Carbon fiber making technology

A production process, carbon fiber technology, applied in the chemical characteristics of fibers, textiles and papermaking, etc., can solve problems such as increasing production costs, unreasonable selection of process parameters, and high requirements for operator experience, and achieves low experience requirements, low production costs, and low production costs. The effect of easy training

Inactive Publication Date: 2016-07-20
蒋曼丽
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, there are more and more carbon fiber technologies, but each has its own shortcomings. For example, the existing carbon fiber manufacturing processes have unreasonable process arrangements, unreasonable selection of process parameters, and unreasonable collocation of process parameters. Higher requirements, thereby increasing production costs

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0017] The carbon fiber manufacturing process includes the following steps:

[0018] Stock solutionspinning→collecting→rewinding→collecting→drying furnace→pre-oxidation furnace 1→pre-oxidation furnace 2→pre-oxidation furnace 3→low temperature carbonization furnace→high temperature carbonization furnace→surface treatment 1→surface treatment 2→surface treatment 3→Washing→Drying furnace→SizingDrying furnace→Reeling;

[0019] 1), pre-oxidation process

[0020] During the pre-oxidation process, the temperature is between 220°C. When the temperature is about 238°C, the oxygen content in the silk rises rapidly, and a chemical reaction can occur; the temperature remains uniform and stable, and the small molecules and other impurities produced in the reaction are taken away by circulating air And the heat of reaction to ensure continuous pre-oxidation; the reaction time of pre-oxidation process takes 80 minutes; among them, the temperature change in pre-oxidation furnace 1→pre-oxidation fu...

Embodiment 2

[0026] The carbon fiber manufacturing process includes the following steps:

[0027] Stock solutionspinning→collecting→rewinding→collecting→drying furnace→pre-oxidation furnace 1→pre-oxidation furnace 2→pre-oxidation furnace 3→low temperature carbonization furnace→high temperature carbonization furnace→surface treatment 1→surface treatment 2→surface treatment 3→Washing→Drying furnace→Sizing→Drying furnace→Reeling;

[0028] 1), pre-oxidation process

[0029] During the pre-oxidation process, the temperature is between 280℃. When it is about 238℃, the oxygen content in the silk rises rapidly, and chemical reaction can occur; the temperature remains uniform and stable, and the small molecules and other impurities produced in the reaction are taken away by circulating air And the heat of reaction to ensure continuous pre-oxidation; the pre-oxidation process takes 100 minutes; the temperature change in the pre-oxidation furnace 1→pre-oxidation furnace 2→pre-oxidation furnace 3 is contro...

Embodiment 3

[0035] The carbon fiber manufacturing process includes the following steps:

[0036] Stock solution→spinning→collecting→rewinding→collecting→drying furnace→pre-oxidation furnace 1→pre-oxidation furnace 2→pre-oxidation furnace 3→low temperature carbonization furnace→high temperature carbonization furnace→surface treatment 1→surface treatment 2→surface treatment 3→Washing→Drying furnace→Sizing→Drying furnace→Reeling;

[0037] 1), pre-oxidation process

[0038] During the pre-oxidation process, the temperature is between 260°C. When the temperature is about 238°C, the oxygen content in the silk rises rapidly, and a chemical reaction can occur; the temperature remains uniform and stable, and the small molecules and other impurities generated in the reaction are taken away by circulating air And reaction heat to ensure continuous pre-oxidation; the pre-oxidation process takes 90 minutes; the temperature change in the pre-oxidation furnace 1→pre-oxidation furnace 2→pre-oxidation furnace 3...

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PUM

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Abstract

The invention discloses a carbon fiber making technology, and belongs to the technical field of carbon fibers. The technology comprises the following steps: spinning a stock solution, collecting the filaments, withdrawing the filaments, adding the obtained material to a drying furnace, adding the dried material to a pre-oxidation furnace 1, adding pre-oxidized material to a pre-oxidation furnace 2, adding the obtained material to a low temperature carbonization furnace, adding the low temperature carbonized material to a high temperature carbonization furnace, carrying out primary surface treatment, carrying out secondary surface treatment, carrying out tertiary surface treatment, washing the obtained material with water, adding the washed material to the drying furnace, pasting the material, adding the pasted material to a drying furnace, and collecting obtained filaments. The carbon fiber making technology has the advantages of low requirements of operating workers' experiences, easy training, and low production cost.

Description

Technical field [0001] The invention relates to a carbon fiber manufacturing process and belongs to the technical field of carbon fibers. Background technique [0002] At present, there are more and more carbon fiber technologies, but each has its own shortcomings. For example, the existing carbon fiber manufacturing processes have unreasonable process arrangements, unreasonable selection of process parameters, unreasonable matching of various process parameters, etc., and the experience of the operators The requirements are higher, which increases the production cost. Summary of the invention [0003] Based on the above shortcomings in the prior art, the technical problem to be solved by the present invention is to provide a carbon fiber manufacturing process, which requires lower experience for operators, is easy to train, and has low production costs. [0004] The carbon fiber manufacturing process of the present invention is characterized in that it includes the following steps...

Claims

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Application Information

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IPC IPC(8): D01F9/12
Inventor 蒋曼丽
Owner 蒋曼丽
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