IP Library › Granted Patent US 10,931,176
Granted Patent B2
US 10,931,176 · App. 16/055,799 · Granted Feb 23, 2021

Electric machine thermal management

Inventors: Casey Taylor Dunn (Brownstown Charter Township, MI); Daniel Frank Sheldon (Northville, MI)
Assignee: Ford Global Technologies, LLC
H02K11/25B60L3/0061H02K5/225B60L2240/425
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Quick Facts
Patent No.
US 10,931,176
App. No.
16/055,799
Granted
Feb 23, 2021
Kind
B2
Abstract

An electric machine for an electrified vehicle includes a stator including windings and a bridge extending across the windings and in engagement with the windings. The electric machine further includes a temperature sensor assembly secured to the bridge. The temperature sensor assembly includes a retention housing having a base and spaced apart retention arms extending from the base. The temperature sensor assembly further includes a temperature sensor disposed within the retention housing. An adhesive is disposed between the retention housing and the bridge.

Claims (35)

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

a stator including windings and a bridge extending across the windings and in engagement with the windings;

a temperature sensor assembly secured to the bridge and including

a retention housing having a base and spaced apart retention arms extending from the base, and

a temperature sensor disposed within the retention housing; and

an adhesive disposed between the retention housing and the bridge.

2. The electric machine of claim 1 wherein the adhesive is disposed between the base and a side surface of the bridge.

3. The electric machine of claim 1 wherein the adhesive is disposed between the retention arms and opposing planar surfaces of the bridge.

4. The electric machine of claim 1 wherein the base engages the bridge at a side surface of the bridge, and wherein the retention arms engage the bridge at opposing planar surfaces that extend generally orthogonal to the side surface.

5. The electric machine of claim 1 wherein the temperature sensor assembly further includes a wire guide that extends from the base and away from the bridge.

6. The electric machine of claim 1 wherein the retention housing further includes opposing distal end clips extending from distal portions of the retention arms and disposed in engagement with the bridge.

7. The electric machine of claim 6 wherein the base engages the bridge at a side surface of the bridge, and wherein the opposing distal end clips engage the bridge at an opposing side surface that extends generally parallel to the side surface.

8. The electric machine of claim 7 wherein the bridge defines an aperture extending therethrough, and wherein the opposing distal end clips extend into the aperture.

9. The electric machine of claim 1 wherein the adhesive is a thermoset adhesive.

10. A method of securing a temperature sensor to an electric machine, comprising:

applying an adhesive to an inner surface of a temperature sensor assembly that houses the temperature sensor or a surface of a bridge that extends across windings of a stator;

engaging the bridge with resiliently flexible arms of the temperature sensor assembly to deform the resiliently flexible arms; and

engaging the bridge with the inner surface.

11. The method of claim 10 wherein engaging the bridge with resiliently flexible arms includes engaging the bridge with sloped outer surfaces of the resiliently flexible arms.

12. The method of claim 10 wherein when the inner surface is engaged with the bridge, the resiliently flexible arms are returned to a non-deformed configuration.

13. The method of claim 10 further comprising:

after engaging the bridge with the inner surface, curing the adhesive.

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

a C-shaped retention housing including

a retention base,

spaced apart resilient retention arms extending from the retention base, and

opposing distal end clips extending inwardly at distal portions of the resilient retention arms;

a temperature sensor disposed within the retention housing; and

a wire guide extending from the retention housing.

15. The temperature sensor assembly of claim 14 wherein the retention arms include a first retention arm and a second retention arm spaced from the first retention arm, and wherein an inner surface of the retention base cooperates with opposing inner surfaces of the first and second retention arms to at least partially define a channel therebetween.

16. The temperature sensor assembly of claim 14 wherein the C-shaped retention housing is a unitary elastomeric body overmolded around the temperature sensor.

17. The temperature sensor assembly of claim 14 wherein the temperature sensor is a thermistor.

18. The temperature sensor assembly of claim 14 wherein the temperature sensor is disposed within the retention base, and wherein the wire guide extends from the retention base, the temperature sensor assembly further including a lead wire extending from the temperature sensor and through the wire guide.

19. The temperature sensor assembly of claim 14 wherein the opposing distal end clips include ramped surfaces that face opposite a channel at least partially formed by the retention arms.

20. The temperature sensor assembly of claim 14 wherein a distal portion of an individual resilient retention arm defines a first planar surface, a second planar surface extending from the first planar surface at an oblique angle, and a third planar surface extending from the second planar surface at an oblique angle and extending in a plane substantially orthogonal to the first planar surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2018
From: DUNN, CASEY TAYLOR; SHELDON, DANIEL FRANK
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 046563/0861 →
Continuity (1)
Related Publication 20200044517A1 · Feb 6, 2020