IP Library Granted Patent US 10,186,697
Granted Patent B1
US 10,186,697 · App. 15/948,753 · Granted Jan 22, 2019

Battery module with cooling aspects

Inventor: John Henry Harris, III (San Gabriel, CA)
Assignee: Thor Trucks Inc.
H01M2/1077H01M10/613H01M10/6557H01M10/6561
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Quick Facts
Patent No.
US 10,186,697
App. No.
15/948,753
Granted
Jan 22, 2019
Kind
B1
Abstract

Aspects of a modular clip for an electric battery, a battery module comprising multiple such modular clips, and a battery pack comprising multiple battery modules are provided. The modular clip includes a housing configured to receive a plurality of battery cells. The housing includes a base portion and a first and second wall extending from the base portion of the housing along a length of the housing, wherein the plurality of battery cells are received between the first wall and the second wall. The first and/or second wall forms a cooling path along the length of the housing, e.g., a gap maintained between the plurality of cells and the first/second wall. The battery module may include a regulator and duct to direct/control air flow to the cooling path in each of the modular clips comprised in a battery module.

Claims (58)

1. A modular clip for a battery module, the modular clip comprising:

a housing configured to receive a plurality of battery cells, wherein the housing includes:

a base portion;

a first wall extending from the base portion of the housing along a length of the housing; and

a second wall extending from the base portion of the housing along the length of the housing, wherein the housing is configured to receive the plurality of battery cells between the first wall and the second wall, and

wherein the first wall and the second wall form a linear channel that extends the length of the modular clip to an open end, wherein the linear channel comprises a first gap between the first wall and the plurality of cells that the housing is configured to receive and a second gap between the second wall and the plurality of cells that the housing is configured to receive, wherein the first gap and the second gap are comprised in a cooling path that enables air flow from a first end of the linear channel along the length of the housing to the open end of the linear channel.

2. The modular clip of claim 1 , wherein the first gap and the second gap each comprise a height corresponding to at least ¼ of a height of a battery cell.

3. The modular clip of claim 1 , wherein the first gap and the second gap each comprise a width within a range of approximately 0.1 mm-5 mm.

4. The modular clip of claim 1 , wherein the base portion comprises a plurality of bottom cell recesses, wherein each cell recess is configured to surround a first portion of a battery cell, and wherein the first gap and the second gap of the cooling path are formed above the bottom cell recesses to enable the air flow around a second portion of the battery cell that is not surrounded by a corresponding cell recess.

5. The modular clip of claim 4 , further comprising:

a retainer plate including a plurality of top cell recesses, wherein the plurality of top cell recesses are aligned corresponding to an alignment of the plurality of bottom cell recesses, wherein the cooling path is formed between the top cell recesses and the bottom cell recesses.

6. The modular clip of claim 4 , wherein each cell recess is configured to receive the battery cell having at least one of a cylindrical exterior or a prismatic exterior.

7. The modular clip of claim 1 , further comprising:

the plurality of battery cells positioned within the housing.

8. The modular clip of claim 1 , wherein the housing is configured to receive a single row of the plurality of battery cells between the first wall and the second wall.

9. A battery module for a battery pack assembly, the battery module comprising:

a base plate; and

a plurality of modular clips coupled to the base plate, each modular clip including:

a housing configured to receive a plurality of battery cells, wherein the housing includes:

a base portion;

a first wall extending from the base portion of the housing along a length of the housing; and

a second wall extending from the base portion of the housing along the length of the housing, wherein the housing is configured to receive the plurality of battery cells between the first wall and the second wall, and

wherein the first wall and the second wall form a linear channel that extends the length of the modular clip to an open end, wherein the linear channel comprises a first gap between the first wall and the plurality of cells that the housing is configured to receive and a second gap between the second wall and the plurality of cells that the housing is configured to receive, wherein the first gap and the second gap are comprised in a cooling path that enables air flow from a first end of the linear channel along the length of the housing to the open end of the linear channel.

10. The battery module of claim 9 , further comprising:

a regulator plate extending along one side of each of the plurality of modular clips.

11. The battery module of claim 10 , wherein the regulator plate comprises multiple openings, wherein at least one of the multiple openings communicates air flow to the cooling path formed in each of the plurality of modular clips.

12. The battery module of claim 11 , wherein each of the multiple openings controls air flow to the cooling path of a respective modular clip.

