01N3/24F01N2240/36F01N2250/02F01N2260/08F01N2410/06F01N2470/00F01N2470/08F01N2560/06F01N2610/02F01N2610/03Y02T10/16Y02T10/24Y02T10/26
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Quick Facts
Patent No.
US 10,697,338
App. No.
15/861,815
Granted
Jun 30, 2020
Kind
B2
Abstract

An exhaust system for an internal combustion engine, especially diesel internal combustion engine, includes an exhaust gas flow duct ( 12 ). At least one exhaust gas treatment unit ( 23, 26, 28, 30 ) is provided in an exhaust gas treatment duct area ( 16 ) of the exhaust gas flow duct ( 12 ). The exhaust gas treatment duct area ( 16 ) of the exhaust gas flow duct ( 12 ) extends, in at least some areas, in an insulation volume ( 20 ), through which exhaust gas discharged from the exhaust gas treatment duct area ( 16 ) can flow.

Claims (64)

1. An exhaust system for an internal combustion engine, the exhaust system comprising:

an exhaust gas flow duct with an exhaust gas treatment duct area;

at least one exhaust gas treatment unit provided in the exhaust gas treatment duct area of the exhaust gas flow duct; and

structure defining an insulation volume, wherein the exhaust gas treatment duct area of the exhaust gas flow duct extends, in at least some areas, in the insulation volume, through which insulation volume exhaust gas, discharged from the exhaust gas treatment duct area, can flow, the exhaust gas treatment duct area being open towards an exhaust gas inlet area of the insulation volume and the exhaust gas treatment duct area being open towards an exhaust gas discharge duct area of the exhaust gas flow duct, the exhaust gas flow duct having an exhaust gas removal duct area, the insulation volume and the exhaust gas discharge duct area being open towards the exhaust gas removal duct area of the exhaust gas flow duct, wherein a closing unit is provided in association with the exhaust gas discharge duct area, the closing unit being adjustable for closing and releasing the exhaust gas discharge duct area.

2. The exhaust system in accordance with claim 1 , wherein the entire exhaust gas treatment duct area of the exhaust gas flow duct extends essentially in the insulation volume.

3. The exhaust system in accordance with claim 1 , wherein the closing unit comprises a closing flap arranged in the exhaust gas discharge duct area and adjustable between a closed position essentially closing the exhaust gas discharge duct area against flow and a released position releasing the exhaust gas discharge duct area for flow.

4. The exhaust system in accordance with claim 1 , wherein the at least one exhaust gas treatment unit comprises:

an oxidation catalytic converter device; or

a particle filter device; or

an SCR catalytic converter device; or

an ammonia slip catalyst; or

any combination of an oxidation catalytic converter device and a particle filter device and an SCR catalytic converter device and an ammonia slip catalyst.

5. The exhaust system in accordance with claim 4 , wherein:

the at least one exhaust gas treatment unit comprises the oxidation catalytic converter device and the SCR catalytic converter device;

the SCR catalytic converter device is arranged downstream of the oxidation catalytic converter device and a reactant injection device is arranged downstream of the oxidation catalytic converter device and upstream of the SCR catalytic converter device.

6. The exhaust system in accordance with claim 1 , further comprising at least one temperature sensor provided in association with the at least one exhaust gas treatment unit.

7. The exhaust system in accordance with claim 6 , further comprising:

an actuation unit; and

an actuating drive actuated by the actuation unit, wherein

the closing unit is adjustable by the actuating drive for closing and releasing the exhaust gas discharge duct area of the exhaust gas flow duct

based on the output signal of the at least one temperature sensor.

8. The exhaust system in accordance with claim 1 , wherein the exhaust gas treatment duct area of the exhaust gas flow duct comprises:

a first duct section;

a second duct section; and

a third duct section connecting the first duct section to the second duct section, wherein:

the at least one exhaust gas treatment unit is provided in the first duct section and another exhaust gas treatment unit is provided in the second duct section;

an exhaust gas main flow direction in the first duct section is directed essentially in the same direction as an exhaust gas main flow direction in the second duct section; and

an exhaust gas main flow direction in the third duct section is directed essentially opposite the exhaust gas main flow direction in the first duct section and in the second duct section.

9. An exhaust system in accordance with claim 8 , wherein the first duct section and the second duct section overlap each other completely in the exhaust gas main flow direction in the first duct section and in the second duct section.

10. The exhaust system in accordance with claim 8 , further comprising a diesel internal combustion engine exhaust gas introduction connection.

11. An exhaust system for an internal combustion engine, the exhaust system comprising:

an exhaust gas structure defining an exhaust gas flow duct with an exhaust gas treatment duct area;

a gas treatment unit provided in the exhaust gas treatment duct area of the exhaust gas flow duct;

a housing defining an insulation volume, wherein the exhaust gas treatment duct area of the exhaust gas flow duct extends, in at least some areas, in the insulation volume, through which insulation volume exhaust gas, discharged from the exhaust gas treatment duct area, can flow;

a closing unit adjustable between a closed position and an open position, the closing unit being arranged between a portion of the exhaust gas structure and a portion of the housing, the portion of the exhaust gas structure and another portion of the housing defining an outlet area of the insulation volume, the outlet area of the insulation volume being adjacent to the closing unit.

