IP Library Granted Patent US 8,410,656
Granted Patent B2
US 8,410,656 · App. 12/609,652 · Granted Apr 2, 2013

Segmented stator assembly

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Quick Facts
Patent No.
US 8,410,656
App. No.
12/609,652
Granted
Apr 2, 2013
Kind
B2
Abstract

An electric machine and stator assembly are provided that include a continuous stator portion having stator teeth, and a tooth tip portion including tooth tips corresponding to the stator teeth of the continuous stator portion, respectively. The tooth tip portion is mounted onto the continuous stator portion.

Claims (33)

1. A stator assembly, comprising:

a continuous stator portion having a plurality of stator teeth;

a tooth tip portion comprising a plurality of tooth tips radially opposed to corresponding stator teeth of the continuous stator portion, respectively, wherein the tooth tip portion is mounted onto the continuous stator portion to join the tooth tips to the radially opposed corresponding stator teeth;

wherein the tooth tip portion comprises a continuous tooth tip structure formed from a single, continuous material; and

wherein the continuous tooth tip structure is formed from a bi-state material, wherein bridge portions arranged between the tooth tips are non-magnetic following a heat treatment.

2. The stator assembly of claim 1 , wherein the tooth tip portion is mounted onto the continuous stator portion by one of an adhesive, mechanical fastening, interference fit, or dovetails.

3. A stator assembly, comprising:

a continuous stator portion having a plurality of stator teeth;

a tooth tip portion comprising a plurality of tooth tips radially opposed to corresponding stator teeth of the continuous stator portion, respectively, wherein the tooth tip portion is mounted onto the continuous stator portion to join the tooth tips to the radially opposed corresponding stator teeth;

wherein the tooth tip portion is segmented into tooth tip segments each comprising two or more tooth tips, wherein the tooth tip segments are mounted onto the continuous stator portion.

4. The stator assembly of claim 3 , wherein the tooth tip segments comprise bridge portions disposed between the tooth tips.

5. The stator assembly of claim 4 , wherein the tooth tip segments and the bridge portions are formed from a bi-state material, wherein the bridge portions are non-magnetic following a heat treatment.

6. The stator assembly of claim 4 , wherein the tooth tip segments and the bridge portions are formed from a soft magnetic composite material.

7. The stator assembly of claim 4 , wherein the tooth tip portion further comprises bridge structures coupling adjacent tooth tip segments together.

8. The stator assembly of claim 7 , wherein the bridge structures are formed from a non-magnetic material.

9. The stator assembly of claim 7 , wherein the bridge structures are formed from a bi-state material.

10. An electric machine, comprising:

a stator assembly comprising:

a continuous stator portion having a plurality of stator teeth; and

a tooth tip portion comprising a plurality of tooth tips radially opposed to corresponding stator teeth of the continuous stator portion, respectively, wherein the tooth tip portion is mounted onto the continuous stator portion to join the tooth tips to the radially opposed corresponding stator teeth;

wherein the tooth tip portion comprises a continuous tooth tip structure formed from a single, continuous material;

wherein the continuous tooth tip structure comprises the tooth tips and bridge portions disposed between the tooth tips, and wherein the continuous tooth tip structure is formed from a bi-state material, wherein the bridge portions are non-magnetic following a heat treatment.

11. The electric machine of claim 10 , wherein the tooth tip portion is mounted onto the continuous stator portion by one of an adhesive, mechanical fastening, interference fit, or dovetails.

12. An electric machine, comprising:

a stator assembly comprising:

a continuous stator portion having a plurality of stator teeth; and

a tooth tip portion comprising a plurality of tooth tips radially opposed to corresponding stator teeth of the continuous stator portion, respectively, wherein the tooth tip portion is mounted onto the continuous stator portion to join the tooth tips to the radially opposed corresponding stator teeth;

wherein the tooth tip portion is segmented into tooth tip segments each comprising two or more tooth tips, wherein the tooth tip segments are mounted onto the continuous stator portion.

13. The electric machine of claim 12 , wherein the tooth tip segments comprise bridge portions disposed between the tooth tips.

14. The electric machine of claim 13 , wherein the tooth tip segments and the bridge portions are formed from a bi-state material, wherein the bridge portions are non-magnetic following a heat treatment.

15. The electric machine of claim 13 , wherein the tooth tip segments and the bridge portions are formed from a soft magnetic composite material.

16. The electric machine of claim 13 , wherein the tooth tip portion further comprises bridge structures coupling adjacent tooth tip segments together.

17. The electric machine of claim 16 , wherein the bridge structures are formed from a non-magnetic material.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2023
From: GENERAL ELECTRIC COMPANY
To: GE ENERGY POWER CONVERSION TECHNOLOGY LIMITED
Reel/Frame 066000/0704 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2010
From: LOKHANDWALLA, MURTUZA (NMN); ALEXANDER, JAMES PELLEGRINO; EL-REFAIE, AYMAN MOHAMED FAWZI; SHAH, MANOJ RAMPRASAD; QUIRION, OWEN SCOTT
To: GENERAL ELECTRIC COMPANY
Reel/Frame 023921/0110 →
CONFIRMATORY LICENSE Recorded Jan 6, 2010
From: G.E.GLOBAL RESEARCH
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 023742/0658 →
CONFIRMATORY LICENSE Recorded Jan 6, 2010
From: G.E.GLOBAL RESEARCH
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 023742/0670 →