160ah lithium iron phosphate square battery and its manufacturing process
A 160AH, 1.160AH technology, applied in electrolyte battery manufacturing, battery electrodes, sustainable manufacturing/processing, etc., can solve problems such as difficult processing, low bulk density and tap density, poor conductivity and ion diffusion performance of LiFePO4 , to achieve the effect of low cost, safe use, reducing interface impedance and battery internal resistance
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Embodiment 1
[0039] The manufacturing process of 160AH lithium iron phosphate square battery includes the following steps: (1) ingredients, (2) coating, (3) baking, (4) rolling, (5) battery pole piece production, (6) lamination Operation, (7) battery assembly, (8) heat sealing, (9) liquid injection, (10) formation, (11) volume separation;
[0040] (1) Ingredients:
[0041] Prepare the positive electrode slurry with water as the medium. The required materials are: 3% water-based glue, 92% lithium iron phosphate, 2% superconducting carbon black, 2% conductive graphite, and 1% lithium salt. Stir and dilute, add superconducting carbon black and conductive graphite and stir, and finally add lithium iron phosphate and lithium salt and stir to form a slurry.
[0042] Prepare the negative electrode slurry with water as the medium. The required materials are: 91% graphite, 3% sodium carboxymethyl cellulose, 2% superconducting carbon black, 4% styrene-butadiene rubber; add sodium carboxymethyl cell...
Embodiment 2
[0073] The manufacturing process of the 160AH lithium iron phosphate square battery includes the following steps that are different from those in Example 1:
[0074] (1) Ingredients:
[0075] Prepare the positive electrode slurry with water as the medium. The required materials are: 4% water-based glue, 92% lithium iron phosphate, 1.5% superconducting carbon black, 2% conductive graphite, and 0.5% lithium salt. Stir and dilute, add superconducting carbon black and conductive graphite and stir, and finally add lithium iron phosphate and lithium salt and stir to form a slurry.
[0076] Prepare the negative electrode slurry with water as the medium. The required materials are: 96% graphite, 1% sodium carboxymethyl cellulose, 1% superconducting carbon black, 2% styrene-butadiene rubber; add sodium carboxymethyl cellulose to water Stir, after standing for precipitation, add superconducting carbon black and graphite and stir, and finally add styrene-butadiene rubber and stir to for...
Embodiment 3
[0084] The manufacturing process of the 160AH lithium iron phosphate square battery includes the following steps that are different from those in Example 1 and Example 2:
[0085] (1) Ingredients:
[0086] Prepare the positive electrode slurry with water as the medium. The required materials are: 5.5% water-based glue, 90% lithium iron phosphate, 2.5% superconducting carbon black, 1.5% conductive graphite, and 0.5% lithium salt. Stir and dilute, add superconducting carbon black and conductive graphite and stir, and finally add lithium iron phosphate and lithium salt and stir to form a slurry.
[0087] Prepare the negative electrode slurry with water as the medium. The required materials are: 94% graphite, 2% sodium carboxymethyl cellulose, 1% superconducting carbon black, 3% styrene-butadiene rubber; add sodium carboxymethyl cellulose to water Stir, after standing for precipitation, add superconducting carbon black and graphite and stir, and finally add styrene-butadiene rubb...
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