There is a very important process step in the manufacturing of lithium -ion battery -positive and negative pole. During the coating process, the thin area is a marginal area, which can increase the active substance ratio of the electrode sheet to the surface area and increase the energy density and circulation life of the battery. In order to solve the problem of lithium battery edge effects, the formation of a thin area is the key. By optimizing the coating process, coating tools, substrate characteristics, and active material properties, it can effectively control the formation of thin zones. In the formation mechanism of the thin zone, there are many factors that affect the thin zone, such as coating speed, coating thickness, solvent volatilization, etc., and in -depth research and analysis are needed. Therefore, the research and optimization of the thin zone is an important issue in the manufacturing of lithium -ion batteries. By compliance with the precautions such as experimental design, data analysis, material selection, safety issues, environmental protection and exchange and cooperation, it can ensure the smooth progress of the research and optimization of thin zones. The research and optimization of lithium -ion battery thinning areas are of great significance for the development of electric vehicles and energy storage equipment.<\/p>\n\n\n\n
In the manufacturing of lithium ion batteries, positive and negative pole coating is a very important process step. In the positive and negative pole coating, a thin area refers to the edge area of the active substance coated on the electrode. Its role is to increase the ratio of the active substance of the electrode sheet, improve the electrochemical performance of the electrode sheet, improve the energy density of the battery, the energy density of the battery The cycle life is also to solve the problem of the edge effect of the lithium battery. During the circular charging and discharge of lithium batteries, the active materials on the edge of the battery are often suffered from greater stress, resulting in the battery capacity attenuation and shortened life. Therefore, by thinning the edge of the battery, the impact of the edge effect on the battery performance can be reduced, and the cycle life and energy density of the battery can be improved. The formation of a thin zone has an important impact on the performance of the battery. The research and optimization of the thin zone is an important issue in the manufacturing of lithium -ion batteries.<\/p>\n\n\n\n
Considering these factors comprehensively, the formation of a thin area is a complex process, which needs to be studied and analyzed in depth.<\/p>\n\n\n\n
In order to optimize the formation of the thin zone and improve the performance of the electrode chip, it is necessary to optimize from the aspects of coating process, coating tools, substrate characteristics, and active material properties.<\/p>\n\n\n\n
The thin zone plays a very important role in the manufacturing of lithium -ion batteries. Its formation mechanism is very complicated and requires in -depth research and analysis. By optimizing the coating process, coating tools, substrate characteristics, and active material properties, it can effectively control the formation of the thin zone, improve the performance of the electrode chips, and improve the energy density and cycle life of the battery. It is hoped that through the research and optimization of the thin zone, the advancement of lithium -ion battery manufacturing technology will be promoted to provide a more stable and reliable source of motivation for the development of electric vehicles and energy storage equipment.<\/p>\n","protected":false},"excerpt":{"rendered":"
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