IP Library › Granted Patent US 10,826,343
Granted Patent B2
US 10,826,343 · App. 15/354,370 · Granted Nov 3, 2020

High speed electric machine with radially supported rotor magnets

Inventors: Nicholas Taylor Moore (Cincinnati, OH); Daniel Alan Niergarth (Cincinnati, OH); Brandon Wayne Miller (Liberty Township, OH); Paul Robert Gemin (Cincinnati, OH)
Assignee: General Electric Company
H02K1/2786H02K1/187H02K1/2793H02K1/28B64D2221/00H02K16/00Y02T50/60
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Quick Facts
Patent No.
US 10,826,343
App. No.
15/354,370
Granted
Nov 3, 2020
Kind
B2
Abstract

An electric machine is provided which includes a rotor disk extending along a radial direction and having a rotor flange attached to or formed integrally with the rotor disk and extending substantially along the axial direction. A plurality of rotor magnets are mounted on the rotor disk and supported by the rotor flange such that the rotor flange absorbs centrifugal loads exerted on the magnets and enables high speeds of operation.

Claims (33)

1. An electric machine defining an axial direction, a radial direction, and a circumferential direction, the electric machine comprising:

a rotor disk rotatable about the axial direction;

a rotor flange attached to or formed integrally with the rotor disk and extending from the rotor disk substantially along the axial direction;

a plurality of rotor magnets mounted to the rotor disk and supported by the rotor flange, wherein a north-south pole orientation of each of the plurality of rotor magnets extends along the axial direction, wherein the rotor disk, the rotor flange, and the plurality of rotor magnets are configured as part of a rotor assembly and the electric machine comprises a plurality of rotor assemblies; and

a plurality of stator assemblies, each of the plurality of stator assemblies being spaced apart and disconnected from adjacent stator assemblies, and wherein the rotor assemblies and the stator assemblies are alternately stacked together along the axial direction such that the stator assemblies are spaced apart from the plurality of rotor magnets along the axial direction to define an air gap, the plurality of stator assemblies being operable with the rotor magnets to generate an axial magnetic flux across the air gap and produce a torque.

2. The electric machine of claim 1 , wherein the electric machine defines a length along the axial direction and a diameter along the radial direction, and wherein the electric machine has a ratio of the length to the diameter of less than 0.25.

3. The electric machine of claim 1 , wherein the electric machine is configured to operate at a rotor tip speed of greater than 700 feet per second.

4. The electric machine of claim 1 , wherein the rotor disk defines a rotor tip, and wherein the rotor flange extends from the rotor disk proximate the rotor tip.

5. The electric machine of claim 1 , wherein the rotor disk defines a first side and a second side, the rotor flange extending from both the first side and the second side of the rotor disk along the axial direction such that the rotor disk is symmetric about a radial plane.

6. The electric machine of claim 1 , wherein the rotor magnets are mounted directly to the rotor flange.

7. The electric machine of claim 6 , wherein a clearance gap is defined between the rotor magnets and the rotor disk along the axial direction.

8. The electric machine of claim 1 , wherein the rotor disk and the rotor flange are integrally formed from a single piece of titanium.

9. An electric machine configured for driving an aeronautical propulsion device, the electric machine comprising:

a drive shaft mechanically coupled to the aeronautical propulsion device and defining an axial direction and a radial direction;

a rotor disk mounted to the drive shaft and being rotatable about the axial direction, the rotor disk extending from the drive shaft to a rotor tip substantially along the radial direction and defining a first side and a second side;

a rotor flange attached to or formed integrally with the rotor disk and extending from both the first side and the second side of the rotor disk substantially along the axial direction such that the rotor disk is symmetric about a radial plane;

a plurality of rotor magnets mounted to the rotor disk and supported by the rotor flange; and

a stator assembly spaced apart from the plurality of rotor magnets along the axial direction to define an air gap, the stator assembly being operable with the rotor magnets to generate an axial magnetic flux across the air gap and produce a torque,

wherein the rotor disk, the rotor flange, and the plurality of rotor magnets are configured as part of a rotor assembly, wherein the electric machine further comprises a plurality of rotor assemblies and a plurality of stator assemblies, each of the plurality of stator assemblies being spaced apart and disconnected from adjacent stator assemblies, the rotor assemblies and the stator assemblies being alternately stacked together along the axial direction.

10. The electric machine of claim 9 , wherein a north-south pole orientation of each of the plurality of rotor magnets extends along the axial direction.

11. The electric machine of claim 9 , wherein the electric machine defines a length along the axial direction and a diameter along the radial direction, and wherein the electric machine has a ratio of the length to the diameter of less than 0.25.

12. The electric machine of claim 9 , wherein the rotor magnets are mounted directly to the rotor flange, and wherein a clearance gap is defined between the rotor magnets and the rotor disk along the axial direction.

13. The electric machine of claim 9 , wherein the rotor disk and the rotor flange are integrally formed from a single piece of titanium.

14. An electric machine defining an axial direction, a radial direction, and a circumferential direction, the electric machine comprising:

a rotor disk rotatable about the axial direction;

a rotor flange attached to or formed integrally with the rotor disk and extending from the rotor disk substantially along the axial direction;

a plurality of rotor magnets mounted to the rotor disk and supported by the rotor flange; and

a stator assembly spaced apart from the plurality of rotor magnets along the axial direction to define an air gap, the stator assembly being operable with the rotor magnets to generate an axial magnetic flux across the air gap and produce a torque,

wherein the rotor disk, the rotor flange, and the plurality of rotor magnets are configured as part of a rotor assembly, wherein the electric machine further comprises a plurality of rotor assemblies and a plurality of stator assemblies, each of the plurality of stator assemblies being spaced apart and disconnected from adjacent stator assemblies, the rotor assemblies and the stator assemblies being alternately stacked together along the axial direction.

15. The electric machine of claim 14 , wherein a north-south pole orientation of each of the plurality of rotor magnets extends along the axial direction.

16. The electric machine of claim 14 , wherein

the outermost stator assemblies along the axial direction comprise stator back irons.

17. The electric machine of claim 14 , wherein the rotor disk and the rotor flange are integrally formed from a non-magnetic material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2016
From: MOORE, NICHOLAS TAYLOR; NIERGARTH, DANIEL ALAN; MILLER, BRANDON WAYNE; GEMIN, PAUL ROBERT
To: GENERAL ELECTRIC COMPANY
Reel/Frame 040361/0313 →
Continuity (1)
Related Publication 20180138766A1 · May 17, 2018