Configuration method of combined factory building for producing anode carbon brick for electrolysis of aluminum

A technology of anode carbon block and configuration method, which is applied in the field of configuration of a combined workshop for the production of anode carbon blocks for electrolytic aluminum, can solve the problems of inability to continuously transport materials, increase the paved area of ​​roads and pipelines, and increase investment in infrastructure, etc. The effect of reducing road paving area and pipeline laying length, reducing capital construction investment and production and operation costs, reducing loading and unloading links and material loss

Inactive Publication Date: 2005-06-01
GUIYANG AL-MG DESIGN & RES INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the general layout of the current anode carbon block production plant for electrolytic aluminum, the green anode manufacturing and cooling section ① is usually placed on the right side of the roasting section ②, and the carbon block transfer section ③ is placed on the top of the roasting section ②. The anode assembly section ④ is placed on the upper right of the roasting section ②. These sections are separated from each other and not adjacent to each other. This will increase the factory floor area, increase the material transportation distance between the sections, and increase the road paving area and The length of the pipeline is increased, the materials cannot be transported continuously, and there are many loading and unloading links, which makes the management of the workshop complex, the transportation efficiency is low, the material loss is increased, and the transportation cost is high, which will eventually increase the capital investment and production and operation costs of factories and enterprises.

Method used

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  • Configuration method of combined factory building for producing anode carbon brick for electrolysis of aluminum
  • Configuration method of combined factory building for producing anode carbon brick for electrolysis of aluminum

Examples

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Effect test

Embodiment 1

[0008] Embodiment 1 of the present invention: as figure 1 As shown, the carbon block transfer section (2) is placed in the center, and the two parallel roasting sections (3) are placed on one side of the carbon block transfer section (2) and adjacent to the carbon block transfer section (2) And vertically, place the raw anode manufacturing and cooling section (1) on the other side of the carbon block transfer section (2), perpendicular to it, adjacent to and close to the raw material inlet (5), and place the anode assembly section (4) on the raw anode The position on the same side of the manufacturing and cooling section (1), and perpendicular to the carbon block transfer section (2), is adjacent to and close to the finished product outlet (6), and the material transportation between the sections adopts chain or plate conveyors.

Embodiment 2

[0009] Embodiment 2: as figure 2 As shown, when the roasting section (3) is arranged as a factory building, the carbon block transfer section (2) is placed in the center, and the roasting section (3) is placed on one side of the carbon block transfer section (2) and the carbon block The transfer section (2) is adjacent and vertical, and the layout of other sections is the same as that in Embodiment 1, and chain or plate conveyors are also used for material transportation between sections. When building a factory in a mountainous area for layout, the raw anode manufacturing and cooling section (1), the carbon block transfer section (2), the roasting section (3), and the anode assembly section (4) can be arranged on tables of different elevations. Generally 2 ~ 4m. The relative position of each section can be adjusted according to specific conditions such as the topographical conditions of the factory and the direction of external material transportation in practical applicati...

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Abstract

The present invention discloses the configuration method of the composite workshop building for producing anode carbon block for electrolyzing aluminum. The configuration method includes setting the carbon block transferring section in the center position, setting the anode manufacturing and cooling section in the position perpendicular to the carbon block transferring section and near the material entrance, setting the anode assembling section in the position perpendicular to the carbon block transferring section and near the product exit, setting the roasting section in the position perpendicular to and adjacent to the carbon block transferring section, and completing the material conveyance between different sections with conveyer. The present invention has the advantages of reducing land consumption, shortening material conveying distance, etc.

Description

[0001] Technical field: The present invention relates to a configuration method of a combined workshop for the production of anode carbon blocks for electrolytic aluminum. Background technique: [0002] The production of anode carbon blocks for electrolytic aluminum involves the following production sections: ①The raw anode manufacturing and cooling section for producing raw anode carbon blocks by using coke and pitch; ②The roasting section for roasting raw anode carbon blocks to produce cooked anode carbon blocks;③ The raw anode carbon blocks and cooked anode carbon blocks are stored and grouped to facilitate the carbon block transfer section for shipment; ④ the cooked anode carbon blocks are processed and assembled to become the anode assembly section of carbon blocks for electrolytic aluminum. In the general layout of the current anode carbon block production plant for electrolytic aluminum, the green anode manufacturing and cooling section ① is usually placed on the right s...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C25C3/12
Inventor 吴展光唐雄俊王时芬王波
Owner GUIYANG AL-MG DESIGN & RES INST
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