Mode for wire drawing electrode material of multielement composite rare earth tungsten

A multi-component composite and rare earth tungsten technology, which is applied in the field of rare earth refractory metal functional materials processing, can solve the problems of high arc pressure, difficult processing, and inability to fully replace it, and achieve the advantages of increased recovery driving force, reduced production costs, and low cost advantages Effect

Active Publication Date: 2008-10-29
BEIJING UNIV OF TECH +1
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Problems solved by technology

Rare earth oxides have low work function, so they have attracted much attention. Studies have shown that doping a small amount of rare earth metal oxides in tungsten can significantly reduce the surface work function of the material and promote electron emission. Lanthanum tungsten electrodes, cerium tungsten electrodes, and yttrium tungsten electrodes Rare earth tungsten electrodes and other units have been successfully developed and introduced to the market. However, the above electrode materials have their own advantages and disadvantages: the lanthanum tungsten electrode has good arc stability and electrode burning resistance when working at medium and small currents, but its processing performance is poor. , Serious burning loss when using high current; cerium tungsten electrode has excellent arc ignition performance, but it can only be used in the case of small current welding, and serious burning loss under high current load; Yttrium tungsten electrode has high arc pressure when used. The electrode has good anti-burning performance when working with high current, but its processing is difficult, and the arc stability is poor when used at low current; therefore, it cannot completely replace the radioactively polluted thoriated tungsten electrode
[0003] On the basis of the unit rare earth tungsten electrode research, multi-element composite rare earth tungsten electrode materials have been developed successively. This type of material is added with a variety of rare earth oxides. Therefore, the welding performance of the multi-element composite rare earth tungsten electrode is better than that of the thoriated tungsten electrode of the same specification. However, the rare earth seriously changes the mechanical properties of the tungsten matrix while promoting electron emission. The second rare earth relative to the tungsten grain boundary The hindering effect makes the processing performance of the rare earth tungsten electrode very poor, especially for the wire drawing process, the product yield is very low, about 60%, and the high production cost has led to the fact that no multi-element composite rare earth tungsten electrode has been introduced to the market, hindering the replacement The process of thoriated tungsten electrodes

Method used

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Embodiment Construction

[0012] 1. Preheat the drawing die to 500°C first, and when the furnace temperature rises to 1175°C, fix the heating power, and the rare earth oxide content will be 0.44% La in weight percentage 2 o 3 , 1.32%Y 2 o 3 , 0.44% CeO 2 The rare earth tungsten wire rod with a diameter of Φ3 and the balance of tungsten is put into a chain-type wire drawing machine for processing, and graphite emulsion is used as a lubricant. The material is then processed through a Φ2.0 wire drawing die at a drawing speed of 11.5m / min, then processed through a Φ1.6 wire drawing die at a drawing speed of 12.5m / min, and then processed through a Φ1.2 wire drawing die. The speed is: 14.5m / min. After processing by the Φ1.2 wire drawing die, adjust the power of the heating furnace to keep the furnace temperature at 875°C. Then carry out Φ1.0 wire drawing die processing, the wire drawing speed is: 15.5m / min, after each wire drawing die processing, check that the diameter tolerance of the screw rod cannot ...

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Abstract

A draw method for preparing the multi-element composite RE-W electrode material includes such steps as preheating the drawing dies to 500-550 deg.C, raising the furnace temp to 1175-1225 deg.C, making the heating power constant, sequentially drawing with the pre-heated phi 2.5, phi 2.0, phi 1.6 and phi 1.2 dies, regulating the heating powder of furnace to make the furnace temp be 875-925 deg.C, and drawing with phi 1.1 die.

Description

Technical field: [0001] The invention relates to an industrial wire drawing method for a multi-element compound rare earth tungsten electrode material, which belongs to the technical field of rare earth refractory metal functional material processing. Background technique: [0002] Thorium tungsten electrodes are widely used in welding, thermal spraying, thermal cutting, and special light sources as electron sources and ion sources. Since thorium is naturally radioactive, its production and use will pollute the environment and endanger human health. New electrode materials have become a research hotspot for scientific researchers. Rare earth oxides have low work function, so they have attracted much attention. Studies have shown that doping a small amount of rare earth metal oxides in tungsten can significantly reduce the surface work function of the material and promote electron emission. Lanthanum tungsten electrodes, cerium tungsten electrodes, and yttrium tungsten electr...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B21C1/02B21C1/12B21C9/00C22C27/04
Inventor 聂祚仁李炳山杨建参彭鹰周美玲胡福成
Owner BEIJING UNIV OF TECH
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