IP Library Granted Patent US 11,187,133
Granted Patent B2
US 11,187,133 · App. 16/146,179 · Granted Nov 30, 2021

Exhaust system with mixer

Inventors: Joachim Gehrlein (Rheinzabern, DE); Frank Terres (Frankeneck, DE); Andreas Lang (Hassloch, DE)
Assignee: Tenneco GmbH
F01N13/08B01F3/04049B01F5/0057B01F5/04B01F5/0451F01N3/206F01N3/2892B01F2005/0011B01F2005/0014B01F2005/0091B01F2215/0422F01N2240/20F01N2470/18F01N2610/00
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Quick Facts
Patent No.
US 11,187,133
App. No.
16/146,179
Granted
Nov 30, 2021
Kind
B2
Abstract

A mixing chamber for mixing an additive in an exhaust system of an internal combustion engine includes a housing, a flow-guiding element and a downstream substrate. The flow-guiding element is arranged within the housing between an inlet opening and an outlet opening. The flow-guiding element is tubular and forms a channel including a channel wall, one inlet and one outlet, via which all of the exhaust gas is guided through the channel to the outlet.

Claims (26)

1. A mixing chamber for mixing an additive with exhaust gas in an exhaust system of an internal combustion engine, comprising:

a housing including an entry opening for exhaust gas having a first flow cross-section and a central entry axis and an exit opening for exhaust gas having a second flow cross-section and having a central exit axis;

a flow-guiding element arranged within the housing between the two openings, the flow-guiding element is tubular and forms a channel including a channel wall, one inlet and one outlet, via which the exhaust gas is guided through the channel to the outlet having an outlet cross-section including a size and a shape; and

a downstream conduit positioned adjacent to the outlet in the direction of the central exit axis, the downstream conduit having a conduit cross-section including a size and a shape that corresponds to the outlet cross-section size and shape, wherein the housing includes a dome that radially protrudes to provide a path for the exhaust gas to enter the inlet, wherein the inlet is at least partially positioned in the dome.

2. The mixing chamber of claim 1 , wherein the flow-guiding element is at least partially arranged in the dome.

3. The mixing chamber of claim 1 , wherein the inlet includes a plurality of openings extending through the channel wall.

4. The mixing chamber of claim 3 , wherein the flow-guiding element includes blades adjacent the openings.

5. The mixing chamber of claim 1 , wherein the central entry axis extends collinearly with the central exit axis.

6. The mixing chamber of claim 1 , wherein the central entry axis extends parallel to offset from the central exit axis.

7. The mixing chamber of claim 1 , wherein the central entry axis extends non-parallel to the central exit axis.

8. The mixing chamber of claim 1 , wherein the channel wall blocks an upstream end of the downstream conduit to force the exhaust gas to flow through the inlet of the flow-guiding element.

9. The mixing chamber of claim 1 , wherein the shape of the outlet cross-section of the flow-guiding element and the shape of the downstream conduit cross-section is circular.

10. The mixing chamber of claim 1 , wherein the dome radially outwardly protrudes beyond the entry opening.

11. The mixing chamber of claim 1 , wherein an additive injection direction extends collinearly with a channel axis of the channel.

12. The mixing chamber of claim 11 , wherein the channel axis forms an obtuse angle with the central exit axis when viewed along the injection direction.

13. The mixing chamber of claim 1 , wherein the inlet is positioned in the dome and not outside of the dome.

14. A mixing chamber for mixing an additive with exhaust gas in an exhaust system of an internal combustion engine, comprising:

a housing including an entry opening for exhaust gas having a first flow cross-section and a central entry axis and an exit opening for exhaust gas having a second flow cross-section and having a central exit axis;

a flow-guiding element arranged within the housing between the two openings, wherein the flow-guiding element is tubular and forms a channel including a channel wall, an inlet and an outlet, via which all of the exhaust gas passing through the entry opening is guided through the channel to the outlet, wherein the outlet includes an outlet cross-section including a size and a shape, wherein the channel is adapted to receive the additive; and

a downstream conduit positioned adjacent to the outlet in the direction of the central exit axis, the downstream conduit having an inlet opening with a cross-section including a size and a shape that corresponds to the outlet cross-section size and shape.

15. The mixing chamber of claim 14 , further including an upstream conduit positioned adjacent to the entry opening in the direction of the central entry axis, wherein the upstream conduit includes a wall, the inlet of the flow-guiding element being positioned radially outward of the upstream conduit wall.

16. The mixing chamber of claim 15 , wherein the central entry axis and the central exit axis is coaxially extend.

17. The mixing chamber of claim 14 , wherein the channel wall extends across the inlet opening of the downstream conduit.

18. The mixing chamber of claim 17 , wherein the flow-guiding element includes a first end proximate the inlet of the channel and an opposite second end, the first end being positioned upstream of the second end.

19. The mixing chamber of claim 14 , wherein the inlet includes a plurality of opening extending through the channel wall.

20. The mixing chamber of claim 19 , wherein the flow-guiding element includes blades adjacent the openings.

Assignments (1)
CHANGE OF NAME Recorded Aug 20, 2025
From: TENNECO AUTOMOTIVE OPERATING COMPANY INC.
To: TENNECO AUTOMOTIVE OPERATING COMPANY LLC
Reel/Frame 072553/0215 →
Priority Claims (1)
DE 20 2013 006 962.7 · Aug 5, 2013 · national
Continuity (2)
Continuation 14763998
Related Publication 20190032535A1 · Jan 31, 2019