Lead-acid battery tube positive plate grouting method

A lead-acid battery, positive plate technology, applied in lead-acid battery electrodes, battery electrodes, circuits, etc., can solve the problems of harsh working environment, unfavorable battery life, weak bonding strength of active materials, etc. The effect of strong grain structure and simple equipment

Active Publication Date: 2018-11-23
ZIBO TORCH ENERGY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional grouting equipment is simple and open. During the grouting process, the grout splashes everywhere, the working environment is harsh, and the paste process is a suspension of lead powder, which is directly mixed with lead powder and water. The active material has a weak binding strength. Bad for battery life

Method used

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  • Lead-acid battery tube positive plate grouting method
  • Lead-acid battery tube positive plate grouting method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0042] Production of 2V500Ah flooded power lead-acid batteries.

[0043] (1) The shell is made of PP material;

[0044] (2) The partition adopts PE partition;

[0045](3) The positive grid 3 is produced by die-casting a low-antimony five-element alloy, and the mass percentages of the components of the alloy are: 2.8% Sb, 0.12% As, 0.15% Sn, 0.01% Cu, and the balance is Pb;

[0046] (4) The negative grid is produced by gravity casting of low-antimony six-element alloy. The mass percentage of each component of the alloy is: 1.8% Sb, 0.12% As, 0.03% Se, 0.09% Sn, 0.035% Cu, and the balance is Pb;

[0047] (5) Preparation of positive lead paste: Add 64kg of Barton lead powder, 36kg of red lead and 0.15kg of polypropylene staple fiber into the paste mixing machine 10, and dry mix for 5 minutes; add 6.9kg of pure water, finish adding within 5 minutes, and stir for 5 minutes; add density 1.400g / cm 3 6kg of sulfuric acid, add it within 15 minutes, stir for 10 minutes; measure the a...

Embodiment 2

[0056] Production of 2V500Ah flooded power lead-acid batteries.

[0057] (1) The shell is made of PP material;

[0058] (2) The partition adopts PE partition;

[0059] (3) The positive grid 3 is produced by die-casting a low-antimony five-element alloy, and the mass percentages of the components of the alloy are: 2.8% Sb, 0.12% As, 0.15% Sn, 0.01% Cu, and the balance is Pb;

[0060] (4) The negative grid is produced by gravity casting of low-antimony six-element alloy. The mass percentage of each component of the alloy is: 1.8% Sb, 0.12% As, 0.03% Se, 0.09% Sn, 0.035% Cu, and the balance is Pb;

[0061] (5) Preparation of positive electrode lead paste: add 70kg Barton lead powder, 30kg red lead, 0.20kg polypropylene staple fiber and 1kg 4BS seed crystal into the paste mixing machine 10, dry mix for 5min; add 7.2kg pure water, finish adding within 5min, Stir for 5min; add density to 1.400g / cm 3 Add 6.2kg of sulfuric acid within 15 minutes, stir for 10 minutes; measure the ap...

Embodiment 3

[0070] Production of 2V500Ah flooded power lead-acid batteries.

[0071] (1) The shell is made of PP material;

[0072] (2) The partition adopts PE partition;

[0073] (3) The positive grid 3 is produced by die-casting a low-antimony five-element alloy, and the mass percentages of the components of the alloy are: 2.8% Sb, 0.12% As, 0.15% Sn, 0.01% Cu, and the balance is Pb;

[0074] (4) The negative grid is produced by gravity casting of low-antimony six-element alloy. The mass percentage of each component of the alloy is: 1.8% Sb, 0.12% As, 0.03% Se, 0.09% Sn, 0.035% Cu, and the balance is Pb;

[0075] (5) Preparation of positive lead paste: Add 66kg of Barton lead powder, 50kg of red lead and 0.10kg of polypropylene staple fiber into the paste mixing machine 10, and dry mix for 5 minutes; add 6.5kg of pure water, finish adding within 5 minutes, and stir for 5 minutes; add density 1.400g / cm 3 Add 6.5kg of sulfuric acid within 15 minutes, stir for 10 minutes; measure the ap...

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Abstract

The invention relates to a lead-acid battery tube positive plate grouting method, belonging to the technical field of dynamic lead-acid battery. A grouting device is used to drive a grouting suspension into a grouting mold cavity with a pressure pump, and the grouting suspension is driven into the nonwoven drain pipe under high pressure through a second metal pipe. According to the invention, higher gravimetric specific energy and volumetric specific energy are provided, the method can meet the market demands of the tubular lead acid battery. The grouting active material is adopted in the invention, which is favorable for forming 3BS and 4BS, thereby facilitating recrystallization, oxidation and strengthening the bonding force in the curing process, increasing the initial capacity of the battery, and improving the performance and lifetime of the battery.

Description

technical field [0001] The invention relates to a grouting method for a tube-type positive plate of a lead-acid battery, belonging to the technical field of a power-type lead-acid battery. Background technique [0002] At present, there are roughly three filling methods for the positive electrode active material of tubular lead-acid batteries: powder filling, paste extrusion and grouting. Powder filling is to use the high-frequency vibration of the vibrating motor to fill the active material into the positive electrode tube. The consistency of the positive plate manufactured by this method is difficult to control, and due to the high-frequency vibration, the production noise is large and the environment is seriously polluted; The active material is mixed with the corresponding auxiliary materials and filled into the positive electrode tube with a certain pressure. This method has little environmental pollution, but it has high requirements for the formula and manufacturing p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01M4/16H01M4/56
CPCH01M4/16H01M4/56Y02E60/10
Inventor 李林萍吴涛战祥连杨会杰张扬于杰
Owner ZIBO TORCH ENERGY
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