Method for eliminating local partial pressure in vacuum smelting reduction still and used reduction still

A vacuum smelting and partial part technology, applied in the field of reduction kettle, can solve the problems of destroying the pressure environment of the reduction reaction, hindering the reduction reaction, difficult metal vapor, etc., so as to shorten the reduction reaction time and eliminate the partial pressure effect.

Inactive Publication Date: 2008-07-02
GUIZHOU SHIJI TIANYUAN MINING IND
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  • Summary
  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

Due to the large capacity of the reduction kettle itself, a large amount of metal vapor is produced. The material at the bottom is under the weight of a large amount of material at the top, and the metal vapor generated is difficult to be sucked out, forming a partial partial pressure at the bottom, which destroys the reduction reaction. The pressure environment hinders the progress of the reduction reaction

Method used

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  • Method for eliminating local partial pressure in vacuum smelting reduction still and used reduction still
  • Method for eliminating local partial pressure in vacuum smelting reduction still and used reduction still
  • Method for eliminating local partial pressure in vacuum smelting reduction still and used reduction still

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Embodiment Construction

[0015] Examples. The method to eliminate the partial pressure in the vacuum smelting reduction kettle, such as figure 1 As shown, the reduction kettle is provided with a metal vapor vacuum exhaust port or a crystallizer interface. The method is to add a metal vapor outlet channel in the reduction kettle so that the metal vapor generated by the reduction reaction passes through the guide on the reduction kettle or radiant tube The gas tank escapes to the metal vapor vacuum exhaust port and is collected by the metal collector or crystallizer to avoid the formation of partial pressure in the reduction kettle, so that the reduction reaction can continue and shorten the reduction cycle. The outlet channel is provided with an air guide groove 2 on the inner wall of the reduction kettle 4, and the direction of the air guide groove points to the metal vapor vacuum exhaust port 6; or figure 2 As shown, the radiant tube 1 in the reduction kettle is provided with an air guide groove along ...

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Abstract

The invention discloses a method for eliminating local differential pressure in a vacuum smelting reduction kettle, which comprises the following steps of: arranging a metal vapor vacuum pumping hole or a crystallizer interface on the reduction kettle; and disposing a metal vapor guide channel in the reduction kettle, so that the metal vapor can escape into a metal collector or the crystallizer along the guide channel. The reduction kettle (4) adopted by the method has a rectangular or round box body with a bevel bottom structure and has a bottom inclined by an angle of 30 to 60 DEG. The metal vapor vacuum pumping hole (6) is provided on the kettle body on the highest point side on the top of the reduction kettle, an air guide groove (2) pointing to the metal vapor vacuum pumping hole is provided on the inner wall of the reduction kettle, a radiation pipe (1) with the air guide groove and penetrating in the kettle is vertically or horizontally arranged in the reduction kettle, or an air guide groove is provided on a heat conductor arranged on the radiation pipe. The invention can effectively eliminate local differential pressure in the vacuum smelting reduction kettle to successfully guide the metal vapor produced by reduction reaction, thus holding the pressure environment in the reduction kettle and ensuring the smooth execution of the reduction reaction.

Description

Technical field [0001] The invention relates to a reduction kettle, in particular to a method for eliminating partial pressure in a vacuum smelting reduction kettle and a used reduction kettle. Background technique [0002] In the metal vacuum smelting production, the reducing material produced through the batching and pressing process is sent to the reduction tank for reduction reaction. Generally, the reduction reaction temperature is higher than 1100°C and the pressure is lower than 10Pa-13Pa. The reduction tank in the fuel heating reduction furnace or the radiant tube of the heating reduction tank is used to make the reduction material reach the required temperature value to realize the reduction reaction. The existing reduction tank has a tubular hollow structure and is placed in the reduction furnace to heat the reduction material. The heat is transferred from the outside of the reduction tank to the material. The heat conductivity is low, the temperature rises slowly, and ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22B5/16
Inventor 张继强黄贵明
Owner GUIZHOU SHIJI TIANYUAN MINING IND
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