IP Library › Granted Patent US 11,817,740
Granted Patent B2
US 11,817,740 · App. 16/461,412 · Granted Nov 14, 2023

Electric motor, air conditioner, and method for producing electric motor

Inventors: Hiroki Aso (Tokyo, JP); Takaya Shimokawa (Tokyo, JP); Ryogo Takahashi (Tokyo, JP); Takanori Watanabe (Tokyo, JP); Kazuma Nomoto (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
H02K1/146F24F1/20H02K1/185H02K9/227H02K15/12H02K21/16
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Quick Facts
Patent No.
US 11,817,740
App. No.
16/461,412
Granted
Nov 14, 2023
Kind
B2
Abstract

An electric motor includes a rotor, a stator assembly, and a plurality of heat dissipation members fixed to the stator assembly and to release heat of the stator assembly.

Claims (60)

1. An electric motor comprising:

a rotor;

a plurality of heat dissipation members; and

a stator assembly including a stator, a printed board, and a resin fixing the plurality of heat dissipation members, wherein

the printed board is fixed to the stator without using a bolt, and the stator and the printed board are united with the resin,

the plurality of heat dissipation members is provided on only one end side of the stator assembly in an axial direction of the electric motor,

a part of the plurality of heat dissipation members is exposed to an outside of the resin,

each of the plurality of heat dissipation members is engaged with the resin, and

each of the plurality of heat dissipation members is spaced apart from and separated from the printed board by the resin.

2. The electric motor according to claim 1 , wherein

each of the plurality of heat dissipation members includes a plurality of heat dissipation fins each extending in a radial direction of the stator assembly.

3. The electric motor according to claim 1 , wherein

a first heat dissipation member of the plurality of heat dissipation members includes a first heat dissipation fin,

a second heat dissipation member of the plurality of heat dissipation members includes a second heat dissipation fin, and

the first heat dissipation fin and the second heat dissipation fin are oriented in an identical direction.

4. The electric motor according to claim 1 , wherein a planar shape of each of the plurality of heat dissipation members is a rectangle, a trapezoid, or a fan shape.

5. The electric motor according to claim 1 , wherein the plurality of heat dissipation members are radially arranged from a rotation center of the rotor, on one end side in the axial direction.

6. The electric motor according to claim 1 , further comprising at least one heat dissipation assist member disposed between at least one heat dissipation member of the plurality of heat dissipation members and the stator assembly and to transfer heat of the stator assembly to the at least one heat dissipation member.

7. The electric motor according to claim 1 , further comprising a coupling member coupling the plurality of heat dissipation members to one another.

8. An air conditioner comprising:

an indoor unit; and

an outdoor unit connected to the indoor unit, wherein

at least one of the indoor unit or the outdoor unit includes an electric motor, and

the electric motor includes

a rotor,

a plurality of heat dissipation members, and

a stator assembly including a stator, a printed board, and a resin fixing the plurality of heat dissipation members, wherein

the printed board is fixed to the stator without using a bolt, and the stator and the printed board are united with the resin,

the plurality of heat dissipation members is provided on only one end side of the stator assembly in an axial direction of the electric motor,

a part of the plurality of heat dissipation members is exposed to an outside of the resin,

each of the plurality of heat dissipation members is engaged with the resin, and

each of the plurality of heat dissipation members is spaced apart from and separated from the printed board by the resin.

9. A method for producing an electric motor including a rotor, a stator assembly including a stator, a printed board and a resin, and a plurality of heat dissipation members to release heat of the stator assembly, the method comprising:

fabricating the rotor;

fabricating the stator assembly;

fixing the printed board to the stator without using a bolt;

uniting the printed board and the stator with the resin;

inserting the rotor inside the stator assembly;

molding the plurality of heat dissipation members using extrusion molding; and

fixing each of the plurality of heat dissipation members to the resin of the stator assembly by engaging with the resin so that the plurality of heat dissipation members is provided on only one end side of the stator assembly in an axial direction of the electric motor, a part of the plurality of heat dissipation members is exposed to an outside of the resin, and each of the plurality of heat dissipation members is spaced apart from and separated from the printed board by the resin.

10. The air conditioner according to claim 8 , wherein, in the electric motor,

each of the plurality of heat dissipation members includes a plurality of heat dissipation fins each extending in a radial direction of the stator assembly.

11. The air conditioner according to claim 8 , wherein, in the electric motor,

a first heat dissipation member of the plurality of heat dissipation members includes a first heat dissipation fin,

a second heat dissipation member of the plurality of heat dissipation members includes a second heat dissipation fin, and

the first heat dissipation fin and the second heat dissipation fin are oriented in an identical direction.

12. The air conditioner according to claim 8 , wherein, in the electric motor,

a planar shape of each of the plurality of heat dissipation members is a rectangle, a trapezoid, or a fan shape.

13. The air conditioner according to claim 8 , wherein, in the electric motor, the plurality of heat dissipation members are radially arranged from a rotation center of the rotor, on one end side in the axial direction.

14. The air conditioner according to claim 8 , the electric motor further comprising at least one heat dissipation assist member disposed between at least one heat dissipation member of the plurality of heat dissipation members and the stator assembly and to transfer heat of the stator assembly to the at least one heat dissipation member.

15. The air conditioner according to claim 8 , the electric motor further comprising a coupling member coupling the plurality of heat dissipation members to one another.

16. The method according to claim 9 , wherein

each of the plurality of heat dissipation members includes a plurality of heat dissipation fins each extending in a radial direction of the stator assembly.

17. The method according to claim 9 , wherein

a first heat dissipation member of the plurality of heat dissipation members includes a first heat dissipation fin,

a second heat dissipation member of the plurality of heat dissipation members includes a second heat dissipation fin, and

the first heat dissipation fin and the second heat dissipation fin are oriented in an identical direction.

18. The method according to claim 9 , wherein a planar shape of each of the plurality of heat dissipation members is a rectangle, a trapezoid, or a fan shape.

19. The method according to claim 9 , wherein the plurality of heat dissipation members are radially arranged from a rotation center of the rotor, on one end side in the axial direction.

20. The method according to claim 9 , wherein at least one heat dissipation assist member is disposed between at least one heat dissipation member of the plurality of heat dissipation members and the stator assembly and to transfer heat of the stator assembly to the at least one heat dissipation member.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2019
From: ASO, HIROKI; SHIMOKAWA, TAKAYA; TAKAHASHI, RYOGO; WATANABE, TAKANORI; NOMOTO, KAZUMA
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 049194/0935 →
Continuity (1)
Related Publication 20190348892A1 · Nov 14, 2019