IP Library Granted Patent US 9,923,435
Granted Patent B2
US 9,923,435 · App. 15/601,078 · Granted Mar 20, 2018

Laminated core, VR type resolver and production method for laminated core

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Quick Facts
Patent No.
US 9,923,435
App. No.
15/601,078
Granted
Mar 20, 2018
Kind
B2
Abstract

A production method for a rotor core for a VR type resolver has a structure in which one protrusion is formed on an inner edge thereof in which the rotor cores can be rotated and laminated without increasing cost. In a production method of a rotor core for a VR type resolver, a plurality of tabular rotor core pieces are laminated. In this case, in the rotor core pieces, four protrusions are simultaneously formed, one of them is left, the remainder thereof is removed, and rotating lamination is carried out.

Claims (33)

1. A production method of a resolver, comprising:

a step for forming one protrusion at each inner edge of a plurality of tabular members, and

a step for forming concavities at each of the inner edges of the tabular members,

a step for laminating the tabular members in an axis direction, wherein

the resolver comprises a shaft, a stator yoke, a rotor disposed inside the stator yoke,

the rotor comprises a rotor core including: (1) the tabular members and (2) an opening defined by the inner edges of the tabular members,

the shaft is combined with the inner edges of the tabular members, and

the one protrusion and the concavities are formed at the inner edges of the tabular members in a radial direction and arranged with a predetermined interval in a circumferential direction.

2. The production method of a resolver according to claim 1 , wherein the resolver comprises a magnetic pole portion, wherein the magnetic pole portion includes a double axial angle NX, N is a natural number of 2 or more, and the number of concavities is N−1.

3. The production method of a resolver according to claim 1 , comprising:

a step for removing the protrusions in which the number of removed protrusions is N−1 and one of the protrusions is left,

a step for punching out an outer edge thereof, and

a step for laminating the tabular members produced by the above steps while matching positions of the protrusions.

4. The production method of a resolver according to claim 3 , wherein:

the number of the formed protrusions (N) is 4, and

the step for removing the protrusions is carried out by two apparatuses including two punches for removing the protrusions.

5. A resolver comprising:

a stator yoke, and

a rotor disposed inside the stator yoke, wherein

the rotor comprises a shaft and a rotor core including a plurality of tabular members,

the rotor core includes an opening defined by inner edges of the tabular members,

the tabular members are laminated, in an axis direction and

the shaft is combined with the inner edges of the tabular members, and

one protrusion and a plurality of concavities are formed at each of the inner edges of the tabular members in a radial direction, and arranged with a predetermined interval in a circumferential direction.

6. The resolver according to claim 5 , comprising:

a magnetic pole portion, wherein

the magnetic pole portion includes a double axial angle NX, in which N is a natural number of 2 or more, and an inner edge,

the number of concavities is N−1.

7. The resolver according to claim 5 , comprising:

a first tabular member and a second tabular member that are laminated with each other, wherein:

the first tabular member has one protrusion among the plurality of protrusions and one concavity among the plurality of concavities,

the second tabular member has another one protrusion and another plurality of concavities, and

the one protrusions and the plurality of concavities are arranged with a fixed interval.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2020
From: MINEBEA CO., LTD.
To: MINEBEA MITSUMI INC.
Reel/Frame 051803/0293 →