Pump, pump arrangement and pump module
US-9217426-B2 · Dec 22, 2015 · US
US9261090B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9261090-B2 |
| Application number | US-201113982942-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 30, 2011 |
| Priority date | Feb 1, 2011 |
| Publication date | Feb 16, 2016 |
| Grant date | Feb 16, 2016 |
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Diaphragm pump for delivering a fluid, in particular an exhaust-gas aftertreatment medium, such as an aqueous urea solution for example, comprising a working chamber ( 1 ) which is delimited by a working diaphragm ( 2 ) and which can be connected via a first valve ( 3 ) to an inlet ( 4 ) and via a second valve ( 5 ) to an outlet ( 6 ), and an electromagnet ( 7 ) which comprises a coil assembly ( 8 ) and an armature ( 9 ) which interacts with the coil assembly ( 8 ) and is operatively connected to the working diaphragm ( 2 ). According to the invention, the valves ( 3, 5 ) are configured in a valve plate ( 10 ) which is arranged between the coil assembly ( 8 ) and the armature ( 9 ). Exhaust-gas aftertreatment system having a diaphragm pump of this type.
Opening claim text (preview).
What is claimed is: 1. A diaphragm pump for delivering a fluid, comprising a working chamber ( 1 ), which is delimited by a working diaphragm ( 2 ) and which is connected via a first valve ( 3 ) to an inlet ( 4 ) and via a second valve ( 5 ) to an outlet ( 6 ), and an electromagnet ( 7 ) which comprises a coil assembly ( 8 ) and an armature ( 9 ) which interacts with the coil assembly ( 8 ) and is operatively connected to the working diaphragm ( 2 ), wherein the first and second valves ( 3 , 5 ) are disposed in a valve plate ( 10 ) which is arranged between the coil assembly ( 8 ) and the armature ( 9 ), and wherein the first and second valves ( 3 , 5 ) are axially disposed between the coil assembly ( 8 ) and the armature ( 9 ). 2. The diaphragm pump according to claim 1 , wherein the valve plate ( 10 ) is at least partially embedded in a housing ( 11 ) of the electromagnet ( 7 ) or in the armature ( 9 ). 3. The diaphragm pump according to claim 1 , wherein at least one of the valve plate ( 10 ) and the working diaphragm ( 2 ) comprise damping grooves ( 12 ), which are arranged circumferentially. 4. The diaphragm pump according to claim 1 , wherein the valve plate ( 10 ) is covered at least partially on one side or both sides by at least one additional plate ( 13 , 14 ), wherein the additional plate ( 13 , 14 ) consists of a non-magnetic material and/or is welded to the housing ( 11 ) of the electromagnet ( 7 ). 5. The diaphragm pump according to claim 4 , wherein the at least one additional plate ( 13 ) is disposed axially between the coil assembly ( 8 ) and the armature ( 9 ). 6. The diaphragm pump according to claim 1 , wherein the armature ( 9 ) is guided in a radial direction by at least one spring ( 15 ) which serves to restore the armature ( 9 ) to its original position after a current supply to the coil assembly ( 8 ) has ended. 7. The diaphragm pump according to claim 6 , wherein the at least one spring ( 15 ) for restoring the armature ( 9 ) to its original position is a progressive spring. 8. The diaphragm pump according to claim 1 , wherein the armature ( 9 ) embodies at least one cup-shaped receiving space ( 16 , 17 ) for the at least partial accommodation of at least one of the valve plate ( 10 ) and a spring ( 15 ). 9. The diaphragm pump according to claim 1 , wherein the armature ( 9 ) is a stamped/bent part. 10. The diaphragm pump according to claim 1 , wherein the electromagnet ( 7 ) comprises at least one of a DC magnet and a coil ( 8 ), the coil ( 8 ) having two inside diameters. 11. The diaphragm pump according to claim 1 , wherein the valve plate is covered at least partially on one side or both sides by at least one additional plate which consists of a non-magnetic material. 12. The diaphragm pump according to claim 11 , wherein the valve plate is covered at least partially on one side or both sides by at least one additional plate which is welded to the housing ( 11 ) of the electromagnet ( 7 ). 13. The diaphragm pump according to claim 1 , wherein the valve plate is covered at least partially on one side or both sides by at least one additional plate which is welded to the housing ( 11 ) of the electromagnet ( 7 ). 14. The diaphragm pump according to claim 1 , wherein the entire valve plate ( 10 ) is arranged between the coil assembly ( 8 ) and the armature ( 9 ). 15. The diaphragm pump according to claim 1 , wherein the armature ( 9 ) moves along an axis, wherein the working diaphragm ( 2 ) has a concave inner surface facing the working chamber ( 1 ), wherein the working diaphragm ( 2 ) has a central region along the axis that is contacted and moved by the armature ( 9 ), and radially exterior regions that are coupled to the valve plate ( 10 ), wherein the radially exterior regions are disposed axially closer to the coil assembly ( 8 ) than the central region is disposed axially to the coil assembly ( 8 ). 16. The diaphragm pump according to claim 1 , wherein the working chamber ( 1 ) is bordered only by the working diaphragm ( 2 ) and the valve plate ( 10 ). 17. The diaphragm pump according to claim 1 , further comprising a spring ( 15 ) coupled to both an additional plate ( 13 ) and the armature ( 9 ), wherein the spring ( 15 ) is disposed axially between the additional plate ( 13 ) and the armature ( 9 ). 18. An exhaust-gas aftertreatment system comprising a diaphragm pump according to claim 1 for delivering an exhaust-gas aftertreatment medium. 19. The diaphragm pump according to claim 18 , wherein at least one of the valve plate and the working diaphragm comprise damping grooves, which are arranged circumferentially. 20. A diaphragm pump for delivering a fluid, comprising a working chamber ( 1 ), which is delimited by a working diaphragm ( 2 ) and which is connected via a first valve ( 3 ) to an inlet ( 4 ) and via a second valve ( 5 ) to an outlet ( 6 ), and an electromagnet ( 7 ) which comprises a coil assembly ( 8 ) and an armature ( 9 ) which interacts with the coil assembly ( 8 ) and is operatively connected to the working diaphragm ( 2 ), wherein the first and second valves ( 3 , 5 ) are disposed in a valve plate ( 10 ), wherein the first and second valves ( 3 , 5 ) are axially disposed between the coil assembly ( 8 ) and the armature ( 9 ), and wherein the armature ( 9 ) is disposed entirely outside of the working chamber ( 1 ).
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