IP Library Granted Patent US 12,644,469
Granted Patent B2
US 12,644,469 · App. 18/737,255 · Granted Jun 2, 2026

Fluid transfer pump and method of operation

Inventors: Matthew Wenger (Fort Wayne, IN); Canlong He (St. Peters, MO)
Assignee: The Gorman-Rupp Company
F04D29/426B23K20/10F04D13/068F04D13/0693F04D29/628
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Quick Facts
Patent No.
US 12,644,469
App. No.
18/737,255
Granted
Jun 2, 2026
Kind
B2
Abstract

A compact fluid transfer pump assembly and method of assembly is disclosed. The compact fluid transfer pump assembly includes a pump enclosure having a pump cavity sized to house a plurality of pump components and an inlet for receiving fluid, a motor enclosure coupled to the pump enclosure having a circular first end spaced by a cylindrical wall having an inner and an outer surface to a circular second end, a motor enclosure cavity formed therebetween within the cylindrical wall, the circular first end having an opening for receiving a motor, the circular second end formed by a bell wall, the motor enclosure removably couplable with a tank and an anti-rotation foot removably coupled with the motor enclosure and extending from the outer surface of the cylindrical wall of the motor enclosure, the anti-rotation foot to assist in coupling the pump assembly with an external fluid reservoir.

Claims (42)

1 . A compact fluid transfer pump assembly comprising:

a pump enclosure comprising a pump cavity sized to house a plurality of pump components, said pump enclosure having an inlet for receiving fluid;

a motor enclosure coupled to said pump enclosure, the motor enclosure comprising a circular first end spaced by a cylindrical wall having an inner and an outer surface to a circular second end, a motor enclosure cavity formed therebetween within said cylindrical wall, the circular first end having an opening for receiving a motor, the circular second end formed by a bell wall, the motor enclosure removably couplable with a tank;

an anti-rotation foot removably coupled with said motor enclosure and extending from said outer surface of said cylindrical wall of said motor enclosure, said anti-rotation foot to assist in coupling said pump assembly with an external fluid reservoir;

wherein said anti-rotation foot is in contact with and coupled to a motor carrier plate, said motor carrier plate being coupled to and in contact with said motor enclosure; and

wherein said motor carrier plate is in contact with a motor enclosure seat formed within said inner surface of said cylindrical wall of said motor enclosure, said motor enclosure seat sized to receive and be coupled with said motor carrier plate, said motor carrier plate and said motor enclosure seat forming a seated arrangement.

2 . The compact fluid transfer pump assembly of claim 1 , further comprising a plurality of elongated channels of said anti-rotation foot, wherein said plurality of elongated channels are asymmetrical with each other.

3 . The compact fluid transfer pump assembly of claim 2 further comprising a connector mounting point extending from one of said plurality of elongated channels of said anti-rotation foot.

4 . The compact fluid transfer pump assembly of claim 3 , wherein said connector mounting point comprises a T-shape.

5 . The compact fluid transfer pump assembly of claim 1 , wherein said motor carrier plate is further coupled with said motor enclosure seat by a motor clamp.

6 . The compact fluid transfer pump assembly of claim 5 , wherein said motor clamp comprises a counterbore formed with said motor carrier plate.

7 . The compact fluid transfer pump assembly of claim 5 , wherein said motor clamp further couples said anti-rotation foot to said motor enclosure of said compact fluid transfer pump assembly.

8 . The compact fluid transfer pump assembly of claim 1 further comprising a modular wiring joint arrangement.

9 . The compact fluid transfer pump assembly of claim 1 , wherein said motor enclosure further comprises a wire constraint apparatus formed within said bell wall of said second end.

10 . The compact fluid transfer pump assembly of claim 1 further comprising an outlet hose barb extending from said pump enclosure, said outlet hose barb providing an outlet for fluid that enters said pump enclosure through said inlet, wherein fluid flows between said inlet and said outlet hose barb along a fluid flow path.

