IP Library › Granted Patent US 12,021,412
Granted Patent B2
US 12,021,412 · App. 18/088,941 · Granted Jun 25, 2024

Core piece, stator core, stator, and rotary electric machine

Inventors: Tatsuya Saito (Osaka, JP); Tomoyuki Ueno (Osaka, JP)
Assignees: SUMITOMO ELECTRIC INDUSTRIES, LTD.; SUMITOMO ELECTRIC SINTERED ALLOY, LTD.
H02K1/148H02K1/02H02K15/022H02K21/24
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Quick Facts
Patent No.
US 12,021,412
App. No.
18/088,941
Granted
Jun 25, 2024
Kind
B2
Abstract

A core piece that is circularly arranged to construct a stator core of an axial gap type rotary electric machine includes: a first member in a column form extending in an axial direction of the stator core; a second member in a plate form disposed on a first end side of the axial direction in the first member; and a third member in a plate form disposed on a second end side of the axial direction in the first member, the first member has a peripheral surface connecting with the second member and the third member, the second member has a protruding portion projecting outwardly from the peripheral surface of the first member, the third member has a protruding portion projecting outwardly from the peripheral surface of the first member, and the first member, the second member, and the third member are configured by an integrally molded green compact.

Claims (32)

1. A member constituting a core piece that is circularly arranged to construct a stator core of an axial gap type rotary electric machine, the member being made of a green compact, the member comprising:

an outer peripheral surface located on an outer peripheral side of the stator core;

an inner peripheral surface located on an inner peripheral side of the stator core;

a first lateral surface located on a first direction side of a circumferential direction of the stator core, and connecting with the outer peripheral surface and the inner peripheral surface; and

a second lateral surface located on a second direction side of the circumferential direction of the stator core, and connecting with the outer peripheral surface and the inner peripheral surface,

wherein a length between the first lateral surface and the second lateral surface in the outer peripheral surface is longer than a length between the first lateral surface and the second lateral surface in the inner peripheral surface,

each of the first lateral surface and the second lateral surface has:

a first parallel face connecting with the outer peripheral surface;

a second parallel face connecting with the inner peripheral surface; and

a first inclined face connecting with the first parallel face and the second parallel face, and

the first parallel face of the first lateral surface and the first parallel face of the second lateral surface are parallel with each other,

the second parallel face of the first lateral surface and the second parallel face of the second lateral surface are parallel with each other, and

the first parallel face of the first lateral surface and the second parallel face of the first lateral surface are parallel with each other.

2. The member according to claim 1 , wherein

an angle formed by an extended plane of the first parallel face and the first inclined face in the first lateral surface is greater than or equal to 5° and less than or equal to 20°, and

an angle formed by an extended plane of the first parallel face and the first inclined face in the second lateral surface is greater than or equal to 5° and less than or equal to 20°.

3. The member according to claim 1 , wherein

the outer peripheral surface of the member has a curved surface that is convex toward the outer peripheral side, and

the inner peripheral surface of the member has a curved surface that is convex toward the inner peripheral side.

4. The member according to claim 1 , wherein among sites obtained by dividing the member into three parts with an imaginary plane along the second parallel face of the first lateral surface, and with an imaginary plane along the second parallel face of the second lateral surface, difference in relative density between a first site on the first direction side of the circumferential direction and a second site on the second direction side of the circumferential direction, and a third site between the first site and the second site is less than or equal to 5.0%.

5. The member according to claim 1 , wherein the green compact has a relative density of greater than or equal to 85%.

6. The member according to claim 1 , wherein

the green compact is configured by an aggregate of a plurality of coated soft magnetic particles having insulating coating on surfaces of soft magnetic particles, and

the soft magnetic particles are iron-based particles formed of at least one metal selected from the group consisting of pure iron, an Fe—Si-based alloy, an Fe—Al-based alloy, and an Fe—Si—Al-based alloy.

7. A stator core of an axial gap type rotary electric machine, the stator core having a plurality of core pieces that are circularly arranged, each of the plurality of core pieces being constituted by the member according to claim 1 .

8. A stator of an axial gap type rotary electric machine, comprising:

the stator core according to claim 7 , and

a coil arranged on the stator core.

9. An axial gap type rotary electric machine comprising a rotor and a stator,

the rotor and the stator being arranged to face with each other in an axial direction,

the stator being the stator according to claim 8 .

10. The member according to claim 1 , wherein the member comprises: a first member in a column form extending in an axial direction of the stator core; a second member in a plate form disposed on a first end side of the axial direction of the first member; and a third member in a plate form disposed on a second end side of the axial direction of the first member.

Priority Claims (1)
JP 2020-082831 · May 8, 2020 · national
Continuity (2)
Continuation 17760775
Related Publication 20230134477A1 · May 4, 2023