IP Library Granted Patent US 12680543
Granted Patent B2
US 12680543 · App. 18/924,899 · Granted Jul 14, 2026

Pump and method for adjusting the delivery rate of a pump

Inventors: Eike Steffen Korte (Obernkirchen, DE); David Johannes Blatt (Obernkirchen, DE)
Assignee: ITT Bornemann GmbH
F04C14/24F04C15/06F04C2/126
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Quick Facts
Patent No.
US 12680543
App. No.
18/924,899
Granted
Jul 14, 2026
Kind
B2
Abstract

A pump for conveying a medium having a suction-side inlet, a pressure-side outlet, a suction chamber, and a conveyance housing. The conveyance housing having a pressure chamber and a transport element. The transport element rotatably supported in the conveyance housing for conveying the medium from the suction chamber into the pressure chamber. The pump having a recirculation line via which the medium is supplied from the pressure chamber to the suction chamber, wherein an exchangeable insert having an unchanging flow area is arranged in the recirculation line.

Claims (37)

1 . A pump for conveying a medium comprising:

a suction-side inlet;

a pressure-side outlet;

a suction chamber;

a conveyance housing comprising a pressure chamber;

a transport element rotatably supported in the conveyance housing, wherein the transport element is configured to convey a medium from the suction chamber into the pressure chamber;

a recirculation line configured to supply the medium from the pressure chamber to the suction chamber; and

an exchangeable insert comprising a fixed flow area positioned in the recirculation line, wherein the exchangeable insert comprises a bolt configured to be screwed in, clamped in, or inserted.

2 . The pump of claim 1 , wherein the exchangeable insert is positioned in an opening of the conveyance housing or a socket positioned in the opening of the conveyance housing.

3 . The pump of claim 2 , wherein the socket corresponds to the opening and the insert corresponds to the socket.

4 . The pump of claim 2 , wherein the socket penetrates the suction chamber.

5 . The pump of claim 2 , wherein the insert corresponds to the opening.

6 . The pump of claim 1 , wherein the insert comprises a longitudinal bore and a transverse bore that are fluidly connected to one another, wherein the medium travels from the pressure chamber into the insert via the longitudinal bore and out of the insert into the suction chamber via the transverse bore.

7 . The pump of claim 1 , wherein the fixed flow area of the insert is the smallest flow area of the recirculation line.

8 . The pump of claim 1 , wherein the insert comprises a sealing element, wherein the sealing element is an O-ring or a sealing tape.

9 . A method for adjusting the delivery rate of a pump for conveying a medium, the method comprising:

determining the effective delivery rate of a pump at a predefined speed of the transport element;

determining the deviation of the effective delivery rate of the pump at the predefined speed of a transport element compared to a target delivery rate at the predefined speed of the transport element; and

inserting an insert having a fixed flow area into a recirculation line, wherein the fixed flow area of the insert has dimensions such that the effective delivery rate of the pump at the predefined speed of the transport element corresponds to the target delivery rate at the predefined speed of the transport element.

10 . The method of claim 9 , wherein the pump comprises:

a suction-side inlet;

a pressure-side outlet;

a suction chamber;

a conveyance housing comprising a pressure chamber;

a transport element rotatably supported in the conveyance housing configured to convey the medium from the suction chamber into the pressure chamber; and

a recirculation line configured to transport the medium from the pressure chamber to the suction chamber.

11 . The method of claim 9 , wherein the determination of the effective delivery rate of the pump is carried out at at least one of a defined viscosity of the medium or a defined differential pressure.

12 . A pump for conveying a medium comprising:

a suction-side inlet;

a pressure-side outlet;

a suction chamber;

a conveyance housing comprising a pressure chamber;

a transport element rotatably supported in the conveyance housing, wherein the transport element is configured to convey a medium from the suction chamber into the pressure chamber;

a recirculation line configured to supply the medium from the pressure chamber to the suction chamber; and

an exchangeable insert comprising:

a fixed flow area positioned in the recirculation line; and

a longitudinal bore and a transverse bore that are fluidly connected to one another, wherein the medium travels from the pressure chamber into the exchangeable insert via the longitudinal bore and out of the insert into the suction chamber via the transverse bore.