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Aluminum electrolytic cell support structure

A technology for aluminum electrolytic cells and supporting structures, applied in the field of aluminum electrolytic cells, can solve problems such as large horizontal thrust of concrete foundation, adverse effects on foundation stability, and enlargement, and achieve the goals of reducing horizontal thrust, increasing stability, and saving construction investment Effect

Inactive Publication Date: 2012-02-22
GUIYANG AL-MG DESIGN & RES INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Therefore, the friction force caused by the expansion also becomes larger, and the related components and the civil foundation carry a large friction force, which has a large horizontal thrust on the concrete foundation, which has an adverse effect on the stability of the foundation.

Method used

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  • Aluminum electrolytic cell support structure
  • Aluminum electrolytic cell support structure
  • Aluminum electrolytic cell support structure

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Embodiment 1

[0015] Embodiment one, is the basic technical scheme of the present invention, and its structure sees figure 1 , Place the rolling insulating support 3 on the concrete foundation 4, and place the aluminum electrolytic cell 1 with a cradle on the rolling insulating support 3.

Embodiment 2

[0016] Embodiment two, is the second technical scheme of the present invention, its structure sees figure 2 , Place a rolling insulating support 3 on the concrete foundation 4, set a beam 2 on the rolling insulating support 3, and place the aluminum electrolytic cell 1 with a cradle on the beam 2.

[0017] In the above two embodiments, the structure of the rolling insulating bearing 3 is shown in Figure 4 , it consists of upper component plate 5, lower component plate 10, upper insulating plate 6, lower insulating plate 9, rolling element 7, rolling connector 8, upper insulating plate 6, lower insulating plate 9 are respectively connected with upper component plate 5, The lower component plate 10 is connected, and the rolling element 7 is placed between the upper insulating plate 6 and the lower insulating plate 9 after being connected by a rolling connecting piece 8 . The rolling elements 7 are made of solid or hollow rollers, and each rolling insulating support 3 contains...

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Abstract

The invention discloses a supporting structure for an aluminum electrolytic cell. The basic technical proposal is: placing a rolling insulating support (3) on a concrete foundation (4), and directly placing a cradle frame on the rolling insulating support (3). Aluminum electrolytic cells (1). Another technical solution of the present invention is: placing a rolling insulating support (3) on the concrete foundation (4), setting a beam (2) on the rolling insulating support (3), and an aluminum electrolytic cell (1) with a cradle Place on beam (2). The rolling insulating support (3) in the above technical scheme is connected by an upper component plate (5), a lower component plate (10), an upper insulating plate (6), a lower insulating plate (9), a rolling member (7), and a rolling The upper insulating plate (6) and the lower insulating plate (9) are respectively connected with the upper member plate (5) and the lower member plate (10), and the rolling member (7) is connected through the rolling connector (8) Finally, be placed between the upper insulation board (6) and the lower insulation board (9).

Description

technical field [0001] The invention relates to an aluminum electrolytic cell, in particular to a mounting support structure for a large aluminum electrolytic cell. Background technique [0002] At present, the existing support structure of aluminum electrolytic cells mostly adopts the method of placing insulating bases (plates) on the civil foundation, placing beams on the insulating bases, and finally placing the electrolytic cell with cradle on the beams. Now with the gradual increase in the capacity of the electrolytic cell, the weight of the electrolytic cell and the displacement of thermal expansion also begin to increase. Therefore, the friction force caused by the expansion also becomes larger, and the relevant components and the civil foundation carry a relatively large friction force, and the horizontal thrust on the concrete foundation is large, which has an adverse effect on the stability of the foundation. Contents of the invention [0003] The object of the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C25C3/10
Inventor 黄俊刘坚
Owner GUIYANG AL-MG DESIGN & RES INST