13. The battery module of claim 12 , wherein the multiple openings comprise at least a different size or a different shape, wherein the different shape or the different size of each of the multiple openings is configured to balance air flow to each of the modular clips.

14. The battery module of claim 11 , further comprising:

a duct that surrounds a side of the regulator plate opposite the plurality of modular clips.

15. The battery module of claim 14 , wherein the duct forms an air path from a duct opening in the duct to the multiple openings in the regulator plate.

16. The battery module of claim 14 , wherein the duct directs air flow from an exterior of the battery to the regulator plate where the air flow is directed into the respective cooling paths of each of the plurality of modular clips.

17. The battery module of claim 9 , further comprising:

the plurality of battery cells positioned within each of the modular clips.

18. The battery module of claim 9 , wherein the housing is configured to receive a single row of the plurality of battery cells between the first wall and the second wall.

19. The battery module of claim 9 , wherein the base portion comprises a plurality of bottom cell recesses, wherein each cell recess is configured to surround a first portion of a battery cell, and wherein the first gap and the second gap of the cooling path are formed above the bottom cell recesses to enable the air flow around a second portion of the battery cell that is not surrounded by a corresponding cell recess.

20. The battery module of claim 19 , wherein each modular clip comprises:

a retainer plate including a plurality of top cell recesses, wherein the plurality of top cell recesses are aligned corresponding to an alignment of the plurality of bottom cell recesses, wherein the cooling path is formed between the top cell recesses and the bottom cell recesses.

21. A battery pack comprising:

a plurality of battery modules, each battery module including:

a plurality of modular clips, each modular clip including:

a housing configured to receive a plurality of battery cells, wherein the housing includes:

a base portion;

a first wall extending from the base portion of the housing along a length of the housing; and

a second wall extending from the base portion of the housing along the length of the housing, wherein the housing is configured to receive the plurality of battery cells between the first wall and the second wall, and

wherein the first wall and the second wall form a linear channel that extends the length of the modular clip to an open end, wherein the linear channel comprises a first gap between the first wall and the plurality of cells that the housing is configured to receive and a second gap between the second wall and the plurality of cells that the housing is configured to receive, wherein the first gap and the second gap are comprised in a cooling path that enables air flow from a first end of the linear channel along the length of the housing to the open end of the linear channel.

22. The battery pack of claim 21 , wherein each battery module further comprises:

a regulator plate extending along one side of each of the plurality of modular clips.

23. The battery pack of claim 22 , wherein the regulator plate comprises multiple openings, wherein at least one of the multiple openings communicates air flow to the cooling path formed in each of the plurality of modular clips, wherein each of the multiple openings controls air flow to the cooling path of a respective modular clip.

24. The battery pack of claim 23 , wherein the multiple openings comprise at least a different size or a different shape, wherein the different shape or the different size of each of the multiple openings is configured to balance air flow to each of the modular clips.

25. The battery pack of claim 22 , wherein each battery module further comprises:

a duct that surrounds a side of the regulator plate opposite the plurality of modular clips.

26. The battery pack of claim 21 , further comprising:

the plurality of battery cells positioned within each modular clip.

27. The battery pack of claim 21 , wherein the housing is configured to receive a single row of the plurality of battery cells between the first wall and the second wall.

28. The battery pack of claim 21 , wherein the base portion comprises a plurality of bottom cell recesses, wherein each cell recess is configured to surround a first portion of a battery cell, and wherein the first gap and the second gap of the cooling path are formed above the bottom cell recesses to enable the air flow around a second portion of the battery cell that is not surrounded by a corresponding cell recess.

29. The battery pack of claim 28 , wherein each modular clip comprises:

a retainer plate including a plurality of top cell recesses, wherein the plurality of top cell recesses are aligned corresponding to an alignment of the plurality of bottom cell recesses, wherein the cooling path is formed between the top cell recesses and the bottom cell recesses.

Assignments (3)
CHANGE OF NAME Recorded Jun 10, 2019
From: XOS TRUCKS, INC.
To: XOS, INC.
Reel/Frame 049418/0770 →
CHANGE OF NAME Recorded Jun 7, 2019
From: THOR TRUCKS INC.
To: XOS TRUCKS, INC.
Reel/Frame 049403/0263 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2018
From: HARRIS, JOHN HENRY, III
To: THOR TRUCKS INC.
Reel/Frame 045925/0669 →
Continuity (1)
Provisional Application 62626037 · Feb 3, 2018
Cited By (3)
US 12,409,756 US 12,633,587 US 12,686,298