IP Library Granted Patent US 11,764,409
Granted Patent B2
US 11,764,409 · App. 17/160,677 · Granted Sep 19, 2023

Battery system, method for leakage detection inside the battery system, and vehicle including the battery system

Inventors: Markus Lettner (Wettmannstatten, AT); Jurgen Fritz (Graz, AT); Patrick Stebl (Kaindorf, AT); Michael Schlick (Graz, AT)
Assignee: Samsung SDI Co., Ltd.
H01M10/4228H01M10/425H01M10/6567H01M2220/20
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Quick Facts
Patent No.
US 11,764,409
App. No.
17/160,677
Granted
Sep 19, 2023
Kind
B2
Abstract

A battery system, a method of detecting leaks inside a battery system, and a vehicle, the battery system including a housing including a housing frame and a base frame, the housing frame and the base frame enclosing a housing space; a battery module including a plurality of battery cells electrically connected to each other via a bus bar, the battery module being in the housing space; a tray including a tray frame and a tray base; and a battery management system including a liquid detector, wherein the liquid detector is configured to detect a liquid inside the tray, and the liquid detector includes a high-voltage conductor, a first end of the high-voltage conductor being connected to the bus bar and a second end of the high-voltage conductor being between the base frame and the tray base.

Claims (53)

1. A battery system, comprising:

a housing including a housing frame and a base frame, the housing frame and the base frame enclosing a housing space;

a cooling system with a cooling liquid;

a battery module including a plurality of battery cells electrically connected to each other via a bus bar, the battery module being in the housing space and being configured to receive the cooling liquid for cooling;

a tray including a tray frame and a tray base; and

a battery management system including a liquid detector,

wherein:

the liquid detector is configured to detect the presence of the cooling liquid inside the tray,

the liquid detector includes a first conductor, a first end of the first conductor being directly connected to the bus bar and a second end of the first conductor being between the base frame and the tray base such that the presence of the cooling liquid inside the tray is detectable when a depth of the cooling liquid in the tray is sufficient to contact the second end of the first conductor, and

the liquid detector includes a resistance monitor configured to monitor a resistance between the first conductor and the tray base.

2. The battery system as claimed in claim 1 , wherein the liquid detector of the battery management system further includes a second conductor, a first end of the second conductor being connected to the battery management system and a second end of the second conductor being between the second end of the first conductor and the tray base.

3. The battery system as claimed in claim 2 , wherein the resistance monitor is configured to monitor a resistance between the second conductor and the tray base.

4. The battery system as claimed in claim 2 , wherein:

the battery management system and the tray are connected to a same ground potential, and

the liquid detector of the battery management system is configured to detect liquid between the second conductor and the tray base.

5. The battery system as claimed in claim 2 , wherein the tray base has a sloped surface.

6. The battery system as claimed in claim 5 , wherein:

the tray base with the sloped surface includes a reservoir, and

the liquid detector of the battery management system is configured to detect liquid inside the reservoir.

7. The battery system as claimed in claim 6 , wherein:

the second end of the first conductor and the second end of the second conductor are inside the reservoir, and

the second end of the second conductor is between the second end of the first conductor and a base of the reservoir.

8. The battery system as claimed in claim 6 , wherein the reservoir includes an optically detectable surface.

9. The battery system as claimed in claim 6 , wherein the reservoir includes a drainage plug.

10. The battery system as claimed in claim 1 , wherein the first conductor is integrally formed with the bus bar.

11. A method of detecting leaks inside a battery system, the method comprising:

providing a battery system that includes:

a housing including a housing frame and a base frame, the housing frame and the base frame enclosing a housing space,

a cooling system with a cooling liquid,

a battery module including a plurality of battery cells electrically connected to each other via a bus bar, the battery module being in the housing space and being configured to receive the cooling liquid for cooling,

a tray including a tray frame and a tray base, and

a battery management system including a liquid detector, the liquid detector being configured to detect a liquid inside the tray and including a first conductor, a first end of the first conductor being connected to the bus bar and a second end of the first conductor being between the base frame and the tray base;

monitoring a decline in an amount of the cooling liquid inside the cooling system with the battery management system;

monitoring an increase in an amount of the liquid inside the tray with the liquid detector of the battery management system;

comparing the decline in the amount of the cooling liquid inside the cooling system with the increase in the amount of the liquid inside the tray with the battery management system;

verifying whether the liquid inside the tray is the cooling liquid by determining whether the decline in the amount of the cooling liquid inside the cooling system corresponds to the increase in the amount of the liquid inside the tray with the battery management system;

wherein monitoring the increase in the amount of the liquid inside the tray includes sending a first signal from a second conductor to the battery management system upon detection of liquid inside the tray; and

wherein monitoring the increase in the amount of the liquid inside the tray includes sending a second signal from the first conductor to the battery management system upon detection of the liquid inside the tray.

12. A vehicle including the battery system as claimed in claim 1 .

13. A battery system, comprising:

a housing including a housing frame and a base frame, the housing frame and the base frame enclosing a housing space;

a cooling system with a cooling liquid;

a battery module including a plurality of battery cells electrically connected to each other via a bus bar, the battery module being in the housing space and being configured to receive the cooling liquid for cooling;

a tray including a tray frame and a tray base; and

a battery management system including a liquid detector, the liquid detector including a resistance monitor configured to monitor a resistance between a first conductor and the tray base, the liquid detector being configured to detect liquid inside the tray, a first end of the first conductor being connected to the bus bar and a second end of the first conductor being between the base frame and the tray base,

wherein:

the liquid detector is configured to detect the liquid inside the tray by:

monitoring a decline in an amount of the cooling liquid inside the cooling system with the battery management system;

monitoring an increase in an amount of the liquid inside the tray with the liquid detector of the battery management system;

comparing the decline in the amount of the cooling liquid inside the cooling system with the increase in the amount of the liquid inside the tray with the battery management system;

verifying whether the liquid inside the tray is the cooling liquid by determining whether the decline in the amount of the cooling liquid inside the cooling system corresponds to the increase in the amount of the liquid inside the tray with the battery management system;

wherein monitoring the increase in the amount of the liquid inside the tray includes sending a first signal from a second conductor to the battery management system upon detection of liquid inside the tray; and

wherein monitoring the increase in the amount of the liquid inside the tray includes sending a second signal from the first conductor to the battery management system upon detection of the liquid inside the tray.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 28, 2021
From: LETTNER, MARKUS; FRITZ, JURGEN; STEBL, PATRICK; SCHLICK, MICHAEL
To: SAMSUNG SDI CO., LTD.
Reel/Frame 055061/0041 →
Priority Claims (2)
EP 20159257 · Feb 25, 2020 · regional
KR 10-2021-0007543 · Jan 19, 2021 · national
Continuity (1)
Related Publication 20210265672A1 · Aug 26, 2021
Cited By (1)
US 12,681,509