IP Library Granted Patent US 9,590,466
Granted Patent B2
US 9,590,466 · App. 14/066,930 · Granted Mar 7, 2017

Rotor and rotating electric machine having the same

Inventor: Akihito Naitou (Nagoya, JP)
Assignee: DENSO CORPORATION
H02K7/04H02K1/2746H02K1/28H02K21/14H02K2213/03
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Quick Facts
Patent No.
US 9,590,466
App. No.
14/066,930
Granted
Mar 7, 2017
Kind
B2
Abstract

A rotor for a rotating electric machine has a core body and a magnet. The core body has a through-hole, a first polar portion, and a second polar portion. The first polar portion and the second polar portion are alternately arranged in the circumference direction. The magnet is disposed on the core body at a position corresponding to the first polar portion or the second polar portion. The through-hole has an arc-shaped surface having a first curvature radius. The first polar portion has an arc-shaped surface having a second curvature radius. The second polar portion has an arc-shaped surface having a third curvature radius. The first curvature radius is larger than or equal to the second curvature radius. The first curvature radius is larger than or equal to the third curvature radius.

Claims (34)

1. A rotor for a rotating electric machine, the rotor comprising:

a core body having

a first through-hole having a sector shape in cross-section and passing through the core body in a thickness direction, the first through-hole being one of a plurality of first through-holes arranged in a circumference direction at a regular interval, and

a first polar portion and a second polar portion alternately arranged in the circumference direction to define an outer wall of the core body in a radial direction; and

a magnet disposed on the core body at a position corresponding to the first polar portion or the second polar portion, wherein

the first through-hole has a first arc-shaped surface on an outer side in the radial direction, and the first arc-shaped surface of the first through-hole has a first curvature radius being centered at a center axis of the core body coincident with a shaft axis,

the first polar portion has a second arc-shaped surface on an outer side in the radial direction, and the second arc-shaped surface of the first polar portion has a second curvature radius being centered at a first point,

the second polar portion has a third arc-shaped surface on an outer side in the radial direction, and the third arc-shaped surface of the second polar portion has a third curvature radius being centered at a second point,

the first curvature radius of the arc-shaped surface of the first through-hole is larger than or equal to the second curvature radius of the arc-shaped surface of the first polar portion,

the first curvature radius of the arc-shaped surface of the first through-hole is larger than or equal to the third curvature radius of the arc-shaped surface of the second polar portion,

the first point is located between the center axis and the second arc-shaped surface of the first polar portion in the radial direction, such that the first point and the center axis are not coincident, and

the second point is located between the center axis and the third arc-shaped surface of the second polar portion in the radial direction, such that the second point and the center axis are not coincident.

2. The rotor for the rotating electric machine according to claim 1 , wherein

the core body has a second through-hole defined to extend outwardly in the radial direction from a center part of the arc-shaped surface of the first through-hole in the circumference direction.

3. The rotor for the rotating electric machine according to claim 1 , wherein

the magnet is arranged in a manner that a center of the arc-shaped surface of the first through-hole in the circumference direction is located on a linear line between a center of the magnet in the circumference direction and a center of the core body.

4. The rotor for the rotating electric machine according to claim 1 , wherein

the magnet is arranged in a manner that a middle position between the first through-holes adjacent with each other in the circumference direction is located on a linear line between a center of the magnet in the circumference direction and a center of the core body.

5. The rotor for the rotating electric machine according to claim 1 , wherein

the magnet is one of a plurality of magnets, and a number of the plurality of magnets is half of a total number of the first polar portion and the second polar portion alternately arranged in the circumference direction.

6. The rotor for the rotating electric machine according to claim 1 , wherein

the magnet is one of a plurality of magnets, and a number of the plurality of magnets is the same as a total number of the first polar portion and the second polar portion alternately arranged in the circumference direction.

7. The rotor for the rotating electric machine according to claim 1 , wherein

the core body is made of laminated thin plates.

8. The rotor for the rotating electric machine according to claim 1 , wherein

a number of the plurality of first through-holes is half of a total number of the first polar portion and the second polar portion alternately arranged in the circumference direction.

9. The rotor for the rotating electric machine according to claim 1 , wherein

the magnet is disposed on an inner side of the outer wall of the core body in the radial direction.

10. The rotor for the rotating electric machine according to claim 1 , wherein

the magnet is disposed such that an outer wall of the magnet coincides with the arc-shaped surface of the first polar portion.

11. A rotating electric machine comprising: the rotor according to claim 1 ; and a stator disposed on an outer side of the rotor in the radial direction such that a rotating magnetic field is produced by electric power applied to the stator.

12. The rotor for a rotating electric machine according to claim 1 , wherein

the first polar portion protrudes outward from the core body in the radial direction, and

the second polar portion is provided by the magnet, and the second polar portion is exposed on an outer wall of the core body that excludes the first polar portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2013
From: NAITOU, AKIHITO
To: DENSO CORPORATION
Reel/Frame 031508/0948 →
Priority Claims (1)
JP 2012-239149 · Oct 30, 2012 · national
Continuity (1)
Related Publication 20140117792A1 · May 1, 2014