IP Library Granted Patent US 9,028,228
Granted Patent B2
US 9,028,228 · App. 13/072,514 · Granted May 12, 2015

Pump

Inventors: Paul David Shepherd (Hampton in Arden, GB); Magnus Cooper (Coventry, GB)
Assignee: Concentric Birmingham Limited
F04D15/0027F04D13/027
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Quick Facts
Patent No.
US 9,028,228
App. No.
13/072,514
Granted
May 12, 2015
Kind
B2
Abstract

A pump may include a rotatable pumping part, a drive shaft, and a coupling for transmitting rotational movement of the drive shaft to the pumping part. The coupling may include a first part which is connected to the pumping part and a second part which is connected to the drive shaft, the first part having an electrically conductive material and the second part having an element for generating a magnetic field. The second part may be moveable relative to the first part to vary the degree of interaction between a magnetic field generated by the element and the electrically conductive material. Movement of the second part relative to the first part may be caused, at least in part, by a fluid controlled actuator having a piston moveable within a cylinder which is substantially non-rotating, such that the drive shaft and the second part are rotatable relative to the cylinder.

Claims (31)

1. A pump comprising:

a pumping part which is mounted for rotation in a pumping chamber formed by a housing, rotation of the pumping part causing pumping of fluid within the pumping chamber;

a drive shaft rotatable about a longitudinal axis; and

a coupling to transmit rotational movement of the drive shaft about its longitudinal axis to the pumping part, to cause the pumping part to rotate, the coupling comprising a first part which is connected to the pumping part and a second part which is connected to the drive shaft;

the first part being provided with an electrically conductive material and the second part being provided with an element for generating a magnetic field;

the second part being moveable relative to the first part to vary a degree of interaction between a magnetic field generated by the element and the electrically conductive material;

wherein movement of the second part relative to the first part is caused, at least in part, by a fluid controlled actuator which comprises a piston moveable within a cylinder which, in use, is substantially non-rotating, such that the drive shaft and the second part are rotatable relative to the cylinder.

2. A pump according to claim 1 wherein the degree of interaction between the magnetic field generated by the element and the electrically conductive material depends upon the size of a gap between the first part and the second part.

3. A pump according to claim 1 wherein the fluid controlled actuator comprises a pneumatic actuator.

4. A pump according to claim 1 wherein the piston comprises a substantially annular piston moveable within a substantially annular cylinder.

5. A pump according to claim 1 wherein the fluid controlled actuator and the second part are moveable relative to the first part in a direction substantially parallel to the longitudinal axis of the drive shaft.

6. A pump according to claim 3 wherein a flow of pressurised air which controls movement of the actuator is controlled by a valve.

7. A pump according to claim 3 wherein the pneumatic actuator is provided with compressed air by a pneumatic pump which also provides compressed air for an alternative system of an automotive vehicle.

8. A pump according to claim 1 wherein the pumping part comprises, a rotary impeller.

9. A pump according to claim 1 wherein the first part and the second part are separated from one another by a membrane.

10. A cooling system for an automotive engine comprising:

a pump Comprising a pumping part which is mounted for rotation in a pumping chamber formed by a housing, rotation of the pumping part causing pumping of fluid within the pumping chamber;

a drive shaft rotatable about a longitudinal axis; and a coupling to transmit rotational movement of the drive shaft about its longitudinal axis to the pumping part, to cause the pumping part to rotate, the coupling comprising a first part which is connected to the pumping part and a second part which is connected to the drive shaft,

the first part being provided with an electrically conductive material and the second part being provided with an element for generating a magnetic field,

the second part being moveable relative to the first part to vary a degree of interaction between a magnetic field generated by the element and the electrically conductive material;

wherein movement of the second part relative to the first part is caused, at least in part, by a fluid controlled actuator which includes a piston moveable within a cylinder which, in use, is substantially non-rotating, such that the drive shaft and the second part are rotatable relative to the cylinder.

11. A pump comprising:

a pumping part which is mounted for rotation in a pumping chamber formed by a housing, rotation of the pumping part causing pumping of fluid;

a drive shaft rotatable about a longitudinal axis;

a coupling to transmit rotational movement of the drive shaft about its longitudinal axis to the pumping part, to cause the pumping part to rotate, the coupling comprising a first part which is connected to the pumping part and a second part which is connected to the drive shaft, the first part being provided with an electrically conductive material and the second part being provided with an element for generating a magnetic field, the second part being moveable relative to the first part to vary a degree of interaction between a magnetic field generated by the element and the electrically conductive material; and

a fluid controlled actuator for causing the movement of the second part relative to the first part, the actuator including a piston moveable within a non-rotatable cylinder, and a biasing mechanism for biasing the second part towards the first part, such that in the event of inoperation of the actuator, the second part is urged towards the first part, so as to ensure an interaction between the magnetic field generated by the element and the electrically conductive material.

12. A pump according to claim 11 wherein the biasing mechanism is a compression spring.

13. A cooling system for an automotive engine comprising:

a pump comprising a pumping part which is mounted for rotation in a pumping chamber formed by a housing, rotation of the pumping part causing pumping of fluid;

a drive shaft rotatable about a longitudinal axis; and

a coupling to transmit rotational movement of the drive shaft about its longitudinal axis to the pumping part, to cause the pumping part to rotate, the coupling comprising a first part which is connected to the pumping part and a second part which is connected to the drive shaft, the first part being provided with an electrically conductive material and the second part being provided with an element for generating a magnetic field, the second part being moveable relative to the first part to vary a degree of interaction between a magnetic field generated by the element and the electrically conductive material, the pump also comprising a fluid controlled actuator for causing the movement of the second part relative to the first part, the actuator comprising a piston moveable within a non-rotatable cylinder, and a biasing mechanism for biasing the second part towards the first part, such that in the event of inoperation of the actuator, the second part is urged towards the first part, so as to ensure an interaction between the magnetic field generated by the element and the electrically conductive material.

Assignments (2)
CHANGE OF NAME Recorded Feb 6, 2013
From: HALDEX CONCENTRIC PUMPS LIMITED
To: CONCENTRIC BIRMINGHAM LIMITED
Reel/Frame 029768/0519 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2011
From: SHEPHERD, PAUL DAVID; COOPER, MAGNUS
To: HALDEX CONCENTRIC PUMPS LIMITED
Reel/Frame 026348/0661 →
Priority Claims (1)
GB 1005030.0 · Mar 25, 2010 · national
Continuity (1)
Related Publication 20110232593A1 · Sep 29, 2011