Lithium Battery 3.7V Lithium Polymer Battery 3.2V LifePo4 Battery 1.2V Ni-MH Battery Button Coin Battery
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Sino Science&Technology Battery Co.,ltd is a high-tech production enterprise which specialize in the R&D and production of Lifepo4 batteries,energy storage battery,portable UPS power supply,personalized customization lithium battery pack etc .
Environmental cylindrical 18650 21700 32700 26650 14500 18500 lithium ion rechargeable battery, LifePO4 battery,3.7V lithium polymer battery, NiMH battery , NiCD battery ,Lead acid battery,dry cell battery ,alkaline battery ,heavy duty battery, button cell battery etc. we devote to R&D,innovation ,production & sales
Shenzhen Green Power Energy Battery Co.,ltd specializes in a wide range of digital battery such as environmental cylindrical 18650 21700 32700 26650 14500 18500 lithium ion rechargeable battery, LifePO4 battery, 3.7V lithium polymer battery, NiMH battery, NiCD battery, dry cell battery, alkaline battery, heavy duty battery, button cell battery etc. we devote to R&D, innovation, production & sales. With automatic production machines we have been exported goods to all over the world over 15years. We have complete exported certificate such as KC, CE, UL, BSCI, ROHS, BIS, SGS, PSE etc
Dongguan Datapower New Energy Co.,ltd is a high-tech production enterprise which specialize in the R&D and production&sale of lithium polymer batteries,drone battery,airplane batteries &battery pack etc.
Anhui Seong-hee New Energy Technology Co.,ltd is a high-tech production enterprise which specialize in the R&D and production of primary batteries. And mainly produces and sells alkaline batteries & carbon zinc batteries. there are size AA, AAA, C, D, 9V etc
Guizhou STD Battery Co.,ltd is a high-tech production enterprise which specialize in the R&D and production & sale of lithium polymer batteries, drone battery, airplane batteries & battery pack etc.
Product name: Lithium polymer battery
Product model: 501825
Nominal capacity: 180mAh
Nominal voltage: 3.7V
Dimension: 5*18*25mm
Scope of application:
Headphones, Laptops, Cell phones, tablets etc.
What should be paid attention to in the winding process of 18650 lithium battery
1. Humidity control ≤ 1%RH Purpose: To prevent water absorption during the winding process of the positive and negative electrodes, resulting in zero voltage, self-discharge, and poor cycle performance; method: calculate the dew point value and temperature value to obtain the temperature and humidity value; 2. Dust control ≤ 100,000pc/ft3 (detection particle size is 0.5um
1. Humidity control ≤1%RH Purpose: To prevent positive and negative electrodes from absorbing water during the winding process, resulting in zero voltage, self-discharge, and poor cycle performance;
Method: Calculate the dew point value and temperature value to obtain the temperature and humidity value;
2. Dust control ≤100,000pc/ft3 (detection particle size is 0.5um)
Purpose: To prevent dust from being involved in the electrode group during winding, causing short circuit, overheating, fire, self-discharge and other defects in the battery cell;
Low temperature lithium iron phosphate battery 3.2V 20A -20℃ charge, -40℃ 3C discharge capacity ≥70%
Charging temperature: -20~45℃ -Discharging temperature: -40~+55℃ -40℃ supports maximum discharge rate: 3C -40℃ 3C discharge capacity retention rate≥70%
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Method: use a dust tester;
3. Abnormal cutting burrs
Process requirements: pole piece ≤ 8um; pole ear burr ≤ 12um; detection method: randomly select 1PCS cell for the first inspection of each shift and each machine for dissection, and detect the front and rear ends of the positive and negative electrodes and the positive and negative electrodes according to the "burr detection operation guide" , Negative ear cutting burrs.
Adverse effects: The burrs on the pole pieces or tabs exceed the process requirements, which may cause the burrs to pierce the diaphragm, short-circuit the positive and negative electrodes, overheat the battery cells, and may explode in severe cases, posing serious safety hazards.
18650 lithium ion battery winding steps
Low temperature high energy density 18650 3350mAh-40℃ 0.5C discharge capacity ≥60%
Charging temperature: 0~45℃ Discharging temperature: -40~+55℃ Specific energy: 240Wh/kg -40℃ discharge capacity retention rate: 0.5C discharge capacity≥60%
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4. Poor coverage of positive and negative electrodes
Process requirements: the alignment of positive and negative plates is 0.75~.55mm
Negative plate and diaphragm alignment 1?.5mm
Detection method: continuous random inspection of 3PCS cells after reel change, detection of alignment according to the "X-RAY Operation Instructions" Adverse effects: 1) The alignment of positive and negative electrodes exceeds the process specification, which may cause the negative electrode to not cover the positive electrode During the charging process, the lithium ions released from the positive electrode cannot find the corresponding graphite to embed, resulting in free lithium ions in the battery cell accumulating on the negative electrode and forming dendrites. The dendrites penetrate the separator and cause an internal short circuit, which poses a safety hazard.
2) If the alignment between the negative electrode and the diaphragm exceeds the process standard, the negative electrode may be squeezed and deformed, and the negative material on the electrode may fall off. During the charging process, the battery cell expands, and the powder penetrates the diaphragm, causing the internal short circuit of the positive and negative electrodes to cause safety. Hidden danger;
5. Poor coverage of the pole piece in the winding direction (the length of the outer layer negative electrode exceeds the length of the positive electrode material, and the length of the inner layer negative electrode exceeds the length of the positive electrode material) detection method: every 2H each winding machine randomly checks the dissection of 3PCS batteries, and measures the two parts with eyepieces and rulers respectively. A coverage gap size.
Adverse effects: It may cause the negative electrode sheet not to enclose the positive electrode sheet. During the charging process of the battery, the lithium ions released from the positive electrode cannot find the corresponding graphite to embed, causing free lithium ions in the battery cell to accumulate on the negative electrode and appear dendrites. Dendrites puncture the separator and cause internal short circuit, which poses a safety hazard.