12. The exhaust system in accordance with claim 11 , wherein the exhaust gas treatment duct area is open towards an exhaust gas inlet area of the insulation volume and the exhaust gas treatment duct area is open towards an exhaust gas discharge duct area of the exhaust gas flow duct, the exhaust gas flow duct having an exhaust gas removal duct area, the insulation volume and the exhaust gas discharge duct area being open towards the exhaust gas removal duct area of the exhaust gas flow duct, wherein the closing unit is provided in association with the exhaust gas discharge duct area, the closing unit being adjustable for closing and releasing the exhaust gas discharge duct area.

13. The exhaust system in accordance with claim 12 , wherein the exhaust gas treatment unit comprises:

an oxidation catalytic converter device; or

a particle filter device; or

an SCR catalytic converter device; or

an ammonia slip catalyst; or

any combination of an oxidation catalytic converter device and a particle filter device and an SCR catalytic converter device and an ammonia slip catalyst.

14. The exhaust system in accordance with claim 13 , wherein:

the at least one exhaust gas treatment unit comprises the oxidation catalytic converter device and the SCR catalytic converter device;

the SCR catalytic converter device is arranged downstream of the oxidation catalytic converter device and a reactant injection device is arranged downstream of the oxidation catalytic converter device and upstream of the SCR catalytic converter device.

15. The exhaust system in accordance with claim 12 , further comprising at least one temperature sensor provided in association with the at least one exhaust gas treatment unit.

16. The exhaust system in accordance with claim 15 , further comprising:

an actuation unit; and

an actuating drive actuated by the actuation unit, wherein the closing unit is adjustable by the actuating drive for closing and releasing the exhaust gas discharge duct area of the exhaust gas flow duct based on the output signal of the at least one temperature sensor.

17. The exhaust system in accordance with claim 12 , wherein the exhaust gas treatment duct area of the exhaust gas flow duct comprises:

a first duct section;

a second duct section; and

a third duct section connecting the first duct section to the second duct section, wherein:

the at least one exhaust gas treatment unit is provided in the first duct section and another exhaust gas treatment unit is provided in the second duct section;

an exhaust gas main flow direction in the first duct section is directed essentially in the same direction as an exhaust gas main flow direction in the second duct section;

an exhaust gas main flow direction in the third duct section is directed essentially opposite the exhaust gas main flow direction in the first duct section and in the second duct section;

the third duct section is arranged between the second duct section and the first duct section.

18. An exhaust system for an internal combustion engine, the exhaust system comprising:

an exhaust gas structure defining an exhaust gas flow duct with an exhaust gas treatment duct area;

a gas treatment unit provided in the exhaust gas treatment duct area of the exhaust gas flow duct;

a housing defining an insulation volume, wherein the exhaust gas treatment duct area of the exhaust gas flow duct extends, in at least some areas, in the insulation volume; and

a closing unit adjustable between a closed position and an open position, the closing unit defining an exhaust gas outlet when the closing unit is in the open position, the exhaust gas outlet and the exhaust gas structure defining a first fluid flow path when the closing unit is in the open position, the exhaust gas structure and the insulation volume defining a second fluid flow path when the closing unit is in the closed position, the second fluid flow path comprising a second fluid flow path outlet, the second fluid flow path outlet being adjacent to the exhaust gas outlet.

19. The exhaust system in accordance with claim 18 , wherein the closing unit is arranged between a portion of the exhaust gas structure and a portion of the housing, the portion of the exhaust gas structure and another portion of the housing defining the second fluid flow path outlet, the second fluid flow path outlet being adjacent to the closing unit.

20. The exhaust system in accordance with claim 19 , wherein the exhaust gas treatment duct area is open towards an exhaust gas inlet area of the insulation volume and the exhaust gas treatment duct area being open towards an exhaust gas discharge duct area of the exhaust gas flow duct, the exhaust gas flow duct having an exhaust gas removal duct area, the insulation volume and the exhaust gas discharge duct area being open towards the exhaust gas removal duct area of the exhaust gas flow duct, wherein the closing unit is provided in association with the exhaust gas discharge duct area, the closing unit being adjustable for closing and releasing the exhaust gas discharge duct area.

Assignments (2)
CHANGE OF NAME Recorded Jul 23, 2021
From: EBERSPÄCHER EXHAUST TECHNOLOGY GMBH & CO. KG
To: PUREM GMBH, FORMERLY, EBERSPÄCHER EXHAUST TECHNOLOGY GMBH
Reel/Frame 056969/0564 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2018
From: NEUMANN, FELIX; KAUDERER, ALEXANDER; DATZ, WOLFGANG; WEINMANN, PHILIP; KRAMMER, SIMON; SAUER, ANDREAS
To: EBERSPÄCHER EXHAUST TECHNOLOGY GMBH & CO. KG
Reel/Frame 046192/0154 →
Priority Claims (2)
DE 10 2017 100 167 · Jan 5, 2017 · national
DE 10 2017 101 923 · Feb 1, 2017 · national
Continuity (1)
Related Publication 20180187584A1 · Jul 5, 2018