IP Library Granted Patent US 9,523,455
Granted Patent B2
US 9,523,455 · App. 14/100,835 · Granted Dec 20, 2016

Compensator of an exhaust gas aftertreatment system

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Quick Facts
Patent No.
US 9,523,455
App. No.
14/100,835
Granted
Dec 20, 2016
Kind
B2
Abstract

A compensator ( 10 ) of an exhaust gas aftertreatment system has a flow inlet-side connection flange ( 13 ) for connecting a flow inlet-side assembly ( 11 ), a flow outlet-side connection flange ( 14 ) for connecting a flow outlet-side assembly ( 12 ), a connection pipe ( 18 ) which extends between the two connection flanges ( 13, 14 ) and which has a bellows-shaped pipe portion ( 19 ), and an exhaust gas aftertreatment assembly ( 21 ) extending inside the connection pipe ( 18 ). The exhaust gas aftertreatment assembly ( 21 ) protrudes relative to the flow inlet-side connection flange ( 13 ) and/or relative to the flow outlet-side connection flange ( 14 ) such that it extends into the flow inlet-side connection assembly ( 11 ) and/or into the flow outlet-side assembly ( 12 ).

Claims (28)

1. A compensator ( 10 ) of an exhaust gas aftertreatment system, comprising:

a flow inlet-side connection flange ( 13 ) configured to connect to a flow inlet-side assembly ( 11 );

a flow outlet-side connection flange ( 14 ) configured to connect to a flow outlet-side assembly ( 12 );

a connection pipe ( 18 ), which extends between the flow inlet-side connection flange ( 13 ) and the flow outlet-side connection flange ( 14 ), and which has a bellows-shaped pipe portion ( 19 ); and

an exhaust gas aftertreatment assembly ( 21 ) extending inside the connection pipe ( 18 ),

wherein the exhaust gas aftertreatment assembly ( 21 ) has a smaller cross section than the connection pipe ( 18 ) such that a first portion of the exhaust gas flow guided via the compensator ( 10 ) flows through the exhaust gas aftertreatment assembly ( 21 ), and a second portion of the exhaust gas flow guided via the compensator ( 10 ) flows past the exhaust gas aftertreatment assembly ( 21 ),

wherein the cross section of the exhaust gas aftertreatment assembly ( 21 ) is between 30% and 70% of the cross section of the connection pipe ( 18 ), and

wherein the second portion of the exhaust gas flow is purely an untreated bypass flow into the flow outside-side assembly ( 12 ).

2. The compensator according to claim 1 , wherein the cross section of the exhaust gas aftertreatment assembly ( 21 ) is between 40% and 60% of the cross section of the connection pipe ( 18 ).

3. The compensator according to claim 1 , wherein the exhaust gas aftertreatment assembly ( 21 ) is positioned coaxially in the connection pipe ( 18 ).

4. The compensator according to claim 1 , wherein the exhaust gas aftertreatment assembly ( 21 ) and the connection pipe ( 18 ) have flow cross sections with geometrically different outer contours.

5. An exhaust gas aftertreatment system, comprising:

a flow inlet-side assembly ( 11 );

a flow outlet-side assembly ( 12 ); and

a compensator ( 10 ), the compensator including:

a flow inlet-side connection flange ( 13 ) configured to connect to the flow inlet-side assembly ( 11 );

a flow outlet-side connection flange ( 14 ) configured to connect to the flow outlet-side assembly ( 12 );

a connection pipe ( 18 ), which extends between the flow inlet-side connection flange ( 13 ) and the flow outlet-side connection flange ( 14 ), and which has a bellows-shaped pipe portion ( 19 ); and

an exhaust gas aftertreatment assembly ( 21 ) extending inside the connection pipe ( 18 ),

wherein the exhaust gas aftertreatment assembly ( 21 ) is arranged such that it extends into at least one selected from the group consisting of:

the flow inlet-side assembly ( 11 ), and

the flow outlet-side assembly ( 12 ),

wherein the exhaust gas aftertreatment assembly ( 21 ) has a smaller cross section than the connection pipe ( 18 ) such that a first portion of the exhaust gas flow guided via the compensator ( 10 ) flows through the exhaust gas aftertreatment assembly ( 21 ), and a second portion of the exhaust gas flow guided via the compensator ( 10 ) flows past the exhaust gas aftertreatment assembly ( 21 ),

wherein the cross section of the exhaust gas aftertreatment assembly ( 21 ) is between 30% and 70% of the cross section of the connection pipe ( 18 ), and

wherein the second portion of the exhaust gas flow is purely an untreated bypass flow into the flow outside-side assembly ( 12 ).

6. The exhaust gas aftertreatment system according to claim 5 , wherein the cross section of the exhaust gas aftertreatment assembly ( 21 ) is between 40% and 60% of the cross section of the connection pipe ( 18 ).

7. The exhaust gas aftertreatment system according to claim 5 , wherein the exhaust gas aftertreatment assembly ( 21 ) is positioned coaxially in the connection pipe ( 18 ).

8. The exhaust gas aftertreatment system according to claim 5 , wherein the exhaust gas aftertreatment assembly ( 21 ) and the connection pipe ( 18 ) have flow cross sections with geometrically different outer contours.

Assignments (2)
CHANGE OF NAME Recorded Aug 14, 2018
From: MAN DIESEL & TURBO SE
To: MAN ENERGY SOLUTIONS SE
Reel/Frame 047416/0271 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2013
From: REHLE, STEFAN
To: MAN DIESEL & TURBO SE
Reel/Frame 031747/0058 →