IP Library › Granted Patent US 10,910,895
Granted Patent B2
US 10,910,895 · App. 16/240,383 · Granted Feb 2, 2021

Electric motor with v-slot rotor

Inventors: Keith I. Hoemann (Fenton, MO); Lunjie Lu (Chesterfield, MO); Michael W. Major (Moro, IL)
Assignee: Nidec Motor Corporation
H02K1/276H02K1/12H02K1/2766H02K21/16H02K2201/06H02K2213/03
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Quick Facts
Patent No.
US 10,910,895
App. No.
16/240,383
Granted
Feb 2, 2021
Kind
B2
Abstract

An electric motor includes a stator and a rotor rotatable relative to the stator. The rotor includes a plurality of poles, each of which is defined by a pair of magnets positioned relative to each other in a V-shaped arrangement having a vertex positioned radially inward. Each of the poles includes a mechanical pole angle defined by the pair of magnets. The mechanical pole angle is about one-half of three hundred and sixty divided by the number of the poles of the rotor.

Claims (87)

1. An electric motor comprising:

a stator; and

a rotor rotatable relative to the stator, the rotor including a plurality of poles,

each of said poles defined by a pair of magnets positioned relative to each other in a V-shaped arrangement having a vertex positioned radially inward,

each of said poles including a mechanical pole angle defined by the pair of magnets,

each of said poles being disposed within a rotor pole sector defined by a pole pitch angle,

each of said rotor pole sectors corresponding to one hundred and eighty (180) electrical degrees,

said mechanical pole angle being about one-half (½) of three hundred and sixty (360) divided by the number of the poles,

said mechanical pole angle being in a range between forty-seven percent (47%) and fifty-three percent (53%) of the pole pitch angle.

2. The electric motor in accordance with claim 1 ,

each of said rotor pole sectors being defined between a first radial pole pitch line and a second radial pole pitch line,

said radial pole pitch lines cooperatively defining therebetween the pole pitch angle,

each of said rotor pole sectors having a central pole axis,

said rotor defining a rotation axis,

said central pole axis and said radial pole pitch lines intersecting and being normal to the rotation axis,

said central pole axis bisecting its respective rotor pole sector.

3. The electric motor in accordance with claim 2 ,

said central pole axis bisecting the V-shaped arrangement of magnets.

4. The electric motor in accordance with claim 1 ,

said magnets being substantially the same size and shape.

5. The electric motor in accordance with claim 1 ,

each of said poles being disposed within a rotor pole sector defined by a pole pitch angle,

each of said rotor pole sectors having a central pole axis bisecting its respective rotor pole sector,

said magnets being positioned within the rotor such that the magnets are symmetrical with respect to the central pole axis.

6. The electric motor in accordance with claim 1 ,

said rotor being formed from a plurality of laminations stacked in an axial direction.

7. The electric motor in accordance with claim 1 ,

each of said poles having a central pole axis centered relative to the pole,

said rotor including an outer surface and a plurality of axially extending recesses defined in the outer surface, and

each respective recess positioned between adjacent central pole axes.

8. The electric motor in accordance with claim 1 ,

each of said poles being centered within a respective rotor pole sector defined between an adjacent pair of radial pole pitch lines,

said rotor including an outer surface and a plurality of axially extending recesses defined in the outer surface, and

each respective recess being centered about a respective radial pole pitch line.

9. An electric motor comprising:

a stator; and

a rotor rotatable relative to the stator,

said rotor including a plurality of poles, each of which is defined by a pair of magnets positioned relative to one another in a V-shaped arrangement with a vertex positioned radially inward,

said V-shaped arrangement defining a mechanical pole angle,

first and second radial pole pitch lines being defined between each pole and circumferentially adjacent first and second ones of the poles, such that the poles are arranged along a pole pitch angle defined between the first and second pole pitch lines,

each of said poles being centered relative to the first and second radial pole pitch lines, with the mechanical pole angle being greater than about forty-seven percent (47%) of the pole pitch angle and less than about fifty-three percent (53%) of the pole pitch angle.