11 . A method of assembling a compact fluid transfer pump assembly comprising the steps of:

providing a pump enclosure comprising a pump cavity sized to house a plurality of pump components, said pump enclosure having an inlet for receiving fluid and an outlet hose barb having an outlet for the passage of fluid, wherein fluid flows between said inlet and said outlet hose barb along a fluid flow path;

providing a motor enclosure coupled to the pump enclosure, the motor enclosure comprising a circular first end spaced by a cylindrical wall having an inner and an outer surface to a circular second end, forming a motor enclosure cavity therebetween within said cylindrical wall, the circular first end having an opening for receiving a motor, the circular second end formed by a bell wall, the motor enclosure removably couplable with a tank; and

providing an anti-rotation foot removably coupled with said motor enclosure and extending from said outer surface of said cylindrical wall of said motor enclosure, said anti-rotation foot comprising a plurality of elongated channels to assist in coupling said pump assembly with an external fluid reservoir, said anti-rotation foot having an integral connector mount extending from one of said plurality of said elongated channels.

12 . The method of assembling a compact fluid transfer pump assembly of claim 11 , the method further comprising the step of coupling a connector having a passage for a power cable to a plurality of electrical components within said compact fluid transfer pump assembly to said integral connector mount.

13 . The method of assembling a compact fluid transfer pump assembly of claim 11 further comprising the steps of:

providing a motor carrier plate,

forming a motor carrier plate seat within said inner surface of said cylindrical wall of said motor enclosure;

coupling said motor carrier plate with said motor carrier plate seat of said motor enclosure; and

coupling said motor carrier plate with said anti-rotation foot to form said compact fluid transfer pump assembly.

14 . The method of assembling a compact fluid transfer pump assembly of claim 11 further comprising the step of forming a double strain relieved wire joint within said end bell of said motor enclosure.

15 . The method of assembling a compact fluid transfer pump assembly of claim 11 further comprising the step of ultrasonically welding a double strain relieved wire joint within said end bell of said motor enclosure.

16 . A compact fluid transfer pump assembly comprising:

a pump enclosure comprising a pump cavity sized to house a plurality of pump components, said pump enclosure having an inlet for receiving fluid;

a motor enclosure coupled to the pump enclosure, the motor enclosure comprising a circular first end spaced by a cylindrical wall having an inner and an outer surface to a circular second end, a motor enclosure cavity formed therebetween within said cylindrical wall, the circular first end having an opening for receiving a motor, the circular second end formed by a bell wall, the motor enclosure removably couplable with a tank;

an anti-rotation foot removably coupled with said motor enclosure and extending from said outer surface of said cylindrical wall of said motor enclosure, said anti-rotation foot comprising a plurality of elongated channels to assist in coupling said pump assembly with a fluid reservoir;

a motor carrier plate removably coupled with said anti-rotation foot and said motor enclosure, said motor carrier plate forming a seated arrangement with a motor carrier plate seat formed within said inner surface of said cylindrical wall of said motor enclosure;

a wiring joint formed within said bell wall of said motor enclosure, said wiring joint having first and second wire strain reliefs; and

a potting cavity formed within said bell wall of said motor enclosure between said first and second wire strain reliefs.

17 . The compact fluid transfer pump assembly of claim 16 further comprising a motor carrier plate clamp to further secure said motor carrier plate with said motor carrier plate seat and said anti-rotation foot.

18 . A compact fluid transfer pump assembly comprising:

a pump enclosure comprising a pump cavity sized to house a plurality of pump components, said pump enclosure having an inlet for receiving fluid;

a motor enclosure coupled to said pump enclosure, the motor enclosure comprising a circular first end spaced by a cylindrical wall having an inner and an outer surface to a circular second end, a motor enclosure cavity formed therebetween within said cylindrical wall, the circular first end having an opening for receiving a motor, the circular second end formed by a bell wall, the motor enclosure removably couplable with a tank;

an anti-rotation foot removably coupled with said motor enclosure and extending from said outer surface of said cylindrical wall of said motor enclosure, said anti-rotation foot to assist in coupling said pump assembly with an external fluid reservoir;

a plurality of elongated channels of said anti-rotation foot, wherein said plurality of elongated channels are asymmetrical with each other; and

a connector mounting point extending from one of said plurality of elongated channels of said anti-rotation foot.

19 . The compact fluid transfer pump assembly of claim 18 , wherein said connector mounting point comprises a T-shape.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2026
From: WENGER, MATTHEW
To: THE GORMAN-RUPP COMPANY
Reel/Frame 074124/0594 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2026
From: HE, CANLONG
To: THE GORMAN-RUPP COMPANY
Reel/Frame 074124/0817 →
Continuity (2)
Provisional Application 63471894 · Jun 8, 2023
Related Publication 20240410390A1 · Dec 12, 2024
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