Efficiency of an Alternative Silicon-Containing Material for Ironmaking
A silicon-containing material based on non-market (unsized) fractions of the magnesium-containing modifiers for the production of high-strength cast iron and vermicular graphite cast iron (VGCI) is proposed for ironmaking as an alternative of the popular FeSi45 ferroalloy. The economical scheme of a...
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Veröffentlicht in: | Russian metallurgy Metally 2023-12, Vol.2023 (13), p.2036-2038 |
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creator | Boldyrev, D. A. |
description | A silicon-containing material based on non-market (unsized) fractions of the magnesium-containing modifiers for the production of high-strength cast iron and vermicular graphite cast iron (VGCI) is proposed for ironmaking as an alternative of the popular FeSi45 ferroalloy. The economical scheme of a reasonable alternative application and specific features of the chemical composition and interaction of the silicon-containing material with molten cast iron are presented. The efficiency of its use for ironmaking in electric-arc furnaces has been confirmed in practice. |
doi_str_mv | 10.1134/S0036029523700416 |
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Metall</addtitle><description>A silicon-containing material based on non-market (unsized) fractions of the magnesium-containing modifiers for the production of high-strength cast iron and vermicular graphite cast iron (VGCI) is proposed for ironmaking as an alternative of the popular FeSi45 ferroalloy. The economical scheme of a reasonable alternative application and specific features of the chemical composition and interaction of the silicon-containing material with molten cast iron are presented. The efficiency of its use for ironmaking in electric-arc furnaces has been confirmed in practice.</description><subject>Cast iron</subject><subject>Chemical composition</subject><subject>Chemistry and Materials Science</subject><subject>Electric arc furnaces</subject><subject>Ferroalloys</subject><subject>Foundry</subject><subject>Ironmaking</subject><subject>Magnesium</subject><subject>Materials Science</subject><subject>Metallic Materials</subject><subject>Silicon</subject><issn>0036-0295</issn><issn>1555-6255</issn><issn>1531-8648</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><recordid>eNp1kE1LAzEYhIMoWKs_wFvA82q-szmWUttCxUP1vKTZpKRuk5pshf57s1TwIJ5emHlmeBkA7jF6xJiypzVCVCCiOKESIYbFBRhhznklCOeXYDTY1eBfg5ucdwgVSqgRmM-c88bbYE4wOqgDnHS9TUH3_svCte-8iaGaxtBrH3zYwhddbK876GKCyxTDXn8U_RZcOd1le_dzx-D9efY2XVSr1_lyOllVhoi6r7Rgim-ooqxGumXKSdtyKTetcDViCrFaEVk7xqhhxkjJBLJGbLhhmgkqNR2Dh3PvIcXPo819s4vH8m6XG6JErTDHQhUKnymTYs7JuuaQ_F6nU4NRM-zV_NmrZMg5kwsbtjb9Nv8f-gZVc2rk</recordid><startdate>20231201</startdate><enddate>20231201</enddate><creator>Boldyrev, D. 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subjects | Cast iron Chemical composition Chemistry and Materials Science Electric arc furnaces Ferroalloys Foundry Ironmaking Magnesium Materials Science Metallic Materials Silicon |
title | Efficiency of an Alternative Silicon-Containing Material for Ironmaking |
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