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ELECTRO SLAG MELTING FOR RECYCLING SCRAP OF VALUABLE METALS AND ALLOYS

机译:电渣熔化以回收有价值的金属和合金的废料

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Electroslag melting technologies have recently been developed for recycling light scrap of valuable metals and alloys such as superalloys and oxygen free high conductivity (OFHC) copper at Defence Metallurgical Research Laboratory (DMRL), Hyderabad. Conventionally, electroslag melting processes use consumable electrodes. Because of the difficulty in compaction of scrap into a consumable electrode of satisfactory quality, non-consumable electrodes such as graphite and water-cooled copper have been designed. Electroslag remelting using a water-cooled non-consumable electrode was developed to melt scrap of a nickel base superalloy. Sound ingots with smooth surface finish and properties comparable to vacuum melted superalloys could be obtained from scrap using this process. A modified electroslag crucible melting process using graphite crucible and graphite electrode was developed for recycling OFHC copper scrap. Copper ingots with less than 10 ppm oxygen and electrical conductivity approx 100 percent IACS could be produced. The same process was also utilized to produce copper-based alloys such as copper-chromium and copper-titanium starting from copper scrap.
机译:最近已经开发了用于在国防冶金研究实验室(DMRL),海德拉巴的高级合金金属和金属和合金(如Hyperalloys和无氧高导电(OFHC)铜的荧光金属和合金的光废料的电磁熔化技术。传统上,电子熔融工艺使用消耗电极。由于难以将废料压实成令人满意的质量的消耗电极,因此设计了石墨和水冷铜等不可耗材电极。使用水冷式非耗材电极进行电焊重熔以熔化镍基超合金的废料。使用该方法可以从废料中获得具有光滑表面光洁度和与真空熔化的高温合金相当的性能的声音铸锭。开发了使用石墨坩埚和石墨电极的改进的电烙坩埚熔化过程,用于再循环铜废料。可以生产具有少于10ppm氧和电导率的铜锭约100%IACS。还使用相同的方法来生产从铜废料开始的铜基合金,例如铜 - 铬和铜 - 钛。

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