IP Library Granted Patent US 9,030,071
Granted Patent B2
US 9,030,071 · App. 13/350,866 · Granted May 12, 2015

Electrical machines

Inventors: Stuart Ian Bradley (Leicestershire, GB); David Alabaster (Warwickshire, GB)
Assignee: GE Energy Power Conversion Technology Ltd
H02K1/2786H02K1/278H02K16/00H02K16/04H02K21/12H02K41/03
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Quick Facts
Patent No.
US 9,030,071
App. No.
13/350,866
Granted
May 12, 2015
Kind
B2
Abstract

An electrical machine 20, 48 comprises a first stator 22 and a second stator 24 spaced from the first stator 22 , at least one of the first stator 22 and the second stator 24 including a guide arrangement 26, 50 . The electrical machine 20, 48 also includes a plurality of rotor elements 30, 46 located between the first stator 22 and the second stator 24 and cooperating with the guide arrangement 26, 50 for movement relative to the first stator 22 and the second stator 24 . Adjacent rotor elements 30, 46 cooperate with each other so that the rotor elements 30, 46 form a rotor and at least one of the rotor elements 30, 46 includes a coupling element 32 to transfer force to or from the rotor. Each rotor element 30, 46 includes a first support surface 30 a which faces towards the first stator 22 and defines a first air gap with the first stator 22 , a second support surface 30 b which faces towards the second stator 24 and defines a second air gap with the second stator 24 , and one or more magnets 34 mounted on each of the first and second support surfaces 30 a, 30 b in the first and second air gaps.

Claims (22)

1. An electrical machine comprising:

a first stator, a second stator spaced from the first stator, one of the first stator and the second stator including a guide arrangement;

a plurality of rotor elements located between the first stator and the second stator and cooperating with the guide arrangement for movement relative to the first stator and the second stator, adjacent rotor elements cooperating with each other so that the rotor elements form a rotor and at least one of the rotor elements including a coupling element to transfer force to or from the rotor;

each rotor element including:

a first support surface facing towards the first stator and defining a first air gap with the first stator;

a second support surface facing towards the second stator and defining a second air gap with the second stator;

one or more magnets mounted on each of the first and second support surfaces in the first and second air gaps; and

two pairs of axially spaced rolling elements mounted thereon and the rotor element encases opposing ends of the first support surface and the second support surface.

2. The electrical machine of claim 1 , wherein the first stator and the second stator each include a respective first and second guide arrangement and each rotor element cooperates with both the first and second guide arrangements.

3. The electrical machine of claim 2 , wherein each rotor element includes a first rotor section that cooperates with the first guide arrangement and a second rotor section that cooperates with the second guide arrangement.

4. The electrical machine of claim 3 , wherein the first support surface is provided on the first rotor section and the second support surface is provided on the second rotor section.

5. The electrical machine of claim 3 , wherein the first and second rotor sections are movable relative to each other.

6. The electrical machine of claim 5 , wherein each rotor element includes a coupling member to permit said relative movement between the first and second rotor sections.

7. The electrical machine of claim 6 , wherein the coupling member is configured to prevent relative movement between the first and second rotor sections in an operational direction of the rotor.

8. The electrical machine of claim 5 , wherein the first and second rotor sections are resiliently biased apart and into contact respectively with the first and second guide arrangements.

9. The electrical machine of claim 1 , wherein the electrical machine is a rotating electrical machine in which the first stator is an internal substantially cylindrical stator and the second stator is an external substantially cylindrical stator, the internal and external substantially cylindrical stators being substantially concentric, the rotor elements being arranged circumferentially for rotation about the guide arrangement and cooperating in the circumferential direction to form an annular rotor.

10. The electrical machine of claim 2 , wherein the electrical machine is a rotating electrical machine in which the first stator is an internal substantially cylindrical stator and the second stator is an external substantially cylindrical stator, the internal and external substantially cylindrical stators being substantially concentric, the rotor elements being arranged circumferentially for rotation about the guide arrangement and cooperating in the circumferential direction to form an annular rotor.

11. The electrical machine of claim 10 , wherein the first guide arrangement extends circumferentially around the internal substantially cylindrical stator.

12. The electrical machine of claim 10 , wherein the second guide arrangement extends circumferentially around the external substantially cylindrical stator.

13. The electrical machine of claim 11 , wherein the second guide arrangement extends circumferentially around the external substantially cylindrical stator.

14. The electrical machine of claim 1 , wherein adjacent rotor elements contact each other to provide said cooperation between adjacent rotor elements.

15. The electrical machine of claim 1 , wherein adjacent rotor elements are linked together to provide said cooperation between adjacent rotor elements.

Assignments (2)
CHANGE OF NAME Recorded Nov 14, 2013
From: CONVERTEAM TECHNOLOGY LTD
To: GE ENERGY POWER CONVERSION TECHNOLOGY LIMITED
Reel/Frame 031606/0583 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2012
From: BRADLEY, STUART IAN; ALABASTER, DAVID
To: CONVERTEAM TECHNOLOGY LTD.
Reel/Frame 027824/0733 →
Priority Claims (1)
EP 11000370 · Jan 19, 2011 · regional
Continuity (1)
Related Publication 20130020893A1 · Jan 24, 2013