Lead storage battery production method and lead storage battery

A lead-acid battery, production method technology, applied in lead-acid battery electrodes, lead-acid battery, lead-acid battery construction and other directions, can solve problems such as trade blockade

Active Publication Date: 2020-05-19
TIANNENG BATTERY GROUP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This type of battery is defined as the eighth category of dangerous goods, and has encountered a lot of troubles in transportation and declaration, and the related trade situation has been blocked by difficult breakthroughs

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040] For a lead-acid battery of model 6-QW-100, the relevant parameters are 6 cells in total for a single battery, 8 positive plates and 9 negative plates in each cell, and the amount of dry paste (lead paste) per piece of raw plate for the positive electrode The plate is 102g, the negative plate is 85g, the net electrolyte volume of a single cell of conventional ex-factory battery is 1616g (1262.5ml), and the mass percentage of sulfuric acid in the electrolyte is 36.8%.

[0041] During manufacture, the amount of sulfuric acid and the mass percentage of lead powder added to the positive and negative electrode pastes are 6.5% and 5.5% respectively, and the required large green plates are made by completing coating, acid leaching, surface drying, curing and drying.

[0042] Determine the assembly of 15 batteries, and calculate the amount of sulfuric acid (sulfuric acid as solute) added in the sulfuric acid solution. The negative pole is 14.65Kg, and the positive pole is 30.86Kg...

Embodiment 2

[0047] For a lead-acid battery of model TG7B-4B, the relevant parameters are 6 cells in total for a single battery, and each cell is equipped with 4 positive plates and 5 negative plates. , The net electrolyte volume of a single cell of conventional ex-factory batteries is 110g (85.9ml), and the mass percentage of sulfuric acid in the electrolyte is 36.8%.

[0048] During manufacturing, the amount of sulfuric acid and the mass percentage of lead powder added to the positive and negative electrode pastes are 5.0% and 4.3% respectively, and the required large green plates are made by completing coating, acid leaching, surface drying, curing and drying.

[0049] It is determined to assemble 80 batteries, and the amount of sulfuric acid added in the sulfuric acid solution is calculated to be 8.06Kg for the negative pole and 8.33Kg for the positive pole. Negative and positive sulfuric acid were mixed with 32.24Kg and 33.32Kg water respectively, and then the negative and positive pl...

Embodiment 3

[0054] For a lead-acid battery of model TS18-4, the relevant parameters are 6 cells for a single battery, 3 positive plates and 4 negative plates for each cell, and the amount of dry paste for each raw plate is 79g for the positive plate and 51g for the negative plate. The net electrolyte volume of a single cell of conventional ex-factory batteries is 330g (257.8ml), and the mass percentage of sulfuric acid in the electrolyte is 36.8%.

[0055] During manufacturing, the amount of sulfuric acid and the mass percentage of lead powder added to the positive and negative electrode pastes are 5.0% and 4.3% respectively, and the required large green plates are made by completing coating, acid leaching, surface drying, curing and drying.

[0056] It is determined to assemble 50 batteries, and the amount of sulfuric acid added in the sulfuric acid solution is calculated to be 13.7Kg for the negative pole and 16.9Kg for the positive pole. Negative and positive sulfuric acid were mixed w...

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PUM

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Abstract

The invention discloses a lead storage battery production method. The production method comprises the following steps: (1) preparing a positive plate and a negative plate; (2) respectively soaking thepositive plate and the negative plate in a sulfuric acid solution for reaction; (3) drying the positive and negative plates after soaking to obtain a positive plate and a negative plate after pickling; and (4) assembling the positive plate and the negative plate which are pickled into a battery without additionally adding electrolyte. Required sulfate ions are obtained by pickling the manufactured green polar plates in the sulfuric acid solution, and battery assembly is completed by adopting the polar plates subjected to pickling treatment. The battery can avoid the special regulations of International Marine Transport (Air Transport, Railway Transport and Highway Transport) dangerous goods rules, and can be delivered according to non-dangerous goods. When the battery is used, the batterycan be used only by adding pure water to be fully charged, and the capacity and other related properties of the battery are not greatly influenced.

Description

technical field [0001] The invention relates to the technical field of lead storage battery production, in particular to a production method of lead storage battery and the storage battery. Background technique [0002] G.Plante invented the lead-acid battery in 1859, and has experienced nearly 160 years of development. Lead-acid batteries have made great progress in terms of theoretical research, product types and varieties, and product electrical properties. , whether in transportation, communications, electric power, military or in various economic fields of navigation and aviation, lead-acid batteries have played an indispensable and important role. [0003] In the prior art, a lead-acid battery includes a battery tank, an electrode group and an electrolyte disposed in the battery tank. The electrode group includes a positive plate, a negative plate and a separator. Inside, then add the electrolyte, and then internalize the battery to activate the battery. [0004] For...

Claims

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Application Information

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IPC IPC(8): H01M4/16H01M10/12
CPCH01M4/16H01M10/12Y02E60/10Y02P70/50
Inventor 庄建宋文龙房兆锟周文渭李越南刘海凤刘克宇方明学陈群曲经滨
Owner TIANNENG BATTERY GROUP
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