IP Library Granted Patent US 10,903,472
Granted Patent B2
US 10,903,472 · App. 15/933,977 · Granted Jan 26, 2021

Electrode tab coupling member and electrode tab coupling assembly comprising same

Inventor: Hyun Wook Jeon (Daejeon, KR)
Assignee: LG Chem, Ltd.
H01M2/266H01M2/30H01M10/052H01M10/058
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Quick Facts
Patent No.
US 10,903,472
App. No.
15/933,977
Granted
Jan 26, 2021
Kind
B2
Abstract

The present disclosure provides an electrode tab coupling member and an electrode tab coupling assembly including the same that can solve the limitations of existing arts and the technical issues demanded from the past.

Claims (46)

1. An electrode tab coupling member for coupling electrode tabs of a battery cell in which an electrode assembly comprising a positive electrode, a separator, and a negative electrode is built in a battery case, and the electrode assembly is formed in a structure in which the electrode tabs each outwardly protrude from the battery case, and a plurality of electrode plates are stacked between the positive electrode and the negative electrode with the separator interposed therebetween, the electrode tab coupling member comprising:

a first plate facing first surfaces of the electrode tabs;

a second plate facing second surfaces, opposite to the first surfaces, of the electrode tabs; and

a bolt configured to press a slit between the first plate and the second plate,

wherein the electrode tabs are positioned between the first plate and the second plate, and when the bolt presses the first plate and the second plate, the electrode tabs are fixedly coupled to each other,

wherein:

the first plate comprises a protrusion part protruding toward the second plate,

the second plate comprises a recess part accommodating the protrusion part of the first plate, and

both the protrusion part and the recess part extend in a direction perpendicular to a protruding direction of the electrode tabs when viewed in a plane.

2. The electrode tab coupling member of claim 1 , wherein

when pressed by the bolt, the electrode tabs are pressed and fixed between the protrusion part and the recess part.

3. The electrode tab coupling member of claim 2 , wherein both the protrusion part and the recess part have semispherical cross-sectional shapes when viewed in the plane.

4. The electrode tab coupling member of claim 1 , wherein according to rotation of the bolt, the distance between the first plate and the second plate is decreased whereby the electrode tabs are pressed and fixed.

5. A battery module comprising the electrode tab coupling member of claim 1 .

6. An electrode tab coupling member for coupling electrode tabs of a battery cell in which an electrode assembly comprising a positive electrode, a separator, and a negative electrode is built in a battery case, and the electrode assembly is formed in a structure in which the electrode tabs each outwardly protrude from the battery case, and a plurality of electrode plates are stacked between the positive electrode and the negative electrode with the separator interposed therebetween, the electrode tab coupling member comprising:

a first plate facing first surfaces of the electrode tabs;

a second plate facing second surfaces, opposite to the first surfaces, of the electrode tabs; and

a bolt configured to press a slit between the first plate and the second plate,

wherein the electrode tabs are positioned between the first plate and the second plate, and when the bolt presses the first plate and the second plate, the electrode tabs are fixedly coupled to each other,

wherein the first plate comprises a pair of first protrusion parts spaced apart by a flat surface at a predetermined distance from each other and protruding toward the second plate,

wherein the second plate comprises a second protrusion part protruding toward the first plate,

wherein both the first protrusion parts and the second protrusion part extend in a direction perpendicular to a protruding direction of the electrode tabs when viewed in a plane, and

when pressed by the bolt, the second protrusion part is accommodated between the pair of first protrusion parts such that the electrode tabs are pressed and fixed between the first protrusion part and the second protrusion part.

7. The electrode tab coupling member of claim 6 , wherein the first protrusion parts and the second protrusion part have semispherical cross-sectional shapes.

8. The electrode tab coupling member of claim 7 , wherein the electrode tabs comprise recesses and protrusions which have semispherical cross-sections corresponding to the first and second protrusion parts so as to be in close contact with the first and second protrusion parts.