10. The electric motor in accordance with claim 9 ,

each of said poles having a central pole axis centered relative to the first and second radial pole pitch lines,

said central pole axis intersecting the vertex of the V-shaped arrangement of magnets.

11. The electric motor in accordance with claim 10 ,

said central pole axis bisecting the V-shaped arrangement of magnets.

12. The electric motor in accordance with claim 10 ,

said magnets being substantially the same size and shape.

13. The electric motor in accordance with claim 9 ,

each of said poles having a central pole axis centered relative to the first and second radial pole pitch lines, with the pair of magnets of each pole being symmetrical with respect to the central pole axis.

14. The electric motor in accordance with claim 9 ,

each of said poles having a central pole axis centered relative to the first and second radial pole pitch lines,

said rotor including an outer surface and a plurality of axially extending recesses defined in the outer surface,

each respective recess positioned between adjacent central pole axes.

15. The electric motor in accordance with claim 9 ,

said rotor being formed from a plurality of laminations stacked in an axial direction.

16. An electric motor comprising:

a stator; and

a rotor rotatable relative to the stator, the rotor including a plurality of poles,

each of said poles defined by a pair of magnets positioned relative to each other in a V-shaped arrangement having a vertex positioned radially inward,

each of said poles including a mechanical pole angle defined by the pair of magnets,

each of said poles being disposed within a rotor pole sector defined by a pole pitch angle,

each of said rotor pole sectors corresponding to one hundred and eighty (180) electrical degrees,

said mechanical pole angle being about one-half (½) of three hundred and sixty (360) divided by the number of the poles,

said mechanical pole angle being in a range between eighty-five (85) and ninety-five (95) electrical degrees.

17. The electric motor in accordance with claim 16 ,

each of said poles having a central pole axis centered relative to the pole,

said rotor including an outer surface and a plurality of axially extending recesses defined in the outer surface, and

each respective recess positioned between adjacent central pole axes.

18. The electric motor in accordance with claim 16 ,

each of said poles being centered within a respective rotor pole sector defined between an adjacent pair of radial pole pitch lines,

said rotor including an outer surface and a plurality of axially extending recesses defined in the outer surface, and

each respective recess being centered about a respective radial pole pitch line.

19. An electric motor comprising:

a stator; and

a rotor rotatable relative to the stator,

said rotor including a plurality of poles, each of which is defined by a pair of magnets positioned relative to one another in a V-shaped arrangement with a vertex positioned radially inward,

said V-shaped arrangement defining a mechanical pole angle,

first and second radial pole pitch lines being defined between each pole and circumferentially adjacent first and second ones of the poles, such that the poles are arranged along a pole pitch angle defined between the first and second pole pitch lines,

each of said poles being centered relative to the first and second radial pole pitch lines, with the mechanical pole angle being less than about fifty-three percent (53%) of the pole pitch angle,

adjacent pairs of said first and second pole pitch lines defining respective rotor pole sectors,

each of said rotor pole sectors corresponding to one hundred and eighty (180) electrical degrees,

said mechanical pole angle being in a range between eighty-five (85) and ninety-five (95) electrical degrees.

20. The electric motor in accordance with claim 19 ,

each of said poles having a central pole axis centered relative to the first and second radial pole pitch lines,

said rotor including an outer surface and a plurality of axially extending recesses defined in the outer surface,

each respective recess positioned between adjacent central pole axes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2019
From: HOEMANN, KEITH I.; LU, LUNJIE; MAJOR, MICHAEL W.
To: NIDEC MOTOR CORPORATION
Reel/Frame 047925/0342 →
Continuity (2)
Provisional Application 62614148 · Jan 5, 2018
Related Publication 20190214862A1 · Jul 11, 2019