IP Library › Granted Patent US 9,472,984
Granted Patent B2
US 9,472,984 · App. 13/962,223 · Granted Oct 18, 2016

Rotor for rotating electric machine

Inventor: Makoto Taniguchi (Obu, JP)
Assignee: DENSO CORPORATION
H02K1/27H02K1/278H02K1/2746
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Quick Facts
Patent No.
US 9,472,984
App. No.
13/962,223
Granted
Oct 18, 2016
Kind
B2
Abstract

A rotor includes a rotation shaft having a rotation axis; a rotator core fixed to the rotation shaft and having an axial end face and an outer circumference face; an end plate covering the axial end face of the rotator core; and a magnet cover covering the outer circumference face of the rotator core. The magnet cover has a first end portion adjacent to the end plate and a second end portion which is opposite to the first end portion in an axial direction. The first end portion of the magnet cover covers entire outer periphery edge of the end plate. The first end portion of the magnet cover is bent toward the rotation axis in entire outer periphery edge of the magnet cover.

Claims (44)

1. A rotor for a rotating electric machine comprising:

a rotation shaft having a rotation axis;

a rotator core made of a magnetic material and fixed to the rotation shaft, the rotator core having a first end face and an outer circumference face;

a plurality of magnets arranged on the outer circumference face of the rotator core;

an end plate made of a non-magnetic material and having a flat plate shape, the end plate covering the first end face of the rotator core; and

a magnet cover made of a non-magnetic material and having a cylindrical shape, the magnet cover covering the outer circumference face of the rotator core, wherein

the end plate has an outside diameter that is larger than both an outside diameter of the rotator core and an outside diameter of the plurality of magnets, the outside diameter of the plurality of magnets being defined as a distance from the rotation axis to an outer surface of the plurality of magnets in a radial direction of the rotation shaft,

the end plate has a peripheral edge that is defined by an intersection of a surface of the end plate that faces away from the rotator core and a circumferential surface at the outside diameter,

the magnet cover has a first end portion adjacent to the end plate and a second end portion which is opposite to the first end portion in an axial direction,

the first end portion of the magnet cover covers the peripheral edge of the end plate,

the first end portion of the magnet cover is bent toward the rotation axis all around the peripheral edge of the end plate to extend axially beyond the peripheral edge and radially inward from the peripheral edge,

the end plate has a second peripheral edge that is defined by an intersection of a second surface of the end plate that faces toward the rotator core and the circumferential surface,

the first end portion contacts at least the second peripheral edge, and

the first end portion is curved between the peripheral edge and the second peripheral edge both in a circumferential direction and in the axial direction.

2. The rotor according to claim 1 , wherein

the first end portion of the magnet cover and the end plate are coupled by crimping.

3. The rotor according to claim 1 , wherein

the end plate is placed on the first end face of the rotator core, and

the second end portion of the magnet cover is bent toward the rotation axis so as to cover an end face of the plurality of magnets.

4. The rotor according to claim 1 , further comprising:

an end plate covering a second end face of the rotator core which is opposite to the first end face of the rotator core in the axial direction, wherein

the second end portion of the magnet cover is bent toward the rotation axis so as to cover an entire outer periphery edge of the end plate covering the second end face.

5. The rotor according to claim 1 , wherein

the rotator core has a plurality of projecting portions which projects outward in a radial direction, and

the plurality of magnets and the plurality of projecting portions are alternately arranged in a circumference direction.

6. The rotor according to claim 5 , wherein

the plurality of magnets projects outward in the radial direction rather than the plurality of projecting portions projects.

7. The rotor according to claim 1 , wherein

an inside diameter of the first end portion is larger than an inside diameter of a middle portion of the magnet cover.

8. The rotor according to claim 7 , wherein

the outside diameter of the end plate is larger than the inside diameter of the middle portion of the magnet cover.

9. The rotor according to claim 1 , wherein

the outside diameter of the end plate is larger than an inside diameter of a middle portion of the magnet cover.

10. The rotor according to claim 1 , wherein

the first end portion of the magnet cover is flared radially outward at a position axially inward from where the first end portion is bent toward the rotation axis.

11. The rotor according to claim 1 , wherein

an inside diameter of the first end portion is larger than an inside diameter of a middle portion of the magnet cover, and

the outside diameter of the end plate is larger than the inside diameter of the middle portion of the magnet cover.

12. The rotor according to claim 1 , wherein

the first end portion of the magnet cover is bent away from the rotational axis immediately adjacent to where the first end portion of the magnet cover is bent toward the rotation axis.

13. The rotor according to claim 1 , wherein

the first end portion contacts the peripheral edge and the second peripheral edge.

14. The rotor according to claim 1 , wherein

the first end portion is spaced away from the circumferential surface to include a radial gap between the peripheral edge and the second peripheral edge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2013
From: TANIGUCHI, MAKOTO
To: DENSO CORPORATION
Reel/Frame 030969/0583 →
Priority Claims (1)
JP 2012-192029 · Aug 31, 2012 · national
Continuity (1)
Related Publication 20140062245A1 · Mar 6, 2014