IP Library Granted Patent US 10,505,421
Granted Patent B2
US 10,505,421 · App. 16/228,353 · Granted Dec 10, 2019

Electric machine stator cooling systems and methods

Inventors: Thomas H. Hopkins (Wheat Ridge, CO); Felipe J. Castillo (Wheat Ridge, CO); Scott T. Graham (Wheat Ridge, CO); Keith W. Klontz (Wheat Ridge, CO)
Assignee: Zero-E Technologies LLC
H02K1/32H02K1/04H02K1/12H02K1/148H02K1/18H02K1/272H02K1/278H02K1/28H02K3/18H02K3/30H02K3/325H02K3/44H02K5/08H02K5/15H02K5/18H02K5/24H02K7/003H02K7/083H02K9/06H02K9/08H02K9/19H02K9/22H02K11/25H02K15/105H02K15/14H02K5/06H02K2203/12
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Quick Facts
Patent No.
US 10,505,421
App. No.
16/228,353
Granted
Dec 10, 2019
Kind
B2
Abstract

An electromagnet for an electric machine having a stack of laminations defining a tooth and a yoke segment, and an insulating bobbin surrounding a portion of the tooth of each lamination, such that each lamination is held against adjacent laminations by the bobbin. The disclosed electromagnets also have electrically conductive windings surrounding a portion of the bobbin; and an encapsulant fully encapsulating the bobbin and windings, wherein the encapsulant comprises a dielectric material and an additive to increase the thermal conductivity of the encapsulant.

Claims (25)

1. An electromagnet for an electric machine comprising:

a stack of laminations, with each lamination defining a tooth and a yoke segment;

an insulating bobbin surrounding a portion of the tooth of each lamination,

wherein each lamination is held against adjacent laminations by the bobbin;

electrically conductive windings surrounding a portion of the bobbin; and

an encapsulant fully encapsulating the bobbin and windings; and wherein the stack of individual laminations comprises;

a first lamination;

a second lamination adjacent to the first lamination;

a first heat transfer layer bonded to a first planar face of the first lamination; and

a second heat transfer layer bonded to a first planar face of the second lamination.

2. The electromagnet of claim 1 wherein the encapsulant comprises a dielectric material and an additive to increase the thermal conductivity of the encapsulant.

3. The electromagnet of claim 2 wherein the dielectric material comprises a polymer and the additive comprises one or more of boron nitride, silicon carbide, silicon; aluminum powder, copper powder, metal oxide, ceramic, and graphene.

4. The electromagnet of claim 1 wherein the first lamination and the second lamination each further comprises a dielectric layer in physical contact with a second planar face, opposite the heat transfer layer.

5. The electromagnet of claim 1 wherein the yoke segment defines a tongue structure at a first outside edge and wherein the yoke segment defines a groove structure at a second outside edge, opposite the first outside edge.

6. A method of fabricating an electromagnet for an electric machine comprising:

providing a stack of laminations defining a tooth and a yoke segment;

placing an insulating bobbin around a portion of the tooth of each lamination, to hold each lamination against adjacent laminations with the bobbin;

winding an electrically conductive winding around a portion of the bobbin;

fully encapsulating the bobbin and windings, wherein the encapsulant comprises a dielectric material and an additive to increase the thermal conductivity of the encapsulant;

providing first and second individual laminations that are adjacent to each other; and

bonding a heat transfer layer to a first planar face of each of the first and second individual laminations.

7. The method of claim 6 wherein the dielectric material comprises a polymer and the additive comprises one or more of boron nitride, silicon carbide, silicon; aluminum powder, copper powder, metal oxide, ceramic, and graphene.

8. The method of claim 6 further comprising providing each of the first and second laminations with a dielectric layer in physical contact with a second planar face, opposite the heat transfer layer.

9. The method of claim 6 further comprising providing the yoke segment with a tongue structure at a first outside edge.

10. The method of claim 9 further comprising providing the yoke segment with a groove structure at a second outside edge, opposite the first outside edge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2019
From: HOPKINS, THOMAS H.; CASTILLO, FELIPE J.; GRAHAM, SCOTT T.; KLONTZ, KEITH W.
To: ZERO E TECHNOLOGIES, LLC
Reel/Frame 047931/0460 →
Continuity (3)
Division 15870472 · Jan 12, 2018
Provisional Application 62570441 · Oct 10, 2017
Related Publication 20190123620A1 · Apr 25, 2019
Cited By (1)
US 12,698,719