IP Library › Granted Patent US 10,819,169
Granted Patent B2
US 10,819,169 · App. 15/774,020 · Granted Oct 27, 2020

Axial gap rotating electrical machine and manufacturing method for the same

Inventors: Toru Ogawa (Chiyoda-ku, JP); Hideaki Arita (Chiyoda-ku, JP); Akihiro Daikoku (Chiyoda-ku, JP)
Assignee: MITSUBISHI ELECTRIC CORPORATION
H02K1/182H02K1/145H02K1/16H02K1/2793H02K15/024H02K15/085H02K16/04H02K21/24
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Quick Facts
Patent No.
US 10,819,169
App. No.
15/774,020
Filed
May 7, 2018
Granted
Oct 27, 2020
Kind
B2
Examiner
MOK, ALEX W
Art Unit
2834
USPC
310/156.35
Abstract

An axial gap rotating electrical machine, including: a rotor; a stator which includes a stator iron core, the stator iron core including: a core back having a hollow-disc shape; and a plurality of teeth, which axially extend from one axial surface of the core back, and are arrayed circumferentially, the plurality of teeth having distal ends axially facing the rotor; a housing having a bottom on which another axial surface of the core back, which is a surface axially opposite to the one axial surface of the core back, is superposed; and a fixing member, which is fixed to the bottom at a position radially shifted from the core back, and is configured to press the one axial surface of the core back toward the bottom.

Claims (76)

1. An axial gap rotating electrical machine comprising:

a rotor;

a stator which includes a stator iron core, the stator iron core including:

a core back having a hollow-disc shape; and

a plurality of teeth, which axially extend from one axial surface of the core back, and are arrayed circumferentially, the plurality of teeth having distal ends axially facing the rotor;

a housing having a bottom with which another axial surface of the core back is in contact; and

a fixing member configured to press the one axial surface of a portion of the core back which faces a slot being a space between circumferentially adjacent teeth toward the bottom, wherein the fixing member is in direct contact with one axial surface of the core back.

2. The axial gap rotating electrical machine according to claim 1 , wherein the fixing member is fixed to the bottom at a position radially shifted from the core back.

3. The axial gap rotating electrical machine according to claim 1 , wherein the stator iron core is formed of radially laminated electromagnetic steel plates.

4. The axial gap rotating electrical machine according to claim 1 ,

wherein a groove that is open to a slot side is formed so as to extend in a radially entire part in a portion of the core back which faces the slot being a space between circumferentially adjacent teeth, and

wherein the fixing member includes:

a radially-inner-side fixing portion that is fixed to the bottom on a radially inner side of the core back;

a radially-outer-side fixing portion that is fixed to the bottom on a radially outer side of the core back; and

a pressing portion that is fixed to the radially-inner-side fixing portion and the radially-outer-side fixing portion and in contact with one axial surface in the groove.

5. The axial gap rotating electrical machine according to claim 1 ,

wherein the core back includes:

a core back body having the plurality of teeth; and

a radially-inner-side overhanging portion extending radially inward from the core back body, and

wherein the fixing member is in contact with one axial surface in the radially-inner-side overhanging portion.

6. The axial gap rotating electrical machine according to claim 5 , wherein the fixing member includes:

a radially-inner-side fixing portion that is fixed to the bottom on a radially inner side of the radially-inner-side overhanging portion; and

a hook portion that is fixed to the radially-inner-side fixing portion and in contact with one axial surface in the radially-inner-side overhanging portion.

7. The axial gap rotating electrical machine according to claim 5 , wherein the fixing member includes:

a radially-inner-side fixing portion having a hollow-disc shape and fixed to the bottom on a radially inner side of the radially-inner-side overhanging portion; and

a pressing portion that is fixed to the radially-inner-side fixing portion and in contact with one axial surface in the radially-inner-side overhanging portion.

8. The axial gap rotating electrical machine according to claim 1 ,

wherein the core back includes:

a core back body having the plurality of teeth; and

a radially-outer-side overhanging portion extending radially outward from the core back body, and

wherein the fixing member is in contact with one axial surface in the radially-outer-side overhanging portion.

9. The axial gap rotating electrical machine according to claim 8 , wherein the fixing member includes:

a radially-outer-side fixing portion that is fixed to the bottom on a radially outer side of the radially-outer-side overhanging portion; and

a hook portion that is fixed to the radially-outer-side fixing portion and in contact with one axial surface in the radially-outer-side overhanging portion.

