IP Library Granted Patent US 10,648,461
Granted Patent B2
US 10,648,461 · App. 16/253,541 · Granted May 12, 2020

Metering pump and metering system

Inventor: Wolf-Dieter Wichmann (Neetzow, DE)
Assignee: BASF SE
F04B9/1056F04B9/1095F04B9/111F04B9/113F04B13/00F04B13/02B29B7/603
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Quick Facts
Patent No.
US 10,648,461
App. No.
16/253,541
Granted
May 12, 2020
Kind
B2
Abstract

The invention relates to a metering pump having a hydraulic drive ( 12 ) for supplying a hydraulic fluid under pressure. The metering pump furthermore comprises a housing ( 2 ) and an oscillating piston ( 3 ), which is accommodated in the housing ( 2 ) in such a way that at least a first and a second hydraulic chamber ( 9 - 1, 9 - 2 ) and a first ( 6 - 1 ) and a second delivery chamber ( 6 - 2 ) are formed, wherein the oscillating piston ( 3 ) has at least a first driving surface ( 10 - 1 ) in the first hydraulic chamber ( 9 - 1 ) and at least a second driving surface ( 10 - 2 ) in the second hydraulic chamber ( 9 - 2 ), and the hydraulic chambers ( 9 - 1, 9 - 2 ) communicate with the hydraulic drive, thus enabling the oscillating piston ( 3 ) to be moved backward and forward between a first and a second position by the hydraulic fluid, wherein, during the movement from the first to the second position, the volume of the first delivery chamber ( 6 - 1 ) is enlarged and the volume of the second delivery chamber ( 6 - 2 ) is reduced and, during the movement from the second to the first position, the volume of the second delivery chamber ( 6 - 2 ) is enlarged and the volume of the first delivery chamber ( 6 - 1 ) is reduced. The invention furthermore relates to a metering system for mixing two fluids and a metering system for metering at least one fluid.

Claims (35)

1. A metering pump having

a hydraulic drive for supplying a hydraulic fluid under pressure, a housing,

an oscillating piston, which is accommodated in the housing in such a way that at least a first and a second hydraulic chamber and a first and a second delivery chamber are formed, and

an adjusting device, which is coupled to the oscillating piston in such a way that the movement of the oscillating piston can be limited in such a way that different minimum and/or maximum volumes can be set for at least one of the delivery chambers,

wherein the oscillating piston has at least a first driving surface in the first hydraulic chamber and at least a second driving surface in the second hydraulic chamber, and the hydraulic chambers communicate with the hydraulic drive, thus enabling the oscillating piston to be moved backward and forward between a first and a second position by the hydraulic fluid,

wherein, during the movement from the first to the second position, the volume of the first delivery chamber is enlarged and the volume of the second delivery chamber is reduced and, during the movement from the second to the first position, the volume of the second delivery chamber is enlarged and the volume of the first delivery chamber is reduced

wherein the adjusting device comprises at least one stop piston having at least one stop piston surface, which limits the space in the delivery chamber which is assigned to the stop piston,

and

wherein the at least one stop piston communicates with the hydraulic drive at the at least one stop piston surface.

2. The metering pump of claim 1 , wherein

the adjusting device comprises two stop pistons, wherein the first stop piston is arranged in the first delivery chamber and the second stop piston is arranged in the second delivery chamber.

3. The metering pump claim 1 , wherein

the oscillating piston and the stop piston or pistons can be moved backward and forward in a cylindrical cavity of the housing.

4. The metering pump of claim 1 , wherein

the stop piston or pistons can in each case be moved backward and forward between at least two oppositely oriented stops in the cylindrical cavity of the housing.

5. The metering pump of claim 1 , wherein

at least one stop piston communicates with the hydraulic drive at a first stop piston surface, which lies outside the delivery chamber assigned to said stop piston, and can be supplied with the hydraulic fluid in such a way that a force that counteracts an enlargement of the associated delivery chamber is exerted on the stop piston.

6. The metering pump of claim 1 , wherein

at least one stop piston communicates with the hydraulic drive at a second stop piston surface, which lies outside the delivery chamber assigned to said stop piston, and can be supplied with the hydraulic fluid in such a way that a force that counteracts a reduction in the size of the associated delivery chamber is exerted on the stop piston.

7. The metering pump of claim 1 , wherein

at least one of the delivery chambers is assigned at least two outlet lines and at least two different maximum volumes can be set in such a way by means of the adjusting device that, at a first maximum volume, at least one outlet line opens into the delivery chamber and, at a second maximum volume, only the other of the two outlet lines opens into the delivery chamber.

8. A metering system for mixing two fluids, having

the metering pump of claim 1 ,

a first tank for the first fluid, which is in fluid communication with the first delivery chamber of the metering pump via a first inlet line, and

a second tank for the second fluid, which is in fluid communication with the second delivery chamber of the metering pump via a second inlet line,

wherein the outlet line of the first delivery chamber and the outlet line of the second delivery chamber are combined for metered mixing of the fluids.

9. A metering system for metering at least one fluid, having

the metering pump of claim 7 ,

at least one tank for the fluid to be metered,

wherein the tank is in fluid communication with the first and the second delivery chamber of the metering pump via an inlet line, wherein the other of the two outlet lines of the first delivery chamber is a metering line for metering the fluid, and

one of the two outlet lines of the first delivery chamber is in fluid communication with the tank, thus enabling fluid to be pumped back into the tank via one outlet line in order to circulate the fluid present in the tank.

10. The metering system of claim 9 , wherein

at least two different maximum volumes can be set in such a way by means of the adjusting device that, at a first maximum volume, the two outlet lines open into the first delivery chamber and, at a second maximum volume, only the other of the two outlet lines opens into the first delivery chamber.

11. The metering system of claim 9 , wherein

a first valve is arranged in one outlet line, and a second valve is arranged in the other outlet line, and the opening pressure of the second valve is higher than the opening pressure of the first valve.

Priority Claims (1)
EP 13170604 · Jun 5, 2013 · regional
Continuity (2)
Continuation 14894799
Related Publication 20190154017A1 · May 23, 2019