-(5)Sulfurization and removal methods of lead-acid batteries

(5)Sulfurization and removal methods of lead-acid batteries
author:enerbyte source:本站 click327 Release date: 2023-06-12 10:50:41
abstract:
6. In the case of insufficient charging, the battery cannot provide the maximum starting current, which often leads to dead flames for frequently used vehicles. According to the bIC manual, "When a vehicle uses a battery that is not fully charged, it may cause the engine to slow down and...

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6. In the case of insufficient charging, the battery cannot provide the maximum starting current, which often leads to dead flames for frequently used vehicles. According to the bIC manual, "When a vehicle uses a battery that is not fully charged, it may cause the engine to slow down and idle, consuming electrical energy. Conversely, the battery may not be charged at the optimal rate by the generator. As a result, although the battery is charged 24/7, it cannot overflow. Moreover, it is often undercharged and the battery salinization worsens. This vicious cycle continues, ultimately leading to complete battery failure.

In summary, sulfate is an inevitable substance in the energy conversion process, but the crystallization of sulfate is indeed a serious problem, not the sulfate itself. This requires more people to understand the severity of this problem - sulfate crystallization causes battery failure. The phenomena of its failure include:

1. Plate bending: Sulfate crystals weaken the acceptance of electrical energy at a certain point on the plate, causing overcharging at a certain point on the battery plate. This overcharging increases the temperature at this point, causing the plate to bend.

2. Salinization causes the reactants of the grid mesh on the electrode plate to detach, leading to overcharging and bending of the electrode plate.

3. Short circuit: Due to salinization, the internal resistance increases, the electrode plate bends, and contacts the electrode plate of another polarity, resulting in a short circuit or damage to the frame supporting the electrode plate.

4. The shedding of active substances: Salinized crystals increase internal resistance, causing local overcharging, leading to the shedding of materials with cracks and cracks in the electrode plate.

Therefore, using pulse technology to protect the electrode plate is the most appropriate and helps to reduce damage to the battery electrode plate caused by mechanical vibration. In the past, batteries were considered useless and discarded after being salted, or were pulled away for repair. But today, pulse technology can handle this problem very well.

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