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Development of composition and process of obtaining multicomponent ferroalloys

机译:多组分铁合金的成分和制备方法的开发

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© 2020 National University of Science and Technology MISIS. All rights reserved.The main product of ferroalloy plants is standard ferroalloys. They often do not have all the necessary service characteristics and are not very suitable for metal processing in a ladle. The developing progressive technology of steelmaking is forced to adapt to the existing range of ferroalloys, the standards for which have not been updated for 50 years or more. In addition, in recent years, the sources and markets of ferroalloy raw materials have changed, and their quality and content of leading elements have decreased. This makes it difficult or excludes the possibility of obtaining ferroalloys according to existing standards. In this regard, the production of more efficient ferroalloys of a new generation is required, suitable for progressive processes in the developing areas of ferrous and non-ferrous metallurgy and smelted from non-traditional types of domestic ore raw materials. These include complex or multicomponent ferroalloys containing, in addition to iron, two or more functional elements. Complex ferroalloys should be created in the most favorable combinations of component. It contributes to the necessary effective impact on the iron-carbon melt with a high degree of assimilation of useful elements in it. The creation of scientific foundations for the formation of new compositions of multicomponent ferroalloys with high consumer properties, and the development of physicochemical processes for obtaining these alloys from unconventional ore raw materials contributes to solving the problems of developing compositions of effective new generation ferroalloys and expanding the ore base of ferroalloy production. When using the developed method of designing the composition of complex ferroalloys using unconventional raw materials, melting technologies were developed; various alloys of the systems were obtained and applied on a laboratory and industrial scale: Fe-Si-Cr, Fe-Si-B, Fe-Si-Ba-Ca, Fe-Si-Al-Nb, Fe-Si-Ca-Mg, Fe-Si-V-Ca-Mn, Fe-Si-Al.
机译:© 2020 国立科技大学-莫斯科国立钢铁合金学院保留所有权利。铁合金厂的主要产品是标准铁合金。它们通常不具备所有必要的服务特性,不太适合在钢包中进行金属加工。不断发展的先进炼钢技术被迫适应现有的铁合金系列,其标准已经 50 年或更长时间没有更新。此外,近年来,铁合金原料的来源和市场发生了变化,其主导元素的质量和含量有所下降。这使得根据现有标准获得铁合金变得困难或排除了可能性。在这方面,需要生产更高效的新一代铁合金,适用于黑色金属和有色冶金发展领域的渐进式工艺,并从非传统类型的国内矿石原料中冶炼而成。这些包括复杂或多组分铁合金,除铁外,还含有两种或多种功能元素。复杂的铁合金应以最有利的组分组合制造。它有助于对铁碳熔体产生必要的有效影响,并高度吸收其中的有用元素。为形成具有高消费性能的多组分铁合金的新成分奠定科学基础,以及开发从非常规矿石原料中获得这些合金的物理化学工艺,有助于解决开发有效新一代铁合金成分的问题和扩大铁合金生产的矿石基础。当使用非常规原材料设计复杂铁合金成分的开发方法时,开发了熔炼技术;在实验室和工业规模上获得了各种合金:Fe-Si-Cr、Fe-Si-B、Fe-Si-Ba-Ca、Fe-Si-Al-Nb、Fe-Si-Ca-Mg、Fe-Si-V-Ca-Mn、Fe-Si-Al。

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