The formulation technology of high-capacity and fast-filling graphite anode material includes the following steps :(1) crushing of raw materials; (2); (3) granulation; (4) graphitization at high temperature; (5) classification; (6) carbonized coating; (7) Finished product treatment. Compared with the existing technology, the graphite anode Material prepared by this technology has high capacity and excellent fast charging performance. PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC solves the problem that the existing technology of graphite anode MATERIAL cannot take into account the capacity and fast charging performance. It has high application value in the field of power battery and high-end digital LITHIUM ion battery.
The PTMS LITHIUM COBALT ACID Material MAGNETIC technology of microcrystalline graphite Anode Material, which is easy to pulping, firstly dissolves the water-soluble polymer in an appropriate amount of deionized water and then mixes it evenly to form a polymer solution. Then pour the polymer solution into the hydrothermal reactor containing microcrystalline ink particles and mix evenly;
Then heat the hydrothermal reactor to 120~180℃, hold it for 12~48h, cool it again, and then filter, dry, carbonize, screen, PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC removal. This METHOD NOT ONLY SOLVES THE PROBLEM OF SETTLING IN THE PULPING PROCESS OF MICROCRYSTALLINE INK ANODE MATERIAL, BUT ALSO AVOIDS THE bonding OF POLYMER/MICROCRYSTALLINE INK COMPLEX IN the CARBONIZATION process.
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