A method for drying large-capacity lithium-ion power battery cells
A technology of power battery and drying method, applied in drying solid materials, electrolyte battery manufacturing, non-aqueous electrolyte battery, etc., can solve the problems of increasing the load of dehumidifier and vacuum pump, consuming large circulating gas and heat, and emulsification of vacuum pump oil, etc. The effect of reducing the amount of circulating gas, improving the drying rate and efficiency, and increasing the heating rate
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Embodiment 1
[0027] The drying method of the high-capacity lithium-ion power battery cell in this implementation, the specific steps are as follows:
[0028] (1) Put the battery cells to be dried (prepared by stacking the positive electrode, negative electrode, and diaphragm, with a monomer capacity of 40AH) in a vacuum drying furnace (the relative vacuum degree can be adjusted from 0 to -100), Set the temperature of the drying furnace to 30°C, start to heat up, and evacuate to a relative vacuum degree ≤ -99.0, which takes 5 minutes;
[0029] (2) Immediately evacuate with dry gas to a relative vacuum of -10.0, which takes 5 minutes;
[0030] (3) Immediately run the fan in the drying furnace to blow air. The temperature in the furnace gradually increases slowly with the blast. When the temperature rises to 30°C, the drying furnace reduces the heating power and is in a heat preservation state. The heat preservation time is 180 minutes ;
[0031] (4) Immediately evacuate to a relative vacuu...
Embodiment 2
[0035] The drying method of the high-capacity lithium-ion power battery cell in this implementation, the specific steps are as follows:
[0036] (1) Put the battery cells to be dried (prepared by stacking positive electrode sheets, negative electrode sheets, and separators, with a monomer capacity of 100AH) in a vacuum drying furnace (the relative vacuum degree can be adjusted from 0 to -100), Set the temperature of the drying furnace to 50°C, start to heat up, and evacuate to a relative vacuum degree ≤ -99.0;
[0037] (2) Immediately evacuate with dry gas to a relative vacuum of -30.0;
[0038] (3) Immediately run the fan in the drying furnace to blow air. The temperature in the furnace gradually increases slowly with the blast. When the temperature rises to the set temperature of 50°C, the drying furnace reduces the heating power and is in a heat preservation state. The heat preservation time is 160 minutes ;
[0039] (4) Immediately evacuate to a relative vacuum degree ≤ ...
Embodiment 3
[0043] The drying method of the high-capacity lithium-ion power battery cell in this implementation, the specific steps are as follows:
[0044] (1) Put the battery cells to be dried (prepared by stacking the positive electrode, negative electrode, and diaphragm, with a monomer capacity of 200AH) in a vacuum drying furnace (the relative vacuum degree can be adjusted from 0 to -100), Set the temperature of the drying furnace to 70°C, start to heat up, and evacuate to a relative vacuum degree ≤ -99.0;
[0045] (2) Immediately evacuate with dry gas to a relative vacuum of -50.0;
[0046] (3) Immediately run the fan in the drying furnace to blow air. The temperature in the furnace gradually increases slowly with the blast. When the temperature rises to 70°C, the drying furnace reduces the heating power and is in a heat preservation state. The heat preservation time is 140 minutes ;
[0047] (4) Immediately evacuate to a relative vacuum degree ≤ -99.0, and continuously evacuate f...
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