On-line anode connecting method and structure for prebaked anode aluminium electrolysis

A prebaked anode and aluminum electrolysis technology, which is applied in the field of electrolytic aluminum production, can solve the problems of inconvenient use, large changes in the structure of anode carbon blocks and steel claws, etc., and achieve the effects of improving electrical conductivity, reducing load-bearing requirements, and flexible structure

Active Publication Date: 2017-05-17
周俊和 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, there are still disadvantages such as large changes in the st

Method used

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  • On-line anode connecting method and structure for prebaked anode aluminium electrolysis
  • On-line anode connecting method and structure for prebaked anode aluminium electrolysis
  • On-line anode connecting method and structure for prebaked anode aluminium electrolysis

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Embodiment 1

[0025] Example 1. The structure of prebaked anode aluminum electrolysis connected to the anode online, including the carbon block body 1 of the anode, the top of the carbon block body 1 is provided with a carbon bowl 3, and the bottom is provided with a fixed protrusion 4, and the old and new carbon block bodies 1 pass through the carbon bowl 3 and the fixed protrusion. Header 4 positioning connections.

[0026] The top and bottom of the carbon block body 1 are respectively provided with bumps 7 and grooves 8 .

[0027] Also comprise steel claw 2, be provided with tensioning mechanism 5 on steel claw 2, as Figure 3-7 As shown, the tensioning mechanism 5 includes a clip 501 connected to the steel claw 2 . The clip 501 is provided with a fastening block 502 inserted into the carbon bowl. The clip 501 is connected to a bracket 504 for moving the fastening block 502 . The clip 501 and the fastening block 502 are placed in the installation groove 505 in the steel claw 2 .

[00...

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Abstract

The invention discloses an on-line anode connecting method and structure for prebaked anode aluminium electrolysis. The on-line anode connecting method is characterized in that carbon bowls (3) at the top of a carbon block body (1) of an anode is connected with a steel claw (2) through casting of aluminium water; when the carbon block body (1) in an electrolytic bath is burnt to the degree that connection with a new anode is required, aluminium water in the carbon bowls (3) of the old carbon block body (1) is molten, the steel claw (2) is taken out, and at the moment, the old carbon block body (1) bears through a covering material at the periphery of the carbon block and a condensation layer of an electrolyte; a new carbon block body (1) is placed above the old carbon block body (1); the new carbon block body (1) and the old carbon block body (1) are connected through a fixing convex head (4) at the bottom of the new carbon block body (1) and the carbon bowls (3) of the old carbon block body (1); and the steel claw (2) is fixed in the carbon bowls (3) of the new carbon block body (1) through casting of aluminium water. According to the application, the structures of the steel claw and the anode carbon blocks are further simplified, the modification cost is lowered, and the use is more convenient.

Description

technical field [0001] The invention relates to a method for producing electrolytic aluminum, in particular to a method and a structure for connecting an anode on-line with prebaked anode aluminum electrolysis. Background technique [0002] In the modern electrolytic aluminum industry, prebaked anodes are generally used to produce electrolytic aluminum. There are 2 to 4 circular grooves with a diameter of 160 to 180 mm and a depth of 80 to 110 mm on the upper surface of the anode carbon block, commonly known as carbon bowls. The anode claw head is cast in the carbon bowl, and the anode claw head and the aluminum conductive rod are connected by aluminum-steel explosion welding, and then the aluminum conductive rod is closely connected with the anode carbon block to form the anode carbon block group. In the production process of electrolytic aluminum, the anode carbon block will be continuously consumed due to its continuous reaction with the oxygen decomposed by alumina elec...

Claims

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Application Information

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IPC IPC(8): C25C3/12
CPCC25C3/125
Inventor 邹建明
Owner 周俊和
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