IP Library Granted Patent US 11,611,259
Granted Patent B2
US 11,611,259 · App. 16/810,665 · Granted Mar 21, 2023

Systems for a cooling jacket in an electric motor

Inventors: Louis Lambourg (Valenciennes, FR); Steven Vanhee (Staden, BE)
Assignee: Dana Belgium N.V.
H02K5/203H02K1/20H02K9/19
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Quick Facts
Patent No.
US 11,611,259
App. No.
16/810,665
Granted
Mar 21, 2023
Kind
B2
Abstract

Methods and systems are provided for a cooling jacket for an electric motor. In one example, a system may include a channel extending along a circumference of an inner surface of the cooling jacket between an inlet and an outlet of the cooling jacket. A cross-section of the channel may gradually change from the inlet to the outlet along the circumference in order to compensate an increase in coolant temperature by an increase in convective heat transfer such that cooling is balanced around a circumferential surface of the electric motor.

Claims (25)

1. A system for a cooling jacket of an electric motor having an axis of rotation, comprising:

a first half of a channel extending along a circumference of an inner surface of the cooling jacket between an inlet and an outlet, a cross-section of the channel gradually changing from the inlet to the outlet along the circumference, wherein the first half of the channel includes only a single continuously winding path that extends axially back and forth along the circumference of said inner surface from the inlet to the outlet;

wherein the first half of the channel meanders about interdigitated fingers disposed on the circumference of the inner surface of cooling jacket, wherein the interdigitated fingers are axially aligned; and

wherein a width of the interdigitated fingers gradually decreases from the inlet to the outlet with a width of a finger proximal to the inlet being highest and a width of another finger proximal to the outlet being the lowest.

2. The system of claim 1 , wherein the cooling jacket is a cylindrical structure with the inlet being positioned on the circumference of the inner surface of the cooling jacket diametrically opposite to the outlet.

3. The system of claim 1 , wherein the outlet is a single orifice or a plurality of adjacent orifices.

4. The system of claim 1 , further comprising a cooling liquid entering the first half of the channel via the inlet and flowing out of the channel via the outlet.

5. The system of claim 4 , wherein the cooling liquid entering the channel via the inlet bifurcates into two portions and flows along the first half and a second half of the channel and then exits the channel via the outlet, the first half of the channel being a symmetrical image of the second half of the channel about a vertical axis of the electric motor.

6. The system of claim 1 , wherein the cross-section of the channel is highest proximal to the inlet and the cross-section of the channel is lowest proximal to the outlet.

7. The system of claim 1 , wherein the interdigitated fingers of the first half of the channel include only: a first set of fingers protruding along the circumference of the inner surface and extending axially from a first side wall and a second set of fingers protruding along the circumference of the inner surface and extending axially from a second side wall, opposite to the first side wall.

8. The system of claim 1 , wherein the channel is in face sharing contact with the stator.

9. A system for a cylindrical cooling jacket coaxially surrounding an electric motor, comprising:

an inlet for a cooling liquid;

a plurality of outlets for the cooling liquid positioned diametrically opposite to the inlet;

a continuous channel disposed on a surface of the cooling jacket with a width of the channel decreasing in multiple increments between the inlet and the outlet(s) in at least one half of the cooling jacket, an amount of cooling liquid entering the channel via the inlet, the amount of cooling liquid bifurcating upon entry with a first portion flowing through a first half of the cooling jacket and a second portion of the cooling liquid flowing through a second half of the cooling jacket, wherein the continuous channel includes only a first single continuous channel with a first part of the bifurcated liquid and only a second single continuous channel with a remaining part of the bifurcated liquid, each of the single continuous channels having only a single continuously winding path that extends axially back and forth along a circumference of said inner surface; and

a plurality of interlocking fingers projecting out from side walls of the surface of the cooling jacket, the channel meandering between the interlocking fingers;

wherein a distance between two adjacent fingers of the plurality of interlocking fingers gradually decreases between the inlet and the outlet in the at least one half of the cooling jacket, the one half being one of the first half and the second half of the cylindrical cooling jacket.

10. The system of claim 9 , wherein each of the first half of the cooling jacket and the second half of the cylindrical cooling jacket has a semi-circular cross section, the first half being a symmetrical image of the second half about a vertical axis of the electric motor.

11. The system of claim 9 , wherein a width of a first segment of the channel proximal to the inlet is higher than a width of a second segment of the channel proximal to the outlet.

12. The system of claim 9 , wherein the channel is in face sharing contact with a stator.

13. A cooling system for an electric motor, comprising:

a cylindrical cooling jacket including a continuous channel disposed on an inner surface meandering about interdigitated fingers projecting from sidewalls of the inner surface, the channel including a bifurcated path, each half of the bifurcated path being a single continuously winding path that extends axially back and forth along a circumference of said inner surface from an inlet to an outlet with a variable cross-section with the cross-section decreasing along each of a first half and a second half of the cooling jacket from a top of the cooling jacket to a bottom of the cooling jacket;

wherein a distance between two adjacent fingers of the interlocking fingers gradually decreases between the inlet and the outlet in the at least one half of the cooling jacket, the one half being one of the first half and the second half of the cylindrical cooling jacket.

14. The system of claim 13 , wherein a cooling liquid enters the channel from the inlet being an opening located at the top of the jacket and after flowing through the channel in each of the first half and the second half of the cooling jacket, the cooling liquid exits the channel through one or more openings located at the bottom of the cooling jacket, the top and the bottom of the cooling jacket having an angular separation of 180°.

15. The system of claim 13 , wherein the channel is in face sharing contact with the stator.

Assignments (3)
CHANGE OF NAME Recorded Jan 23, 2026
From: DANA BELGIUM N.V.
To: DANA BELGIUM
Reel/Frame 074502/0049 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2026
From: DANA BELGIUM
To: DANA TM4 INC.
Reel/Frame 073474/0330 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2020
From: LAMBOURG, LOUIS; VANHEE, STEVEN
To: DANA BELGIUM N.V.
Reel/Frame 052032/0747 →
Continuity (1)
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