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Aluminum electrolysis cell cathode structure of horizontal current in controllable regulation aluminum liquid

A horizontal current, aluminum electrolytic cell technology, applied in the field of aluminum electrolytic cells, can solve the problems affecting the stability of the magnetic fluid in the cell, deformation of the electrolyte-aluminum liquid interface, and no consideration of pressure drop, etc., to achieve strong work stability and aluminum liquid The effect of small fluctuations and optimized distribution

Inactive Publication Date: 2011-09-14
CENT SOUTH UNIV +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the traditional aluminum electrolytic cell, the current flows into the cell from the aluminum guide rod, and flows out from the side of the cell through the anode, electrolyte, aluminum liquid, cathode carbon block and steel rod. And the resistivity of the aluminum liquid is much smaller than that of the electrolyte and the cathode carbon block, so a large part of the current diversion occurs in the aluminum liquid layer, forming a horizontal current in the aluminum liquid. The horizontal current will not only significantly increase the vertical magnetic field, but also its Work together with the vertical magnetic field to affect the stability of the magnetic fluid in the slot
In the cathode structure of the traditional aluminum electrolytic cell, the carbon blocks and steel rods are all horizontal structures, and the effect of the pressure drop in the horizontal direction of the aluminum liquid on the horizontal current is not considered, so there will be a large horizontal current in the aluminum liquid, and the excessive Large horizontal currents cause excessive electromagnetic force, which in turn causes violent fluctuations of the aluminum liquid and severe deformation of the electrolyte-aluminum liquid interface. The electrolysis process must be carried out under relatively high pole distance conditions, which causes a large amount of useless energy consumption

Method used

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  • Aluminum electrolysis cell cathode structure of horizontal current in controllable regulation aluminum liquid
  • Aluminum electrolysis cell cathode structure of horizontal current in controllable regulation aluminum liquid
  • Aluminum electrolysis cell cathode structure of horizontal current in controllable regulation aluminum liquid

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Embodiment 1

[0024] Such as figure 2 Shown is the sectional view along the length direction of the cathode structure of the aluminum electrolytic cell adopting a long and continuously protruding cathode steel rod of the present invention, which is composed of a cathode carbon block 1, a cathode steel rod 2, and a steel rod carbon paste 3. In this embodiment, the total length of the cathode carbon block 1 is 3000-4000mm, the width is 400-700mm, and the height is 400-600mm. The bottom of the cathode carbon block 1 is provided with a dovetail groove with a continuously changing section along the length direction, and a dovetail groove corresponding to it. A long cathode steel rod 2 with a continuous protrusion 5 is embedded in the groove. The highest protrusion part of the continuous protrusion 5 on the cathode steel rod 2 is 400-1200mm away from the edge of the outlet end of the cathode carbon block 1. The continuous protrusion 5 The height of the highest protrusion is 50-120 mm relative to...

Embodiment 2

[0026] Such as image 3 Shown is the cross-sectional view of the aluminum electrolytic cell cathode structure length direction using a long and partially raised cathode steel rod of the present invention, which is composed of a cathode carbon block 1, a cathode steel rod 2, a steel rod carbon paste 3, and a heightening material 4 . In this embodiment, the total length of the cathode carbon block 1 is 3000-4000 mm, the width is 400-700 mm, and the height is 400-600 mm. There is a dovetail groove at the bottom of the cathode carbon block 1 along the length direction, and a dovetail groove is embedded in the corresponding dovetail groove. Cathode steel rods 2 with padding materials 4 are partially provided. The cross-section of cathode steel rods 2 is rectangular. Cathode steel rods 2 are processed according to the traditional structure. When assembling the cathode structure, plug the raised parts in the corresponding dovetail grooves The padding material 4 with good electrical ...

Embodiment 3

[0028] Such as Figure 4 Shown is the sectional view along the length direction of the cathode structure of the aluminum electrolytic cell adopting a long and continuously protruding cathode steel rod of the present invention, which is composed of a cathode carbon block 1, a cathode steel rod 2, and a steel rod carbon paste 3. In this embodiment, the total length of the cathode carbon block 1 is 3000-4000 mm, the width is 400-700 mm, and the height is 400-600 mm. Two dovetail grooves with continuously changing cross-sections are opened at the bottom of the cathode along the length direction, and each dovetail groove corresponding to it is Embed a long cathode steel rod 2 with a continuous protrusion 5, the highest protrusion part of the continuous protrusion 5 on the long cathode steel rod 2 is 400-1200 mm from the edge of the outlet end of the cathode carbon block 1, and the continuous protrusion 5 The protrusion height of the highest protrusion part is 50-120 mm relative to ...

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Abstract

The invention discloses an aluminum electrolysis cell cathode structure of horizontal current in controllable regulation aluminum liquid. A continuously or partially bulged cathode steel bar is used or a cushion material with high electric conductivity is cushioned at the partial position between a common rectangular steel bar and a cathode carbon block, so that the distribution and the size of the horizontal current in the aluminum liquid can be readjusted by the cathode structure. Structural parameters are determined by the cathode structure according to an actual groove-type design, the horizontal current in the aluminum liquid can be obviously reduced when the cathode structure is used in an aluminum electrolysis cell, and the distribution of the horizontal current in the aluminum liquid can be optimized to prevent an area with higher horizontal current density from being superposed with an area having a larger vertical magnetic field, so that the effects of weakening the vertical fluctuation of the aluminum liquid and stabilizing the horizontal motion of a melt are achieved; therefore, electrolysis can be operated within a relatively short electrode distance, energy consumption can be reduced greatly, and the cathode structure is easy and convenient to process and is easy to realize.

Description

technical field [0001] The invention belongs to the field of aluminum electrolytic cells, and in particular designs a cathode structure of an aluminum electrolytic cell that can controllably adjust the horizontal current in molten aluminum. Background technique [0002] The traditional Hall-Héroult aluminum electrolysis process has always been the only method for industrial aluminum smelting. In the traditional aluminum electrolytic cell, the current flows into the cell from the aluminum guide rod, and flows out from the side of the cell through the anode, electrolyte, aluminum liquid, cathode carbon block and steel rod. And the resistivity of the aluminum liquid is much smaller than that of the electrolyte and the cathode carbon block, so a large part of the current diversion occurs in the aluminum liquid layer, forming a horizontal current in the aluminum liquid. The horizontal current will not only significantly increase the vertical magnetic field, but also its Working ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C25C3/08
Inventor 李劼张红亮徐宇杰杨帅赖延清丁凤其郭龙王化雨
Owner CENT SOUTH UNIV
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