IP Library Granted Patent US 12704324
Granted Patent B2
US 12704324 · App. 18/033,602 · Granted Aug 11, 2026

Electrode drying system

Inventors: Young-Kuk Ko (Daejeon, KR); Young-Gyu Moon (Daejeon, KR); Shin-Wook Jeon (Daejeon, KR); Sang-Hoon Choy (Daejeon, KR); Soon-Sik Choi (Daejeon, KR)
Assignee: LG Energy Solution, Ltd.
F26B21/37F26B13/004F26B21/20F26B21/33F26B21/35
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Quick Facts
Patent No.
US 12704324
App. No.
18/033,602
Granted
Aug 11, 2026
Kind
B2
Abstract

An electrode drying system includes a drying oven configured to dry a solvent in an electrode active material slurry on an electrode sheet in which the electrode active material slurry is applied to a current collector, an air supply member configured to supply air to the drying oven, and a ventilation member configured to discharge air from the drying oven. At least part of the air discharged from the ventilation member is introduced into the air supply member again.

Claims (28)

1 . An electrode drying system comprising:

a drying oven configured to dry a solvent in an electrode active material slurry disposed on a current collector;

an air supply member configured to supply air to the drying oven; and

a ventilation member configured to discharge the air from the drying oven,

wherein the air supply member is in communication with the ventilation member such that at least a portion of the air discharged from the ventilation member is configured to be introduced into the air supply member again.

2 . The electrode drying system according to claim 1 , further comprising a vent member located between the ventilation member and the air supply member, wherein the vent member is configured to discharge a part of the air discharged from the ventilation member to an exterior of the electrode drying system.

3 . The electrode drying system according to claim 2 , further comprising:

a humidity sensor located between the air supply member and the drying oven;

a humidifying member configured to humidify the air; and

a control member configured to control the humidifying member according to a humidity detected by the humidity sensor.

4 . The electrode drying system according to claim 2 , further comprising:

a temperature sensor located between the air supply member and the drying oven;

a heater configured to heat the air to a set temperature; and

a control member configured to control the heater according to a temperature detected by the temperature sensor.

5 . The electrode drying system according to claim 1 , further comprising a flow rate control valve positioned between the ventilation member and the air supply member, wherein the flow rate control valve is configured to control a flow rate of the air discharged from the ventilation member.

6 . The electrode drying system according to claim 5 , wherein the flow rate control valve comprises at least one of an automatic control valve and a manual control valve, wherein an opening rate of the automatic control valve is configured to be automatically controlled by a control member; and wherein an opening rate of the manual control valve is configured to be manually controlled by an operator.

7 . The electrode drying system according to claim 6 , wherein a vent member comprises a first vent member in communication with the automatic control valve,

wherein the automatic control valve comprises:

a first automatic control valve provided between the ventilation member and the air supply member; and

a second automatic control valve provided between the ventilation member and the first vent member,

wherein the first automatic control valve and the second automatic control valve are disposed orthogonally to each other.

8 . The electrode drying system according to claim 6 , wherein a vent member comprises a second vent member in communication with the manual control valve,

wherein the manual control valve comprises:

a first manual control valve provided between the ventilation member and the air supply member; and

a second manual control valve provided between the ventilation member and the second vent member,

wherein the first manual control valve and the second manual control valve are disposed orthogonally to each other.

9 . The electrode drying system according to claim 1 , further comprising a drain member provided between the ventilation member and the air supply member.

10 . The electrode drying system according to claim 9 , wherein the drain member is provided in a drain duct, wherein the drain duct is inclined downward from the ventilation member and inclined downward from the air supply member.