IP Library › Granted Patent US 10,432,041
Granted Patent B2
US 10,432,041 · App. 15/756,225 · Granted Oct 1, 2019

Stator, motor, compressor, and refrigerating and air-conditioning apparatus

Inventors: Masahiro Nigo (Tokyo, JP); Shuichi Kitano (Tokyo, JP); Yasusi Shoji (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
H02K1/148F04C18/0215F04C23/008F04C29/0085F25B31/023F25B31/026H02K1/02H02K1/276H02K1/2766H02K3/18H02K3/325H02K3/34F04C18/356F04C2210/263F25B2400/121H02K2203/12H02K2213/03
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Quick Facts
Patent No.
US 10,432,041
App. No.
15/756,225
Granted
Oct 1, 2019
Kind
B2
Abstract

A stator includes a winding and a plurality of split core parts arranged annularly in a circumferential direction around an axis line. Each of the plurality of split core parts includes a yoke part, a tooth part, a connection part including a curved surface, and a first insulator provided on an end part of the tooth part. The first insulator includes a first protruding part protruding beyond the curved surface.

Claims (78)

1. A stator comprising:

a winding; and

a plurality of split core parts arranged annularly in a circumferential direction around an axis line, each of the plurality of split core parts including:

a yoke part,

a tooth part extending in a radial direction toward the axis line from the yoke part,

a connection part including a curved surface connecting the yoke part and the tooth part,

a first insulator having an outer edge and provided on an end part of the tooth part in an axis line direction parallel to the axis line, and

a second insulator covering a side surface of the tooth part facing in the circumferential direction, wherein

the winding is wound around the connection part and the tooth part with the first insulator and the second insulator in between,

the first insulator includes a first protruding part protruding beyond the curved surface, and

a length from a position farthest from the curved surface, of the outer edge of the first protruding part to the curved surface is larger than five times a thickness of the second insulator.

2. The stator according to claim 1 , wherein the first protruding part includes a first sub-winding frame supporting the winding.

3. The stator according to claim 2 , wherein a gap is formed between the winding supported by the first sub-winding frame and the curved surface.

4. The stator according to claim 2 , wherein

the first protruding part further includes a third sub-winding frame, and

a level difference is formed by the first sub-winding frame and the third sub-winding frame.

5. The stator according to claim 1 , wherein the first insulator includes a second protruding part protruding beyond the tooth part in a direction perpendicular to the radial direction.

6. The stator according to claim 5 , wherein the second protruding part includes a second sub-winding frame supporting the winding.

7. The stator according to claim 1 , wherein

the yoke part includes a first engagement part, and

the first insulator includes a second engagement part engaging with the first engagement part.

8. The stator according to claim 1 , wherein a radius of curvature of the curved surface of the connection part is 2.5 mm or more and 5 mm or less.

9. A motor comprising:

a stator including a plurality of split core parts arranged annularly in a circumferential direction around an axis line, and a winding; and

a rotor supported rotatably inside the stator,

each of the plurality of split core parts including:

a yoke part,

a tooth part extending in a radial direction toward the axis line from the yoke part,

a connection part including a curved surface connecting the yoke part and the tooth part,

a first insulator having an outer edge and provided on an end part of the tooth part in an axis line direction parallel to the axis line, and

a second insulator covering a side surface of the tooth part facing in the circumferential direction, wherein

the winding is wound around the connection part and the tooth part with the first insulator and the second insulator in between,

the first insulator includes a protruding part protruding beyond the curved surface, and

a length from a position farthest from the curved surface, of the outer edge of the protruding part to the curved surface is larger than five times a thickness of the second insulator.

10. The motor according to claim 9 , wherein

the rotor includes a permanent magnet,

the permanent magnet is a rare-earth magnet including neodymium, iron, and boron as principal components,

residual magnetic flux density of the permanent magnet at 20° C. is 1.27 T or more and 1.42 T or less, and

coercivity of the permanent magnet at 20° C. is 1671 kA/m or more and 1922 kA/m or less.

11. The motor according to claim 9 , further comprising a housing, wherein

the stator is fixed in the housing by shrink fit.

12. A compressor comprising:

a motor;

a compression mechanism driven by the motor; and

a sealed container containing the motor and the compression mechanism,

the motor including:

a stator including a plurality of split core parts arranged annularly in a circumferential direction around an axis line, and a winding, and

a rotor supported rotatably inside the stator,

each of the plurality of split core parts including:

a yoke part,

a tooth part extending in a radial direction toward the axis line from the yoke part,

a connection part including a curved surface connecting the yoke part and the tooth part,

an first insulator having an outer edge and provided on an end part of the tooth part in an axis line direction parallel to the axis line, and

a second insulator covering a side surface of the tooth part facing in the circumferential direction, wherein

the winding is wound around the connection part and the tooth part with the first insulator and the second insulator in between,

the first insulator includes a protruding part protruding beyond the curved surface, and

a length from a position farthest from the curved surface, of the outer edge of the protruding part to the curved surface is larger than five times a thickness of the second insulator.

13. A refrigerating and air-conditioning apparatus comprising:

an outdoor unit including a first blower, a condenser, a throttle device, and a compressor;

an indoor unit including a second blower and an evaporator; and

a refrigerant pipe connecting the outdoor unit and the indoor unit,

the compressor including:

a motor,

a compression mechanism driven by the motor, and

a sealed container containing the motor and the compression mechanism,

the motor including:

a stator including a plurality of split core parts arranged annularly in a circumferential direction around an axis line, and a winding, and

a rotor supported rotatably inside the stator,

each of the plurality of split core parts including:

a yoke part,

a tooth part extending in a radial direction toward the axis line from the yoke part,

a connection part including a curved surface connecting the yoke part and the tooth part,

an first insulator having an outer edge and provided on an end part of the tooth part in an axis line direction parallel to the axis line, and

a second insulator covering a side surface of the tooth part facing in the circumferential direction, wherein

the winding is wound around the connection part and the tooth part with the first insulator and the second insulator in between,

the first insulator includes a protruding part protruding beyond the curved surface, and

a length from a position farthest from the curved surface, of the outer edge of the protruding part to the curved surface is larger than five times a thickness of the second insulator.

14. The stator according to claim 1 , wherein the second insulator is a film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2018
From: NIGO, MASAHIRO; KITANO, SHUICHI; SHOJI, YASUSI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 045470/0181 →
Continuity (1)
Related Publication 20180248419A1 · Aug 30, 2018