IP Library Granted Patent US 12,549,042
Granted Patent B2
US 12,549,042 · App. 17/586,394 · Granted Feb 10, 2026

Magnetically insulating stator liner system with insulator having ferrimagnetic material and a wedge

Inventors: Leyi Zhu (Novi, MI); Franco Leonardi (Dearborn, MI)
Assignee: FORD GLOBAL TECHNOLOGIES, LLC
H02K1/148H02K1/02H02K29/08
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Quick Facts
Patent No.
US 12,549,042
App. No.
17/586,394
Granted
Feb 10, 2026
Kind
B2
Abstract

A stator includes a core and a molded midsection arranged to define a plurality of slots. The stator also includes a plurality of conductors wound within the slots. Portions of the midsection immediately adjacent to the slots include magnetic insulator embedded therein. The magnetic insulator is electrically insulating and has ferrimagnetic ordering. The stator further includes a plurality of non-magnetic wedges disposed between the conductors and an inner diameter surface of the stator.

Claims (25)

1 . An electric machine comprising:

a stator including a core and a midsection on the core arranged to define a plurality of slots, and a plurality of conductors wound within the slots, wherein portions of the midsection immediately adjacent to the slots and conductors include electrically insulating material with ferrimagnetic ordering and other portions of the midsection lack the electrically insulating material with ferrimagnetic ordering.

2 . The electric machine of claim 1 , wherein the electrically insulating material includes cobalt ferrites, cobalt nickel zinc ferrites, magnesium manganese zinc ferrites, manganese zinc ferrites, nickel ferrites, nickel zinc ferrites, yttrium iron garnet, or combinations thereof.

3 . The electric machine of claim 1 , wherein a relative magnetic permeability of the electrically insulating material is 10 to 20000.

4 . The electric machine of claim 1 , wherein the midsection includes epoxy, nylon, or synthetic rubber.

5 . The electric machine of claim 1 , wherein the stator further includes a plurality of non-magnetic wedges disposed between the conductors and an inner diameter surface of the stator.

6 . The electric machine of claim 5 , wherein a width of the non-magnetic wedges adjacent to the conductors is greater than a width of the non-magnetic wedges adjacent to the inner diameter surface.

7 . A stator comprising:

a core;

a molded midsection, wherein the core and the molded midsection are arranged to define a plurality of slots;

a plurality of conductors wound within the slots, wherein portions of the midsection immediately adjacent to the slots include ferrite powder embedded therein and wherein the ferrite powder is electrically insulating and has ferrimagnetic ordering; and

a plurality of non-magnetic wedges disposed between the conductors and an inner diameter surface of the stator.

8 . The stator of claim 7 , wherein the ferrite powder includes cobalt ferrites, cobalt nickel zinc ferrites, magnesium manganese zinc ferrites, manganese zinc ferrites, nickel ferrites, nickel zinc ferrites, yttrium iron garnet, or combinations thereof.

9 . The stator of claim 7 , wherein a relative magnetic permeability of the ferrite powder is 10 to 20000.

10 . The stator of claim 7 , wherein a material of the molded midsection includes epoxy, nylon, or synthetic rubber.

11 . The stator of claim 7 , wherein a width of the non-magnetic wedges adjacent to the conductors is greater than a width of the non-magnetic wedges adjacent to the inner diameter surface.

12 . The stator of claim 7 , wherein a material of the molded midsection is different than a material of the non-magnetic wedges.

13 . A stator comprising:

a core having a coating thereon and defining a plurality of slots;

a plurality of conductors wound within the slots, wherein portions of the coating immediately adjacent to the slots include electrically insulating material with ferrimagnetic ordering; and

a plurality of non-magnetic wedges disposed between the conductors and an inner diameter surface of the core, wherein a width of the non-magnetic wedges adjacent to the conductors is greater than a width of the non-magnetic wedges adjacent to the inner diameter surface.

14 . The stator of claim 13 , wherein the electrically insulating material is distributed uniformly along the slots.

15 . The stator of claim 13 , wherein the electrically insulating material includes cobalt ferrites, cobalt nickel zinc ferrites, magnesium manganese zinc ferrites, manganese zinc ferrites, nickel ferrites, nickel zinc ferrites, yttrium iron garnet, or combinations thereof.

16 . The stator of claim 13 , wherein a relative magnetic permeability of the electrically insulating material is 10 to 20000.

17 . The stator of claim 13 , wherein the non-magnetic wedges are in direct contact with some of the conductors.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2022
From: ZHU, LEYI; LEONARDI, FRANCO
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 058805/0618 →
Continuity (1)
Related Publication 20230238838A1 · Jul 27, 2023
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