IP Library Granted Patent US 10,965,196
Granted Patent B2
US 10,965,196 · App. 16/055,739 · Granted Mar 30, 2021

Electric machine thermal management

Inventor: Casey Taylor Dunn (Brownstown Charter Township, MI)
Assignee: Ford Global Technologies, LLC
H02K11/25H02K3/12H02K7/006H02K9/22
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Quick Facts
Patent No.
US 10,965,196
App. No.
16/055,739
Granted
Mar 30, 2021
Kind
B2
Abstract

An electric machine for an electrified vehicle includes a stator and a temperature sensor assembly. The temperature sensor assembly includes an elongated housing having an anchor portion disposed within the windings. The anchor portion includes a screw thread extending about an outer perimeter of the elongated housing, resilient tabs extending from the outer perimeter, and a temperature sensor housed within the anchor portion of the elongated housing.

Claims (32)

1. An electric machine for an electrified vehicle, comprising:

a stator including windings extending about a central axis; and

a temperature sensor assembly including an elongated housing having an anchor portion disposed within the windings, the anchor portion including

a screw thread extending about an outer perimeter of the elongated housing,

resilient tabs extending from the outer perimeter, and

a temperature sensor housed within the anchor portion of the elongated housing.

2. The electric machine of claim 1 wherein the screw thread is axially disposed between axially spaced apart portions of axially adjacent windings.

3. The electric machine of claim 2 wherein at least one ramp surface of the screw thread is configured to engage at least one of the axially adjacent windings to restrict axial movement of the temperature sensor assembly relative to the at least one axially adjacent winding.

4. The electric machine of claim 3 wherein the ramp surface defines an angle of inclination that corresponds to an angle of inclination of the at least one axially adjacent winding.

5. The temperature sensor assembly of claim 2 wherein the screw thread is a first screw thread, and wherein the anchor portion further includes a second screw thread axially spaced along the elongated housing from the first screw thread.

6. The temperature sensor assembly of claim 5 wherein an individual winding extends between the first and second axially spaced screw threads.

7. The electric machine of claim 2 wherein the resilient tabs are radially disposed between radially apart spaced portions of radially adjacent windings.

8. The electric machine of claim 7 wherein at least one abutment surface of at least one of the resilient tabs is configured to engage at least one of the radially adjacent windings to restrict radial movement of the temperature sensor assembly relative to the at least one radially adjacent winding.

9. The electric machine of claim 7 wherein the screw thread defines a width in a direction orthogonal to an axial length of the elongated housing, wherein the width is less than a radial space between the radially adjacent windings.

10. The electric machine of claim 7 wherein the temperature sensor is secured radially between the radially adjacent windings.

11. The electric machine of claim 1 wherein the temperature sensor assembly includes a lead portion opposite the anchor portion, and wherein the lead portion extends axially beyond end regions of the windings.

12. The electric machine of claim 11 further comprising temperature leads extending from the temperature sensor at the anchor portion and to the lead portion.

13. The electric machine of claim 12 wherein the temperature sensor assembly includes a head portion extending generally orthogonally from the lead portion, and wherein the temperature leads extend within the head portion.

14. A temperature sensor assembly for an electric machine, comprising:

an elongated housing;

a temperature sensor and lead wire disposed within the elongated housing;

a screw thread extending about an outer perimeter of the elongated housing; and

opposing tabs extending from the outer perimeter of the elongated housing proximate the screw thread, the tabs resiliently flexible relative to the elongated housing.

15. The temperature sensor assembly of claim 14 wherein the screw thread extends from the outer perimeter in a first direction, and wherein the opposing tabs extend from the outer perimeter in opposing second and third directions that are rotated 90 degrees from the first direction.

16. The temperature sensor assembly of claim 14 wherein the screw thread is a first set of screw threads, wherein the temperature sensor assembly further includes a second set of screw threads axially spaced from the first set of screw threads.

17. The temperature sensor assembly of claim 16 wherein individual screw threads of the first set of screw threads extend less than 180° about the outer perimeter of the elongated housing, and wherein individual screw threads of the second set of screw threads extend less than 180° about the outer perimeter of the elongated housing such that the individual screw threads of the second set of screw threads are substantially aligned with the individual screw threads of the first set of screw threads.

18. The temperature sensor assembly of claim 14 further comprising a head portion extending orthogonally from the elongated housing, wherein the lead wire extends from the temperature sensor and through the head portion.

19. A method of securing a temperature-sensing assembly to stator windings, comprising:

compressing opposing resilient tabs that extend from an anchor portion of the temperature-sensing assembly;

inserting the anchor portion between a set of radially spaced stator windings; and

rotating the temperature-sensing assembly such that a screw thread of the anchor portion extends between a set of axially spaced windings and the resilient tabs extend between the set of radially spaced windings.

20. The method of claim 19 wherein the resilient tabs are adapted to engage the radially spaced stator windings in a compressed configuration prior to rotating the temperature-sensing assembly, and wherein the resilient tabs are adapted to flex to an extended configuration between the radially spaced stator windings after rotating the temperature-sensing assembly to restrict a rotation of the temperature-sensing assembly relative to the stator windings.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2018
From: DUNN, CASEY TAYLOR
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 046784/0692 →
Continuity (1)
Related Publication 20200044515A1 · Feb 6, 2020