9. An electrode tab coupling assembly configured to electrically connect electrode tabs of n number of battery cells wherein an electrode assembly comprising a positive electrode, a separator, and a negative electrode is built in a battery case, and the electrode assembly is formed in a structure in which the electrode tabs each outwardly protrude from the battery case and a plurality of electrode plates are stacked between the positive electrode and the negative electrode with the separator interposed therebetween, the electrode tab coupling assembly comprising:

n number of positive electrode accommodating slits configured to respectively accommodate positive electrode tabs of the n number of battery cells;

n number of negative electrode accommodating slits configured to respectively accommodate negative electrode tabs of the n number of battery cells; and

bolts configured to press the spaces of the n number of positive electrode accommodating slits and the n number of negative electrode accommodating slits,

wherein the electrode tab coupling assembly is formed of a conductive material, whereby when the electrode tabs of the n number of battery cells are pressed and fixed by the bolts while being respectively inserted into the positive electrode accommodating slits and negative electrode accommodating slits, the n number of battery cells are electrically connected,

wherein protrusion parts and recess parts are respectively formed in directions facing each other inside the n number of positive electrode accommodating slits and negative electrode accommodating slits, and

wherein both the protrusion part and the recess part extend in a direction perpendicular to a protruding direction of the electrode tabs when viewed in a plane.

10. The electrode tab coupling assembly of claim 9 , wherein

the protrusion parts and recess parts are formed in shapes corresponding to each other, and

when pressed by the bolts, the electrode tabs are pressed and fixed between the protrusion parts and the recess parts.

11. The electrode tab coupling assembly of claim 10 , wherein both the protrusion part and the recess part have semispherical cross-sectional shapes.

12. A battery pack comprising the electrode tab coupling assembly of claim 9 .

13. An electrode tab coupling assembly configured to electrically connect electrode tabs of n number of battery cells wherein an electrode assembly comprising a positive electrode, a separator, and a negative electrode is built in a battery case, and the electrode assembly is formed in a structure in which the electrode tabs each outwardly protrude from the battery case and a plurality of electrode plates are stacked between the positive electrode and the negative electrode with the separator interposed therebetween, the electrode tab coupling assembly comprising:

n number of positive electrode accommodating slits configured to respectively accommodate positive electrode tabs of the n number of battery cells;

n number of negative electrode accommodating slits configured to respectively accommodate negative electrode tabs of the n number of battery cells; and

bolts configured to press the spaces of the n number of positive electrode accommodating slits and the n number of negative electrode accommodating slits,

wherein the electrode tab coupling assembly is formed of a conductive material, whereby when the electrode tabs of the n number of battery cells are pressed and fixed by the bolts while being respectively inserted into the positive electrode accommodating slits and negative electrode accommodating slits, the n number of battery cells are electrically connected,

wherein in each of the n number of positive electrode accommodating slits and negative electrode accommodating slits, a pair of first protrusion parts, which are disposed on the same plane and spaced apart by a flat surface at a predetermined distance from each other, and a second protrusion part provided in a direction facing the pair of first protrusion parts are provided, and

when pressed by the bolts, the second protrusion part is accommodated between the pair of first protrusion parts, and thus, the electrode tabs are pressed and fixed between the pair of first protrusion parts and the second protrusion part,

wherein both the first protrusion parts and the second protrusion part extend in a direction perpendicular to a protruding direction of the electrode tabs when viewed in a plane.

14. The electrode tab coupling assembly of claim 13 , wherein each of the pair of the first protrusion parts and the second protrusion part have semispherical cross-sectional shapes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: LG CHEM, LTD.
To: LG ENERGY SOLUTION, LTD.
Reel/Frame 058295/0068 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2018
From: JEON, HYUN WOOK
To: LG CHEM, LTD.
Reel/Frame 045328/0876 →
Priority Claims (1)
KR 10-2017-0047249 · Apr 12, 2017 · national
Continuity (1)
Related Publication 20180301685A1 · Oct 18, 2018