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首页> 外文期刊>Scandinavian Journal of Metallurgy >Reduction smelting of bursa-uludag tungsten concentrates by the aluminothermic process
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Reduction smelting of bursa-uludag tungsten concentrates by the aluminothermic process

机译:铝热法还原法鲁萨钨精矿的冶炼

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摘要

Tungsten is an important element for use in the production of some special steels and is added to steel as ferrotungsten alloys. Low carbon ferrotungsten is mostly produced by the metallothermic reduction process. The aim of this study was to determine ferrotungsten production parameters for the Etibank Scheelite concentrate containing 35% WO{sub}3 by an aluminothermic process. Although tungsten was recovered up to 95.4%, the tungsten content of atloy obtained was a maximum of 52.6% in the aluminothermic processing of tungsten calcine obtained by total oxidizing roasting of the concentrate. Therefore, pre-roasting and magnetic separation treatments were applied to tungsten concentrate to enrich the tungsten content in the non-magnetic part of the concentrate, and the tungsten recovery obtained was 92.5%. After applying total oxidizing roasting to the non-magnetic part of the concentrate to decrease the sulfur content, a calcine containing 50.4% WO{sub}3 was obtained. By aluminothermic reduction of this calcine, tungsten could be recovered at 79.4% and concentrated as 75.4% in the ferroalloy.
机译:钨是用于生产某些特殊钢的重要元素,并作为钨铁合金添加到钢中。低碳钨钨合金主要是通过金属热还原过程生产的。这项研究的目的是通过铝热法确定含35%WO {sub} 3的Etibank白钨精矿的钨钨生产参数。尽管回收了高达95.4%的钨,但是在通过对精矿进行全氧化焙烧而获得的钨煅烧的铝热加工中,所获得的钨的钨含量最高为52.6%。因此,对钨精矿进行预焙烧和磁分离处理以富集精矿的非磁性部分中的钨,钨的回收率为92.5%。在对精矿的非磁性部分进行完全氧化焙烧以降低硫含量之后,获得了含有50.4%WO {sub} 3的煅烧炉。通过铝热还原该煅烧炉,钨可回收到79.4%,并在铁合金中浓缩为75.4%。

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