IP Library Granted Patent US 12665477
Granted Patent B2
US 12665477 · App. 18/691,673 · Granted Jun 23, 2026

Method of manufacturing motor and motor

Inventors: Yoshitaka Furuta (Tokyo, JP); Akihito Katsume (Tokyo, JP)
Assignee: SUBARU CORPORATION
H02K15/40H02K1/18
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Quick Facts
Patent No.
US 12665477
App. No.
18/691,673
Granted
Jun 23, 2026
Kind
B2
Abstract

A method of manufacturing a motor includes accommodating a stator in a case; inserting a fixing member having a rod shape into a circular ring of a collar member and a through hole formed in the stator, the collar member including the circular ring formed in an annular shape and a claw extending in a radial direction of the circular ring; positioning the stator relative to the case by bringing a tip of the claw into contact with an inner surface of the case; and fixing the stator to the case by tightening the fixing member such that the fixing member moves along an axial direction to deform the claw. When the stator is fixed to the case by the fixing member, the claw is not in contact with the inner surface of the case.

Claims (40)

1 . A method of manufacturing a motor, the method comprising:

accommodating a stator in a case;

inserting a fixing member having a rod shape into a circular ring of a collar member and a through hole formed in the stator, the collar member comprising the circular ring formed in an annular shape and a claw extending in a radial direction of the circular ring;

positioning the stator relative to the case by bringing a tip of the claw into contact with an inner surface of the case; and

fixing the stator to the case by tightening the fixing member in such a manner that the fixing member moves along an axial direction to deform the claw,

wherein when the stator is fixed to the case by the fixing member, the claw is not in contact with the inner surface of the case.

2 . The method of manufacturing a motor according to claim 1 , wherein the claw is a portion of an outer periphery of the circular ring, the portion protruding more radially outward than other portions of the outer periphery of the circular ring.

3 . The method of manufacturing a motor according to claim 2 ,

wherein a head is formed at one end of the fixing member in the axial direction, the head having an outer diameter larger than an outer diameter of other portions of the fixing member in the axial direction,

wherein a pedestal is formed at an opening of the through hole in the stator, the pedestal being configured to receive the head of the fixing member, and

wherein in the fixing the stator, the claw located between the head and the pedestal is deformed by tightening the head of the fixing member in such a manner that the head is pressed against the pedestal via the collar member.

4 . The method of manufacturing a motor according to claim 3 ,

wherein an inclined surface is formed at the pedestal, the inclined surface being inclined relative to a reference plane that is a flat surface perpendicular to a central axis of the through hole,

wherein in the positioning the stator, the tip of the claw comes into contact with the inner surface of the case by the claw extending along the reference plane, and

wherein in the fixing the stator, the tip of the claw is separated from the inner surface of the case by the claw being pressed against the inclined surface by the head and the claw being deformed into a shape extending along the inclined surface.

5 . The method of manufacturing a motor according to claim 2 ,

wherein a cylinder is coupled to the circular ring, the cylinder extending in a central axis direction of the circular ring, and

wherein in the positioning the stator, the stator is positioned relative to the case by the cylinder being fitted to an inner circumferential surface of the through hole and the tip of the claw being in contact with the inner surface of the case.

6 . The method of manufacturing a motor according to claim 1 ,

wherein a head is formed at one end of the fixing member in the axial direction, the head having an outer diameter larger than an outer diameter of other portions of the fixing member in the axial direction,

wherein a pedestal is formed at an opening of the through hole in the stator, the pedestal being configured to receive the head of the fixing member, and

wherein in the fixing the stator, the claw located between the head and the pedestal is deformed by tightening the head of the fixing member in such a manner that the head is pressed against the pedestal via the collar member.

7 . The method of manufacturing a motor according to claim 6 ,

wherein an inclined surface is formed at the pedestal, the inclined surface being inclined relative to a reference plane that is a flat surface perpendicular to a central axis of the through hole,

wherein in the positioning the stator, the tip of the claw comes into contact with the inner surface of the case by the claw extending along the reference plane, and

wherein in the fixing the stator, the tip of the claw is separated from the inner surface of the case by the claw being pressed against the inclined surface by the head and the claw being deformed into a shape extending along the inclined surface.

8 . The method of manufacturing a motor according to claim 1 ,

wherein a cylinder is coupled to the circular ring, the cylinder extending in a central axis direction of the circular ring, and

wherein in the positioning the stator, the stator is positioned relative to the case by the cylinder being fitted to an inner circumferential surface of the through hole and the tip of the claw being in contact with the inner surface of the case.

9 . A motor comprising:

a stator;

a case configured to accommodate the stator;

a fixing member formed in a rod shape and configured to fix the stator to the case; and

a collar member,

wherein the collar member comprises

a circular ring formed in an annular shape; and

a claw extending from the circular ring,

wherein the fixing member is inserted into the circular ring of the collar member and is inserted into a through hole formed in the stator,

wherein the stator is separated from an inner surface of the case in a radial direction of the stator, and

wherein the claw has a length along an extending direction equal to an interval between the circular ring and the inner surface of the case and is not in contact with the inner surface of the case.