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Structural features of AGM separator maintenance-free battery
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Structural features of AGM separator maintenance-free battery

  • Categories:Industry news
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  • Time of issue:2021-03-05
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(Summary description)AGM separator maintenance-free battery structure features:

In order to improve the service life of lead-acid batteries, along with its performance, the positive grids of maintenance-free batteries are generally made of lead-calcium alloys or low-antimony alloys, while the negative grids are made of lead-calcium alloys.

Structural features of AGM separator maintenance-free battery

(Summary description)AGM separator maintenance-free battery structure features:

In order to improve the service life of lead-acid batteries, along with its performance, the positive grids of maintenance-free batteries are generally made of lead-calcium alloys or low-antimony alloys, while the negative grids are made of lead-calcium alloys.

  • Categories:Industry news
  • Author:
  • Origin:
  • Time of issue:2021-03-05
  • Views:0
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AGM separator maintenance-free battery structure features:
 
In order to improve the service life of lead-acid batteries, along with its performance, the positive grids of maintenance-free batteries are generally made of lead-calcium alloys or low-antimony alloys, while the negative grids are made of lead-calcium alloys.
 
In order to reduce the short circuit of the plates and the shedding of active materials, most of the separators are made of ultra-fine glass fiber cotton, or the positive plates are installed in bag separators.
 
In order to prevent the vertical overflow of oxygen and hydrogen, and reduce the loss of water and the shedding of active substances, the plate group adopts a compact structure.
 
In order to shorten the length of the connecting strip, reduce the internal resistance, and improve the starting performance of the battery, the internal connection method is adopted between each single-grid plate group, and only the positive and negative poles are exposed outside the sealed shell.
 
In order to avoid moisture loss more effectively, a gas collection chamber is set on the upper part of the shell to collect water vapor and sulfuric acid vapor. After cooling, it becomes liquid and flows back into the electrolyte.

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