IP Library › Granted Patent US 10,491,064
Granted Patent B2
US 10,491,064 · App. 15/435,890 · Granted Nov 26, 2019

Electric machine rotor including nested V-shaped inner and outer pockets

Inventor: Chun Tang (Canton, MI)
Assignee: Ford Global Technologies, LLC
H02K1/2766H02K21/14H02K21/145H02K1/165H02K29/03H02K2213/03
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Quick Facts
Patent No.
US 10,491,064
App. No.
15/435,890
Granted
Nov 26, 2019
Kind
B2
Abstract

A rotor includes nested V-shaped inner and outer pockets defining corresponding pole arc angles relative to a common center bridge axis and vertex, respective inner and outer top bridges, and respective inner and outer center bridges. A ratio of corresponding pole arc angle dependent functions and a ratio of a sum of the inner top bridges and center bridge widths to a sum of the outer top bridges and center bridge widths are same.

Claims (14)

1. A rotor comprising:

nested V-shaped radially inner and radially outer pockets defining corresponding pole arc angles, wherein the pole arc angle corresponding to the V-shaped radially inner pockets is an angle between an inner most corner of a most radially outward portion of each side of the V-shaped radially inner pockets, wherein the pole arc angle corresponding to the V-shaped radially outer pockets is an angle between an inner most corner of a most radially outward portion of each side of the V-shaped radially outer pockets, wherein the V-shaped radially inner pockets further define outer top bridges, and an inner center bridge, wherein the V-shaped radially outer pockets further define inner top bridges and an outer center bridge, and wherein (i) a ratio of a sine of half of the pole arc angle corresponding to the V-shaped radially inner pockets to a sine of half the pole arc angle corresponding to the V-shaped radially outer pockets and (ii) a ratio of a sum of a width of each of the inner top bridges, a width of the inner center bridge, and a width of the outer center bridge to a sum of a width of each of the outer top bridges, the width of the inner center bridge, and a width of the outer center bridge are same.

2. The rotor of claim 1 , wherein the pole arc angles are different.

3. The rotor of claim 2 , wherein the sums are different.

4. The rotor of claim 1 further comprising, a plurality of magnets disposed within the V-shaped radially inner and radially outer pockets.

5. The rotor of claim 4 , wherein the plurality of magnets disposed within the V-shaped radially inner pockets each have equal widths and the plurality of magnets disposed within the V-shaped radially outer pockets each have equal widths.

6. The rotor of claim 5 , wherein cumulative widths of the magnets disposed within the V-shaped radially inner pockets and cumulative widths of the magnets disposed within the V-shaped radially outer pockets have a ratio equal to the ratio of the sine of half of the pole arc angle corresponding to the V-shaped radially inner pockets to the sine of half the pole arc angle corresponding to the V-shaped radially outer pockets.

7. A rotor comprising:

nested V-shaped radially inner and radially outer pockets defining corresponding pole arc angles, wherein the pole arc angle corresponding to the V-shaped radially inner pockets is an angle between an outer most corner of a most radially outward portion of each side of the V-shaped radially inner pockets, wherein the pole arc angle corresponding to the V-shaped radially outer pockets is an angle between an outer most corner of a most radially outward portion of each side of the V-shaped radially outer pockets, wherein the V-shaped radially inner pockets further define outer top bridges, and an inner center bridge, wherein the V-shaped radially outer pockets further define inner top bridges and an outer center bridge, and wherein (i) a ratio of a sine of half of the pole arc angle corresponding to the V-shaped radially inner pockets to a sine of half the pole arc angle corresponding to the V-shaped radially outer pockets and (ii) a ratio of a sum of a width of each of the inner top bridges, a width of the inner center bridge, and a width of the outer center bridge to a sum of a width of each of the outer top bridges, the width of the inner center bridge, and a width of the outer center bridge are same.

8. The rotor of claim 7 , wherein the pole arc angles are different.

9. The rotor of claim 8 , wherein the sums are different.

10. The rotor of claim 7 further comprising, a plurality of magnets disposed within the V-shaped radially inner and radially outer pockets.

11. The rotor of claim 10 , wherein the plurality of magnets disposed within the V-shaped radially inner pockets each have equal widths and the plurality of magnets disposed within the V-shaped radially outer pockets each have equal widths.

12. The rotor of claim 11 , wherein cumulative widths of the magnets disposed within the V-shaped radially inner pockets and cumulative widths of the magnets disposed within the V-shaped radially outer pockets have a ratio equal to the ratio of the sine of half of the pole arc angle corresponding to the V-shaped radially inner pockets to the sine of half the pole arc angle corresponding to the V-shaped radially outer pockets.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2017
From: TANG, CHUN
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 041749/0187 →
Continuity (1)
Related Publication 20180241262A1 · Aug 23, 2018
Cited By (2)
US 12,266,976 US 12,695,341