IP Library › Granted Patent US 12,261,482
Granted Patent B2
US 12,261,482 · App. 17/294,202 · Granted Mar 25, 2025

Laminated core and electric motor

Inventors: Ryu Hirayama (Tokyo, JP); Kazutoshi Takeda (Tokyo, JP)
Assignee: NIPPON STEEL CORPORATION
H02K1/165H01F27/245H02K1/146H02K15/024
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Quick Facts
Patent No.
US 12,261,482
App. No.
17/294,202
Granted
Mar 25, 2025
Kind
B2
Abstract

A laminated core including a plurality of electrical steel sheets stacked on each other, and adhesion parts which are provided between the electrical steel sheets adjacent to each other in an axial direction thereof and adhering the electrical steel sheets to each other, in which each of the electrical steel sheets includes an annular core back part, and a plurality of tooth parts which extend from the core back part in a radial direction of the core back part and are disposed at intervals in a circumferential direction of the core back part, and each of the tooth parts of the electrical steel sheets has an adhesion region provided with the adhesion part having a belt shape extending in the circumferential direction.

Claims (27)

1. A laminated core comprising:

a plurality of electrical steel sheets stacked on each other; and

a plurality of adhesion parts provided between the electrical steel sheets adjacent to each other in an axial direction thereof and adhering the electrical steel sheets to each other,

wherein each of the electrical steel sheets includes an annular core back part, and a plurality of tooth parts which extend from the core back part in a radial direction of the core back part and are disposed at intervals in a circumferential direction of the core back part, and

each of the tooth parts of the electrical steel sheets includes an adhesion region provided with one of said adhesion parts, each said adhesion part forming a band extending in the circumferential direction, and

wherein the adhesion parts are located only on the tooth portion for controlling a uniform distribution of magnetic flux density flowing within the laminated core.

2. The laminated core according to claim 1 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction.

3. The laminated core according to claim 1 , wherein an average thickness of each of the adhesion parts is 1.0 μm to 3.0 μm.

4. The laminated core according to claim 1 , wherein an average tensile modulus of elasticity E of each of the adhesion parts is 1500 MPa to 4500 MPa.

5. The laminated core according to claim 1 , wherein each of the adhesion parts are room temperature adhesion type acrylic-based adhesives each containing SGA made of an elastomer-containing acrylic-based adhesive.

6. The laminated core according to claim 1 , wherein a melting point of each of the adhesion parts is 180° C. or higher.

7. An electric motor comprising the laminated core according to claim 1 .

8. The laminated core according to claim 1 , wherein the adhesion region is disposed on a base end side from one-third of an entire length of the tooth part in a length direction of the tooth part.

9. The laminated core according to claim 1 , wherein the adhesion regions are formed on a side closer to the core back part than the vicinities of tips of the tooth parts.

10. The laminated core according to claim 9 , wherein width dimensions of each of the adhesion regions in the radial direction increases from circumferential central parts of the tooth parts in the direction toward circumferential end part sides of the tooth parts.

11. The laminated core according to claim 10 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction.

12. The laminated core according to claim 10 , wherein each of the adhesion regions extend in arc shapes in the circumferential direction.

13. The laminated core according to claim 9 , wherein each of the adhesion regions extend in an arc shape in the circumferential direction.

14. The laminated core according to claim 13 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction.

15. The laminated core according to claim 9 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction.

16. The laminated core according to claim 1 , wherein width dimensions of each of the adhesion regions in the radial direction increase from circumferential central parts of the tooth parts in the direction toward circumferential end part sides of the tooth parts.

17. The laminated core according to claim 16 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction.

18. The laminated core according to claim 16 , wherein each of the adhesion regions extend in arc shapes in the circumferential direction.

19. The laminated core according to claim 18 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction.

20. The laminated core according to claim 1 , wherein the adhesion regions extend in arc shapes in the circumferential direction.

21. The laminated core according to claim 20 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction.

22. The laminated core according to claim 1 , wherein each of the adhesion parts extends over an entire width of each of the tooth parts in the circumferential direction, and wherein a width dimension of each adhesion parts is uniform over the entire length of the adhesion part.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2021
From: HIRAYAMA, RYU; TAKEDA, KAZUTOSHI
To: NIPPON STEEL CORPORATION
Reel/Frame 056290/0111 →
Priority Claims (1)
JP 2018-235857 · Dec 17, 2018 · national
Continuity (1)
Related Publication 20220014051A1 · Jan 13, 2022
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