10. The axial gap rotating electrical machine according to claim 8 , wherein the fixing member includes:

a radially-outer-side fixing portion having a hollow-disc shape and fixed to the bottom on a radially outer side of the radially-outer-side overhanging portion; and

a pressing portion that is fixed to the radially-outer-side fixing portion and in contact with one axial surface in the radially-outer-side overhanging portion.

11. A manufacturing method for an axial gap rotating electrical machine of claim 1 , the manufacturing method comprising a stator iron core fixing step of fixing the stator iron core and the fixing member to the bottom of the housing.

12. The manufacturing method for an axial gap rotating electrical machine according to claim 11 , the method further comprising a winding step of mounting a winding on the stator iron core before the stator iron core fixing step.

13. The axial gap rotating electrical machine according to claim 1 , wherein the fixing member is L-shaped.

14. The axial gap rotating electrical machine according to claim 1 , wherein the fixing member extends between the circumferentially adjacent teeth into the slot.

15. An axial gap rotating electrical machine comprising:

a rotor;

a stator which includes a stator iron core, the stator iron core including:

a core back having a hollow-disc shape; and

a plurality of teeth, which axially extend from one axial surface of the core back, and are arrayed circumferentially, the plurality of teeth having distal ends axially facing the rotor and also having walls circumferentially facing each other between adjacent teeth;

a housing having a bottom with which another axial surface of the core back is in contact; and

a fixing member configured to press the one axial surface of the core back toward the bottom;

wherein a groove that is open to a slot side is formed so as to extend to a radially inner end in a portion of the core back which faces the slot being a space between circumferentially adjacent teeth, as well as a radially inner portion, and

wherein the fixing member includes:

a radially-inner-side fixing portion that is fixed to the bottom on a radially inner side of the core back; and

a hook portion that is fixed to the radially-inner-side fixing portion and in contact with one axial surface in the groove, wherein

the groove is spaced apart from the walls of the two adjacent teeth within the slot.

16. The axial gap rotating electrical machine according to claim 15 , wherein the radially-inner-side fixing portion is formed so as to extend along an inner circumferential surface of the core back.

17. The axial gap rotating electrical machine according to claim 15 , wherein

the groove has a step portion whose surface is lower than the surface of the core back.

18. An axial gap rotating electrical machine comprising:

a rotor;

a stator which includes a stator iron core, the stator iron core including:

a core back having a hollow-disc shape; and

a plurality of teeth, which axially extend from one axial surface of the core back, and are arrayed circumferentially, the plurality of teeth having distal ends axially facing the rotor and also having walls circumferentially facing each other between adjacent teeth;

a housing having a bottom with which another axial surface of the core back is in contact; and

a fixing member configured to press the one axial surface of the core back toward the bottom;

wherein a groove that is open to a slot side is formed so as to extend to a radially outer end in a portion of the core back which faces the slot being a space between circumferentially adjacent teeth, as well as a radially outer portion, and

wherein the fixing member includes:

a radially-outer-side fixing portion that is fixed to the bottom on a radially outer side of the core back; and

a hook portion that is fixed to the radially-outer-side fixing portion and in contact with one axial surface in the groove, wherein

the groove is spaced apart from the walls of the two adjacent teeth within the slot.

19. The axial gap rotating electrical machine according to claim 18 ,

wherein the core back includes:

a core back body in which the groove is formed; and

a thick portion protruding from the core back body in a direction opposite to the direction in which the tooth extends from the core back body, and

wherein the thick portion is arranged so as to overlap with the groove as seen in an axial direction.

20. The axial gap rotating electrical machine according to claim 18 , wherein the radially-outer-side fixing portion is formed so as to extend along an outer circumferential surface of the core back.

21. The axial gap rotating electrical machine according to claim 18 , wherein

the groove has a step portion whose surface is lower than the surface of the core back.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2018
From: OGAWA, TORU; ARITA, HIDEAKI; DAIKOKU, AKIHIRO
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 045729/0179 →
Priority Claims (1)
JP 2015-236443 · Dec 3, 2015 · national
Continuity (1)
Related Publication 20180323663A1 · Nov 8, 2018
Cited By (2)
US 12,665,452 US 12,683,440