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Copper sulfonium flow guide groove redirection blocking door convenient to close and open

A technology for blocking doors and diversion grooves, applied in lighting and heating equipment, furnace components, furnaces, etc., can solve the problem of inaccurate blocking of yellow mud and blocking filling positions, affecting the grade and quality of anode copper, and increasing copper matte. Heat energy dissipation and other problems, to reduce labor intensity, avoid heat loss, and reduce heat pollution

Pending Publication Date: 2019-12-27
DONGYING FANGYUAN NONFERROUS METALS +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

There are the following problems and deficiencies in this method of closing and opening the diversion tank: 1. In order to meet the plugging requirements of the diversion tank, special yellow mud must be allocated and prepared for a long time
2. The operator is required to fill in and lift out the yellow mud under the open diversion groove
That is to say, increasing the heat loss of the copper matte, burning the operator, and there are also some unsafe factors such as damage to the diversion tank and burns.
3. The plugging yellow mud at room temperature and the imprecise filling position of the plugging can easily cause copper matte nodules and nodules at dead ends
4. The lost residue in the process of filling and lifting out the plugging yellow mud affects the grade and quality of anode copper

Method used

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  • Copper sulfonium flow guide groove redirection blocking door convenient to close and open
  • Copper sulfonium flow guide groove redirection blocking door convenient to close and open

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0016] In conjunction with the accompanying drawings, the present invention is described in further detail below:

[0017] Such as figure 1 As shown: Y-shaped diversion groove 1 is an integrated special product customized for refractory material manufacturers. The outer angles of A angle 11 and B angle 12 are not less than 130°, and C angle 13 is not greater than 100°, so that the plugging door Run smoothly within the range of 10 motion trajectories. The blocking door 3 is a plate structure similar in shape to the chute 2 . The width is slightly larger than the distance between C corner 13 and A corner 11 or B corner 12, and the height is larger than the depth of chute 2. The outer side 4 is double-edged, the lower side 5 is pure arc, and the rotation axis side 6 is the rotation axis. 8 concentric semicircular arcs.

[0018] Such as figure 2 As shown, the blocking door is passively suspended on the fixed frame 7 through the concentric rotating shaft 8 fixedly connected to...

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PUM

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Abstract

The invention discloses a copper sulfonium flow guide groove redirection blocking door convenient to close and open, and belongs to non-ferrous metal smelting auxiliary facilities. The blocking door comprises a flow guide groove, a chute, a blocking door, a fixing frame, a rotating shaft and a handle, the blocking door is characterized in that the blocking door is dynamically suspended and fixed through the fixing frame and the rotating shaft, two branches of smelting molten sulfonium in the Y-shaped flow guide groove are closed and opened, so that a smelting furnace continuous producing can discontinuously and alternately convey the molten sulfonium to two refining furnaces or two casting discs. Compared with the prior art, the blocking door has the characteristics and advantages of beingsimple in structure, convenient to operate, safe and environmentally friendly, less in pollution to molten sulfonium, low in labor intensity and the like, and thus has good popularization and application value.

Description

technical field [0001] The invention belongs to auxiliary facilities for smelting non-ferrous metals, specifically a copper matte diversion channel for convenient closing and opening on the copper matte transportation line between smelting furnaces and between smelting furnaces and casting troughs for graded implementation Divert and block the door. Background technique [0002] The separate smelting, blowing and refining are the basic steps and procedures for the industrial production of copper. After the smelting furnace, blowing furnace and refining furnace complete their respective reaction processes, the molten high-temperature copper matte needs to be transported and injected into the next-stage smelting furnace for further reaction and purification. The anode copper matte obtained from the refining furnace must also be transported to The casting trough is cast into copper ingots. In the prior art, copper matte transportation is mostly carried out by copper cladding....

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F27D3/14B22D1/00C22B15/00
CPCB22D1/00C22B15/0028F27D3/145
Inventor 崔志祥王智王海滨边瑞民侯鹏崔文昭杜武钊郑军涛于鹏飞陈永鑫
Owner DONGYING FANGYUAN NONFERROUS METALS