A kind of manufacturing method of lead-carbon battery for pure electric vehicle

A pure electric vehicle and manufacturing method technology, which is applied in the construction of electric vehicles, lead-acid batteries, lead-acid batteries, etc., can solve the problems of high battery dead weight, low battery specific capacity, restricted application, etc., and achieves convenient solution maintenance and porosity. low, the effect of improving utilization and capacity

Inactive Publication Date: 2015-07-29
WUHAN INTEPOWER CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Its main disadvantage is that the specific capacity of the battery is low, and the weight of the battery is high, which restricts its application in the field of pure electric vehicles.

Method used

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  • A kind of manufacturing method of lead-carbon battery for pure electric vehicle
  • A kind of manufacturing method of lead-carbon battery for pure electric vehicle
  • A kind of manufacturing method of lead-carbon battery for pure electric vehicle

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] Example 1: The manufacturing steps of a lead-carbon battery for micro-hybrid vehicles are:

[0026] (1) Degreasing: Soak the polyurethane sponge of 200×200×2.5 mm and the polyurethane sponge of 200×200×4 mm in 3g / L sodium hydroxide, 10g / L sodium carbonate, and 5g / L trisodium phosphate. OP-10 emulsifier 0.5g / L, in a mixed solution, the temperature is room temperature, soaking time is 2 minutes;

[0027] (2) Coarse: soak the degreasing polyurethane sponge in a mixed solution of 100g / L sodium hydroxide and 10g / L potassium permanganate for 5 minutes;

[0028] (3) Neutralization: Soak the roughened polyurethane sponge in a solution containing 50g / L of oxalic acid and 100ml / L of hydrogen peroxide (30%) for 8 minutes;

[0029] (4) Presoaking: soak the neutralized polyurethane sponge in a prepreg solution for 30 minutes. The prepreg solution is 10g / L stannous chloride and 40ml / L hydrochloric acid;

[0030] (5) Activation: soak the pre-soaked polyurethane sponge in the activation solutio...

Embodiment 2

[0041] Example 2: The manufacturing steps of a lead-carbon battery for micro-hybrid vehicles are:

[0042] (1) Degreasing: immerse 200×200×2 mm polyurethane sponge and 200×200×3 mm polyurethane sponge together in 5g / L sodium hydroxide, 30g / L sodium carbonate, and 10g / L trisodium phosphate , OP-10 emulsifier 3g / L, in a mixed solution, the temperature is room temperature, soaking time is 10 minutes;

[0043] (2) Coarse: Soak the degreasing polyurethane sponge in a mixed solution of 200g / L sodium hydroxide and 5g / L potassium permanganate for 15 minutes;

[0044] (3) Neutralization: Soak the roughened polyurethane sponge in a solution containing 100g / L of oxalic acid and 60ml / L of hydrogen peroxide (30%) for 2 minutes;

[0045] (4) Presoaking: soak the neutralized polyurethane sponge in a prepreg solution for 15 minutes. The prepreg solution is 10g / L stannous chloride and 40ml / L hydrochloric acid;

[0046] (5) Activation: soak the pre-soaked polyurethane sponge in the activation solution f...

Embodiment 3

[0055] Example 3: The manufacturing steps of a lead-carbon battery for micro-hybrid vehicles are:

[0056] (1) Degreasing: soak the polyurethane sponge of 200×200×2 mm and the polyurethane sponge of 200×200×3 mm in 4g / L sodium hydroxide, 20g / L sodium carbonate, and 7.5g / L trisodium phosphate. , OP-10 emulsifier 2.5g / L, in a mixed solution, the temperature is room temperature, soaking time is 5 minutes;

[0057] (2) Coarse: soak the degreasing polyurethane sponge in a mixed solution of 150g / L sodium hydroxide and 7.5g / L potassium permanganate for 10 minutes;

[0058] (3) Neutralization: Soak the roughened polyurethane sponge in a solution containing 75g / L of oxalic acid and 75ml / L of hydrogen peroxide (30%) for 5 minutes;

[0059] (4) Pre-soaking: soak the neutralized polyurethane sponge in a prepreg solution for 25 minutes. The prepreg solution is 50g / L stannous chloride and 100ml / L hydrochloric acid;

[0060] (5) Activation: soak the pre-soaked polyurethane sponge in the activation so...

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PUM

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Abstract

The invention relates to a manufacturing method of a lead-carbon battery used for a pure electric vehicle. The manufacturing method of the lead-carbon battery is characterized in that the manufacturing method comprises the following steps: step 1) orderly removing oil of polyurethane sponge, coarsening, neutralizing, presoaking, activating, and chemically silvering the polyurethane sponge, and finally carrying out electrification and lead plating on the polyurethane sponge to obtain foamed lead material; step 2) cutting and shaping the foamed lead material, respectively coating positive and negative active materials, and adding carbon black into the negative active material to be used as an additive; and step 3), solidifying and drying positive and negative electrode plates, and then assembling the positive and negative electrode plates into a finished battery. The manufacturing method can obviously enhance the performance of the battery.

Description

technical field [0001] The invention relates to a method for manufacturing a lead-carbon battery for pure electric vehicles. technical background [0002] The development of pure electric vehicles has a long history, and it has been more than 100 years. A pure electric vehicle is a vehicle that uses a single battery as an energy storage power source. It uses the battery as a power source for energy storage, and provides electric energy to the motor through the battery to drive the motor to run, thereby propelling the car forward. However, this energy-saving and environment-friendly automobile product can only be used in certain specific ranges and occasions at present, mainly because the defects of the power supply system restrict the development of pure electric vehicles. The power sources used in pure electric vehicles, such as lead-acid batteries, lithium-ion batteries, nickel-cadmium batteries, and nickel-metal hydride batteries, are generally expensive, short in servi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M10/12H01M4/62H01M4/68
CPCY02T10/7016Y02E60/126Y02E60/10Y02P70/50
Inventor 陈松杨军
Owner WUHAN INTEPOWER CO LTD
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