18650 battery 3.7V 10Ah lithium ion battery pack for solar light
18650 lithium ion battery pack with 3.7V 10Ah is widely used for solar light, LED, Flash light, power bank etc
Read More18650 lithium ion battery pack with 3.7V 10Ah is widely used for solar light, LED, Flash light, power bank etc
Read MoreFT555255P 3.7V 1500mAh used lipo battery built with PCM and it has high cycle lfe and super quality.
Read More14.8V 3500mAh Li-ion Battery Pack used 4pcs INR18650GA in serials built with PCM to prevent over charge, over discharge, short circuit. The cycles life is more than 500 cycles. Original Sanyo cells
Read MoreOEM ODM 18650 14.8 v Li-ion 4S1P 2000mAh 2200mAh 2400mAh 2600mAh 14.8v vacuum cleaner lithium battery
Read MoreICR18650 4S1P 14.8V 2200mAh battery pack for detector S/N Details Parameters Remarks 1 Rated voltage 14.8V 2 Rated capacity 2200mAh discharge with 0.2C to 5.5V after fully charge within 1h, measuring the discharge time 3 Limited charge voltage 16.8V 4 Internal resistance ≤ mΩ 5 charge mode C.C/C.V. 6 Standard charge current 440mA 0.2C 7 Max Charge Current 2200mA 1C 8 Standard discharge current 440mA 0.2C 9 Max Discharge current Continuous: 2200mA 1C 10 Working temperature charging 0~45℃ discharging -10~60℃ 11 Storage temperature 1 Month -10~45℃ Charge to 40%~50% of capacity when storage 6 months -10~30℃ 12 Storage humidity 45%~75% relative humidity 13 Weight Approx 200g 14 Cycle life 300 times capacity≥80%
Read MoreHow to Prevent Lithium Polymer Battery Swell
Introduction
We know that lithium polymer batteries are widely used in smartphones, laptops, electric vehicles, and other portable electronics due to their high energy density and long lifespan. However, one common issue users face is battery swelled, which not only reduces performance but can also pose safety risks such as leaks, fires, or even explosions.
Understanding the causes of lithium Polymer battery swelling and implementing preventive measures can help extend battery life and ensure safe operation. This article explores the reasons behind battery swelling and provides practical solutions to prevent it.
Causes of Lithium Polymer Battery Swelling
Battery swelling occurs due to gas buildup inside the battery, often caused by chemical reactions or physical damage. The primary reasons include:
1. Overcharging
When a lithium Polymer battery is charged beyond its voltage limit, excessive lithium ions accumulate on the anode, leading to the formation of metallic lithium and gas (such as CO₂ and O₂). This gas buildup increases internal pressure, causing the battery to expand.
2. Deep Discharging
Allowing a battery to discharge completely (below 2.5V per cell) can damage the internal structure. The copper anode may dissolve, leading to short circuits and gas generation.
3. High Temperatures**
Heat accelerates chemical reactions inside the battery, increasing the rate of electrolyte decomposition and gas production. Prolonged exposure to high temperatures (above 45°C) significantly raises swelling risks.
4. Physical Damage
Punctures, drops, or compression can deform the battery casing, leading to internal short circuits and gas formation.
5. Poor Manufacturing Quality
Low-quality batteries may have impurities, defective separators, or improper sealing, increasing the likelihood of swelling.
6. Aging and Natural Degradation
Over time, the electrolyte breaks down, and electrode materials degrade, reducing efficiency and increasing internal resistance. This process generates gas, leading to swelling.
How to Prevent Lithium Polymer Battery Swelling
1. Avoid Overcharging
- Use chargers with overcharge protection that stop supplying power once the battery reaches 100%.
- Avoid leaving devices plugged in overnight.
- Consider smart chargers that optimize charging cycles.
2. Prevent Deep Discharge
- Recharge batteries before they drop below 20%.
- For long-term storage, maintain a charge level between 40-60%.
3. Control Temperature Exposure
- Store and use batteries in a cool, dry environment (ideally between 15-25°C).
- Avoid leaving devices in hot cars or direct sunlight.
- Use thermal management systems (common in EVs and high-performance electronics).
4. Handle Batteries Carefully
- Avoid dropping, puncturing, or bending batteries.
- Use protective cases for devices prone to impacts.
5. Use High-Quality Batteries and Chargers
- Purchase batteries from reputable manufacturers ( such as Fello Tech, Sumsung etc).
- Avoid cheap, uncertified chargers that may deliver unstable voltage.
6. Monitor Battery Health
- Regularly check for signs of swelling, overheating, or reduced performance.
- Use battery health monitoring apps (for smartphones/laptops).
- Replace batteries that show significant capacity loss or physical deformation.
7. Proper Storage Practices
- If storing batteries for extended periods, keep them at 40-60% charge.
- Store in a emperature-controlled environment.
- Check stored batteries every few months.
8. Dispose of Swollen Batteries Safely
- Do not puncture or attempt to repair a swollen battery.
- Place it in a fireproof container and take it to a certified e-waste recycling center.
Conclusion
Lithium Polymer battery swelling is a preventable issue with proper care and handling. By avoiding overcharging, deep discharges, extreme temperatures, and physical damage, users can significantly extend battery life and reduce safety risks. Investing in high-quality batteries, using smart charging practices, and monitoring battery health are key steps in preventing swelling.
As battery technology evolves, lithium polymer battery manufacturers continue to improve safety features, but user need to have the crucial awareness about the problem. Following these guidelines will help ensure optimal performance and longevity for lithium polymer batteries in all applications.
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