IP Library Granted Patent US 10,396,317
Granted Patent B2
US 10,396,317 · App. 14/092,398 · Granted Aug 27, 2019

Ultrasonic welding apparatus and secondary battery with enhanced electrode structure

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Quick Facts
Patent No.
US 10,396,317
App. No.
14/092,398
Granted
Aug 27, 2019
Kind
B2
Abstract

The present disclosure describes an ultrasonic welding apparatus, which improves the welding strength of an electrode tab and an electrode lead included in a secondary battery, and a secondary battery with an enhanced electrode structure strength by using the ultrasonic welding apparatus. The secondary battery includes an electrode assembly in which a cathode plate provided with a cathode tab, an anode plate provided with an anode tab, and a separator are stacked in turn; a pouch for receiving the electrode assembly; a cathode lead electrically coupled to the cathode tab by welding; and an anode lead electrically coupled to the anode tab by welding, wherein the density of welding points, formed at a welding surface between the anode lead and the anode tab, is higher than that of welding points, formed at a welding surface between the cathode lead and the cathode tab.

Claims (29)

1. A secondary battery, comprising:

an electrode assembly in which a cathode plate provided with a cathode tab, an anode plate provided with an anode tab, and a separator are stacked in turn;

a pouch for receiving the electrode assembly;

a cathode lead welded and electrically coupled to the cathode tab at a second welding surface; and

an anode lead welded and electrically coupled to the anode tab at a first welding surface,

wherein a first density of welding points, formed at the first welding surface between the anode lead and the anode tab, is higher than a second density of welding points, formed at the second welding surface between the cathode lead and the cathode tab;

wherein each of the first welding surface and the second welding surface includes a central axis and a plurality of the welding points arranged in a plurality of columns extending perpendicular to the central axis, each of the columns being defined by a linear arrangement of a plurality of discrete welding points;

wherein a number of the welding points at the first welding surface gradually increases from the central axis of the first welding surface outwardly to both sides of the first welding surface, and a number of the welding points at the second welding surface gradually increases from the central axis of the second welding surface outwardly to both sides of the second welding surface; and

wherein, for each of the first and second welding surfaces, a first spacing between an outermost one of the columns and a first one of the columns disposed directly adjacent the outermost column is less than a second spacing between a central one of the columns and a second one of the columns disposed directly adjacent the central column, the second column being disposed between the central column and the first column.

2. The secondary battery according to claim 1 , wherein the area of an individual welding point of the first density of welding points, formed at the first welding surface between the anode lead and the anode tab, is larger than that of an individual welding point of the second density of welding points, formed at the second welding surface between the cathode lead and the cathode tab.

3. The secondary battery according to claim 1 , wherein the total area of the first density of welding points, formed at the first welding surface between the anode lead and the anode tab, is larger than that of the second density of welding points, formed at the second welding surface between the cathode lead and the cathode tab.

4. A secondary battery, comprising:

an electrode assembly in which a cathode plate provided with a cathode tab, an anode plate provided with an anode tab, and a separator are stacked in turn;

a pouch for receiving the electrode assembly;

a cathode lead welded and electrically coupled to the cathode tab at a second welding surface; and

an anode lead welded and electrically coupled to the anode tab at a first welding surface,

wherein a first radius of a welding point in the first welding surface between the anode lead and the anode tab is longer than a second radius of a welding point in the second welding surface between the cathode lead and the cathode tab;

wherein each of the first welding surface and the second welding surface includes a central axis and a plurality of the welding points arranged in a plurality of columns extending perpendicular to the central axis, each of the columns being defined by a linear arrangement of a plurality of discrete welding points;

wherein a number of the welding points at the first welding surface gradually increases from the central axis of the first welding surface outwardly to both sides of the first welding surface, and a number of the welding points at the second welding surface gradually increases from the central axis of the second welding surface outwardly to both sides of the second welding surface; and

wherein, for each of the first and second welding surfaces, a first spacing between an outermost one of the columns and a first one of the columns disposed directly adjacent the outermost column is less than a second spacing between a central one of the columns and a second one of the columns disposed directly adjacent the central column, the second column being disposed between the central column and the first column.

5. The secondary battery according to claim 4 , wherein a coupling area of the anode lead and the anode tab is the same as a coupling area of the cathode lead and the cathode tab.

6. A secondary battery, comprising:

an electrode assembly in which a cathode plate provided with a cathode tab, an anode plate provided with an anode tab, and a separator are stacked in turn;

a pouch for receiving the electrode assembly;

a cathode lead welded and electrically coupled to the cathode tab at a first welding surface; and

an anode lead welded and electrically coupled to the anode tab at a second welding surface;

wherein each of the first welding surface and the second welding surface includes a central axis and a plurality of the welding points arranged in a plurality of columns extending perpendicular to the central axis, each of the columns being defined by a linear arrangement of a plurality of discrete welding points;

wherein a number of the welding points at the first welding surface gradually increases from the central axis of the first welding surface outwardly to both sides of the first welding surface, and a number of the welding points at the second welding surface gradually increases from the central axis of the second welding surface outwardly to both sides of the second welding surface; and

wherein, for each of the first and second welding surfaces, a first spacing between an outermost one of the columns and a first one of the columns disposed directly adjacent the outermost column is less than a second spacing between a central one of the columns and a second one of the columns disposed directly adjacent the central column, the second column being disposed between the central column and the first column.

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 May 22, 2014
From: LEE, KYUNG-MIN; SHIN, YOUNG-JOON; PARK, HYUN-WOO; LEE, JAE-PIL; PARK, JIN-YOUNG; PARK, JUN-KYU
To: LG CHEM, LTD.
Reel/Frame 032998/0533 →
Cited By (1)
US 12,633,486