
Our previous work has been obtained. If the lead storage battery adopts the copper pull net negative grid, it will significantly reduce the resistance of the board; this will not only improve the utilization rate of the active material and the specific power of the battery, but also improve the fast charging performance of the battery. It seems that the lead storage battery with the copper grid negative grid will bring great benefits to the electric vehicle.
2. Increasing the diffusion rate of reactive ions This is to increase the diffusion current density of the lead storage battery, that is, to delay the time when the battery reaches the limit diffusion current during the charging process, that is, delay the time when the battery voltage reaches the gassing voltage, thereby allowing the charging current to be increased. ,fast charging.
Thinning the thickness of the plate, increasing the porosity of the active material, and increasing the contact area between the grid and the active material, these measures are beneficial to the diffusion process of the reactants and products, reduce the concentration polarization, and increase the allowable charging current value. For fast charging. But from the perspective of battery life, the plates can't be made too thin.
3. The pulse charging method reform battery rapid charging is the theoretical basis of a certain frequency by superimposing the charging current, width, height or negative pulse charging stop short of the ions participating in reaction time to generate and increase the concentration thereof, In addition, the generated ions are removed from the vicinity of the electrode surface, and the combined effect is to reduce the concentration polarization, allowing the charging current to be shortened and shortening the charging time.
It should be pointed out that the voltage of the lead battery is increasing during the charging process, that is to say, the polarization distribution of the battery is different in different charging phases, so when designing the pulse charging device, it should be allowed according to the battery charging. The voltage value is used to automatically adjust the charging current and time; at the same time, the width and height of the negative pulse must be automatically adjusted according to the battery voltage drop value during the negative pulse discharge. In this way, although the charging current is large, since the measures for reducing the concentration polarization are effectively taken in time, the battery voltage rises slowly, and the battery is charged with more power. The intelligent charging device currently developed is designed after considering these conditions.
4. The impact of fast charging on battery life The impact of high current fast charging on battery life is good or bad. It is not surprising that this difference is different. This is firstly due to the fact that the battery life is not consistent. It has been observed in our experiments that even a batch of batteries prepared simultaneously from the production line can even have a cycle life of one time; in addition, during the long-term life test. It is difficult to ensure that the test conditions of each batch of batteries are exactly the same. Although it is generally believed that high current charging will shorten battery life, it has been reported in the literature that the cycle life of valve-regulated sealed lead batteries is improved by high current charging with proper cooling.
Our tests have shown that fast charging at high currents does not adversely affect battery life while keeping the battery charging voltage below the gassing voltage. During the use of the electric vehicle battery, it is not necessary to charge 100% of the rated capacity per charge, but the battery should be fully charged every other week (** no more than half a month). Especially when not using an electric car, the battery should be fully charged and stored. This will help extend the life of the battery.
in conclusion
- Lead batteries are cheap and long-lived, and the battery itself is constantly being updated and developed, so it is still a viable power source for electric vehicles in the near future.
- The ohmic internal resistance of the battery is the main factor causing the battery voltage to rise when charging at a high current; the battery structure must be improved to reduce the internal resistance to meet the requirements of the electric vehicle for fast charging of the battery.
- The use of pulse charging and intelligent charging device is beneficial to reduce concentration polarization and improve charging efficiency.
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