Lead-carbon batteries are a highly advanced technology with numerous advantages and broad applications, making them an essential component of new energy storage solutions. Compared to traditional lead-acid batteries, lead-carbon batteries have faster charging, higher discharge power, longer cycle life, greater number of charge-discharge cycles, higher cost-effectiveness, and greater safety and stability. They are widely used in various new energy and energy-saving fields, as well as in energy storage.
Our company's lead-carbon battery AGM separator is produced via advanced pulping and forming processes, with high strength and excellent rebound properties, effectively protecting the active material of the battery negative plate from detaching. It has a strong ability to adsorb electrolyte under pressure and meets the battery capacity requirements. The separator also adopts composite fiber materials with good elongation and strong puncture resistance, ensuring the battery's service life. Additionally, the separator has excellent acid resistance, enabling the battery to operate normally in extreme environments.
Index | |||||
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Thickness tolerance(mm) | ±5% | Basic weight(g/㎡mm) | 165±5%(20Kpa) | Strength(KN/m) | ≥0.5d |
Max pore diameter(μm) | ≤18 | Acid wicking g/g | ≥5.8(50Kpa) | Resistance(Ωd㎡/mm) | ≤0.00055 |
Resilience(%) | ≥94 | Porosity(%) | ≥90 | Climb acid height | ≥90(mm/5min) |
Water content(%) | ≤0.5 | Acid loss weight(%) | ≤3.0 | Climb acid height | ≥720(mm/24h) |
Iron(%) | ≤0.003 | Chlorine(%) | ≤0.003 | Loss ignition(%) | ≤1.0 |