US 12,224,401 B2
System and method of manufacturing lithium ion secondary battery
Sang Mok Park, Gwangju-si (KR); Jin Hee Lee, Changwon-si (KR); Se Young Lee, Seoul (KR); Dong Hui Kim, Suwon-si (KR); and Shin Kook Kong, Hwaseong-si (KR)
Assigned to HYUNDAI MOTOR COMPANY, Seoul (KR); and KIA MOTORS CORPORATION, Seoul (KR)
Filed by HYUNDAI MOTOR COMPANY, Seoul (KR); and KIA MOTORS CORPORATION, Seoul (KR)
Filed on Apr. 1, 2020, as Appl. No. 16/837,156.
Claims priority of application No. 10-2019-0154791 (KR), filed on Nov. 27, 2019.
Prior Publication US 2021/0159543 A1, May 27, 2021
Int. Cl. H01M 10/0585 (2010.01); H01M 4/04 (2006.01); H01M 10/0525 (2010.01)
CPC H01M 10/0585 (2013.01) [H01M 4/0404 (2013.01); H01M 10/0525 (2013.01); H01M 2220/20 (2013.01)] 2 Claims
OG exemplary drawing
 
1. A system for manufacturing a lithium ion secondary battery, the system comprising:
an unwinder supplying a current collector to be coated to a predetermined position;
a coating device coating a coating liquid on the current collector;
a drying device drying the coated current collector;
a rewinder winding the coated current collector passing through the drying device at a predetermined position;
a plurality of driving rolls supporting the coated current collector that move within the drying device, and move the current collector through a rotary motion;
a plurality of drying nozzles drying the coated current collector moving through the driving rolls with air of a predetermined temperature and a predetermined amount, wherein the plurality of drying nozzles include a first drying nozzle positioned on an upper portion of the current collector and a second drying nozzle positioned on a lower portion of the current collector to face each other;
a sensor sensing a degree of drying of a coating layer coated on the current collector; and
a controller controlling driving of the plurality of drying nozzles based on information sensed by the sensor;
wherein the first drying nozzle and the second drying nozzle are configured to spray air toward the current collector by each forming a gradient in wind speed in a width direction of the current collector moving through the plurality of driving rolls so that the gradient in wind speed output from the first drying nozzle differs from the gradient in wind speed output from the second drying nozzle.