IP Library › Granted Patent US 12,552,062
Granted Patent B2
US 12,552,062 · App. 17/914,162 · Granted Feb 17, 2026

Electrode manufacturing apparatus including electrode alignment unit and electrode assembly manufacturing apparatus

Inventors: Woong Ki Kim (Daejeon, KR); Sang Don Lee (Daejeon, KR); Dong Soon Choi (Daejeon, KR); Do Seong Han (Daejeon, KR); Sang Uk Yeo (Daejeon, KR)
Assignee: LG Energy Solution, Ltd.
B26D5/007B26D7/18H01M10/0404
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Quick Facts
Patent No.
US 12,552,062
App. No.
17/914,162
Granted
Feb 17, 2026
Kind
B2
Abstract

Electrode and electrode assembly manufacturing apparatuses include an electrode transfer unit for transferring an electrode with coating layer on surface of the electrode, a cutter for cutting the electrode transferred by the electrode transfer unit to form a unit electrode, a separator transfer unit disposed at one surface of the electrode transfer unit and configured to transfer a separator, a sensor unit for sensing the position of the unit electrode and an alignment unit for adjusting transfer speeds of outer peripheries of the unit electrode parallel to a unit electrode transfer direction to adjust the interval between unit electrodes seated on a separator surface. Whether positive and negative electrodes are aligned before stacking and laminating electrodes having different polarities is determined. The positive and negative electrodes are then stacked, whereby the occurrence of a defective electrode due to misalignment between the positive and negative electrodes is preventable.

Claims (40)

1 . A first electrode manufacturing apparatus comprising:

a first electrode transfer unit configured to transfer first electrodes, at least one of the first electrodes being coated with an electrode coating layer;

a first cutter configured to cut the first electrodes when transferred by the first electrode transfer unit and thereby form first unit electrodes;

a first separator transfer unit disposed at one surface of the first electrode transfer unit, the first separator transfer unit being configured to transfer a first separator;

a first sensor unit configured to sense a position of each of the first unit electrodes; and

a first alignment unit configured to adjust transfer speeds of outer peripheries of the first unit electrodes parallel to a transfer direction of the first unit electrodes in order to adjust an interval between the first unit electrodes that are seated on one surface of the first separator,

wherein the first alignment unit comprises at least two correction rolls disposed at one surface of the first unit electrode.

2 . The first electrode manufacturing apparatus according to claim 1 , wherein:

the first sensor unit comprises two or more sensors configured to sense speeds of the outer peripheries of each of the first unit electrodes parallel to the transfer direction of the first unit electrodes.

3 . The first electrode manufacturing apparatus according to claim 2 , wherein

when outer peripheries of one the first unit electrodes measured by the first sensor unit are not disposed perpendicular to the transfer direction, the first alignment unit adjusts supply speeds of both ends of such one of the first unit electrodes that is supplied to the first separator.

4 . An electrode assembly manufacturing apparatus comprising:

a first electrode supply unit configured to transfer each of the first unit electrodes manufactured by the first electrode manufacturing apparatus comprising:

a first electrode transfer unit configured to transfer first electrodes, at least one of the first electrodes being coated with an electrode coating layer;

a first cutter configured to cut the first electrodes when transferred by the first electrode transfer unit and thereby form first unit electrodes;

a first separator transfer unit disposed at one surface of the first electrode transfer unit, the first separator transfer unit being configured to transfer a first separator;

a first sensor unit configured to sense a position of each of the first unit electrodes; and

a first alignment unit configured to adjust transfer speeds of outer peripheries of the first unit electrodes parallel to a transfer direction of the first unit electrodes in order to adjust an interval between the first unit electrodes that are seated on one surface of the first separator;

a third sensor unit configured to sense a position of each of the first unit electrodes;

a second electrode manufacturing apparatus configured to manufacture a second electrode; and

a coupling unit configured to couple one of the first unit electrodes and a second unit electrode to each other in order to manufacture a mono cell, wherein

the second electrode manufacturing apparatus comprises:

a second electrode transfer unit configured to transfer second electrodes, at least one of the second electrodes being coated with an electrode coating layer;

a second cutter configured to cut the second electrodes when transferred by the second electrode transfer unit and thereby form a second unit electrode;

a second separator transfer unit disposed at one surface of the second electrode transfer unit, the second separator transfer unit being configured to transfer a second separator;

a second sensor unit configured to sense a position each of the second unit electrodes; and

a second alignment unit configured to adjust transfer speeds of both ends of the second unit electrodes parallel to a transfer direction of the second unit electrodes in order to adjust an interval between the second unit electrodes that are seated on one surface of the second separator.

5 . The electrode assembly manufacturing apparatus according to claim 4 , wherein the second alignment unit adjusts the interval between the second unit electrodes based on the position of one of the first unit electrodes sensed by the third sensor unit such that the second unit electrode is aligned with such one of the first unit electrodes at the coupling unit.

6 . The electrode assembly manufacturing apparatus according to claim 4 , wherein:

the second sensor unit comprises two or more sensors configured to sense positions of opposite side outer peripheries of the second unit electrodes parallel to the transfer direction thereof,

the third sensor unit comprises two or more sensors configured to sense positions of opposite side outer peripheries of the first unit electrodes parallel to the transfer direction of the first unit electrodes, and

the second alignment unit comprises at least two correction rolls disposed at one surface of each of the second unit electrodes when arranged to be adjusted by the second alignment unit.

7 . The electrode assembly manufacturing apparatus according to claim 6 , wherein

the correction rolls are disposed at an upper surface of each of the second unit electrodes,

a transfer roll is disposed under the correction rolls at a lower surface of the second unit electrode, and

the transfer roll is configured to have a structure in which a plurality of rollers, speeds of which are capable of being controlled so as to be equal to rotational speeds of the correction rolls, is coupled to each other.

8 . The electrode assembly manufacturing apparatus according to claim 4 , wherein the coupling unit comprises a rolling roll configured to laminate one of the first unit electrodes and one of the second unit electrodes with each other.

9 . The electrode assembly manufacturing apparatus according to claim 4 , comprising a third cutter configured to cut the first separator and the second separator of the mono cell to manufacture a unit mono cell having one of the first unit electrodes and one of the second unit electrodes.

10 . The electrode assembly manufacturing apparatus according to claim 9 , further comprising a vision inspection unit configured to inspect an aligned state of the first unit electrode and the second unit electrode of the unit mono cell.

11 . The electrode assembly manufacturing apparatus according to claim 10 , wherein a control variable of the second alignment unit is adjusted based on a result of inspection by the vision inspection unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2022
From: KIM, WOONG KI; LEE, SANG DON; CHOI, DONG SOON; HAN, DO SEONG; YEO, SANG UK
To: LG ENERGY SOLUTION, LTD.
Reel/Frame 061209/0809 →
Priority Claims (1)
KR 10-2020-0134691 · Oct 16, 2020 · national
Continuity (1)
Related Publication 20230125899A1 · Apr 27, 2023
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