Dry preparation process of pole piece and continuous production device of pole piece
A technology of preparation process and production equipment, applied in the field of lithium battery material production, can solve the problems of aggravating the powder sticking to the roller, the high probability of powder sticking to the roller, and the easy occurrence of powder falling, and achieves the dry powder distribution speed. Small footprint effect
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Embodiment 1
[0064] Such as figure 1 As shown, the continuous production equipment for pole pieces in Embodiment 1 includes a current collector unwinding assembly 1 and a pole piece winding assembly 7, and also includes a first set between the current collector unwinding assembly 1 and the pole piece winding assembly 7 The powder distribution unit 2 , the first heating assembly 3 and the hot roller pressing assembly 6 , the first powder distribution unit 2 includes a first screen assembly 21 and a first slit scraping assembly 22 arranged above the feed path of the current collector.
[0065] The first heating assembly 3 is a non-contact heating assembly, and the discharge side of the first heating assembly 3 is provided with a powder suction assembly 8 for sucking dry powder outside the heating area.
[0066] The feed path of the current collector is U-shaped, and the feed path of the current collector includes two parallel and horizontal path sections. A conveying roller for guiding the c...
Embodiment 2
[0082] The dry method preparation process of embodiment 2 pole piece is as follows:
[0083] S1: Take 2400g lithium manganese oxide (80%wt) and 300gVGCF (10%wt) as the main materials, put them into a 10L beaker first, and slowly add polybutadiene toluene with a content of 40%wt dropwise while stirring the powder The solution is 750g, drop it in about 10 minutes, and heat the mixed material to 80 degrees under ventilated conditions to make the toluene volatilize naturally;
[0084] S2: Aluminum foil with a thickness of 20 μm and a width of 400 mm is used as a current collector, and the walking speed is 1 m / s. Add the dry powder obtained in step 1 to the first screen assembly 21 by manual feeding. The mesh number of the screen is 100 mesh, and the vibration frequency of the screen is 800 Hz. The slit scraping assembly 22 scrapes the dry powder layer to obtain an aluminum foil with a coating thickness of 70 μm;
[0085] S3: Heat the aluminum foil passing directly above it throu...
Embodiment 3
[0096] The dry method preparation process of embodiment 3 pole piece is as follows:
[0097] S1: With 4500g lithium iron phosphate (90%wt), 150g acetylene black (3%wt) and 100gVGCF (2%wt) as the main materials, first put them into a 15L high-speed mixer, and slowly add them dropwise under slow stirring. 833g of n-hexane solution of 30%wt ethylene propylene copolymer is dripped within about 5 minutes, and the high-speed mixer is sealed, and the high-speed mixing is about 10 minutes, and the mixed material is heated to 80 degrees under the condition of ventilation and slow stirring. Let n-hexane volatilize naturally.
[0098] S2: Aluminum foil with a thickness of 20 μm and a width of 400 mm is used as a current collector, and the walking speed is 2 m / s. Add the dry powder obtained in step 1 to the first screen assembly 21 by means of automatic screw feeding. The mesh number of the screen is 150 mesh, and the vibration frequency of the screen is 1500 Hz. A slit scraping assembl...
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