Nonwaste Recycling of Nonferrous Metallurgy Slags in Iron Casting

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Abstract:

It is proposed to use waste slags of copper, nickel and titanium production at mining and metallurgical enterprises for their full recycling in graphite iron castings as a charge component, as well as an active additive in ladle and furnace inoculation of iron melt.

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Periodical:

Solid State Phenomena (Volume 265)

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1053-1058

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Online since:

September 2017

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© 2017 Trans Tech Publications Ltd. All Rights Reserved

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[1] S.V. Davydov, New technologies of cast iron modification, Engineering metallurgy. 3(2010) 8-13.

Google Scholar

[2] S.V. Davydov, A new approach to classification of modification methods, Engineering metallurgy. 5 (2006) 5-9.

Google Scholar

[3] S.V. Davydov, Tendencies of development of modifiers for iron and steel, Blank productions in mechanical engineering. 1 (2007) 3-11.

Google Scholar

[4] S.V. Davydov, A.G. Panov, A.E. Kornienko, The market of modifiers: chaos or development, Engineering metallurgy. 3 (2006) 8-9.

Google Scholar

[5] S.V. Davydov, Effective way to eliminate heredity, of blast furnace cast iron and cast iron of cupola melting, Ferrous metals. 6 (2003) 15-17.

Google Scholar

[6] S.V. Davydov, Technology of nanomodification of blast furnace and cupola cast irons, Blank production. 2 (2005) 3-9.

Google Scholar

[7] M.P. Galkin, V.S. Larionov, A.V. Stepanov, G.S. Nikitin, Recycling of waste slags at metallurgical works, Technological equipment and materials. 4 (1998).

Google Scholar

[8] A.V. Grechko, V.M. Paretsky, A.D. Besser, Bubble pyroprocessing of various industrial productions, Nonferrous metals. 1 (2005) 42-44.

Google Scholar

[9] L.S. Tsemekhman, M.V. Knyazev, S.V. Berkutov and others, Melting of copper and nickel concentrates at plant Pechenganickel" in Vanyukov, s two-zone furnace, Nonferrous metals. 12 (2004) 32-36.

Google Scholar

[10] L.B. Tsymbulov, M.S. Fedorov, V.N. Galantsev, Copper and nickel behavior in oxidizing fusion of copper low ferrous nickel-containing mattes and concentrates into blister copper, Nonferrous metals. 12 (2004) 36-42.

Google Scholar

[11] S.P. Kormilitsin, N.L. Voikhanskay, V.A. Popov and others, Study of processing technologies of titanium concentrates in deposits of South-Eastern Gremyakha, Nonferrous metals. 1(2005)27-30.

Google Scholar

[12] G.G. Krushenko, I.S. Yamskih, A.A. Bonchenkov, A.S. Mishin, Improving the quality of iron castings with the help of nanopowders, Engineering metallurgy. 9 (2002) 20-21.

Google Scholar

[13] E.F. Vegman, B.N. Zherebin, A.N. Pokhvisnev and others, Cast iron metallurgy 2nd edition, Metallurgy, Moscow, (1989).

Google Scholar

[14] A.A. Zhukov, S.V. Davydov, New source of copper as cast iron alloying component, Foundry. 5 (1999) 43.

Google Scholar

[15] S.V. Davydov, D.A. Boldyrev, Graphitized cast irons with unregulated graphite forms, Foundry. 4 (2015) 2-6.

Google Scholar

[16] The influence of zinc additives on microstructure and mechanical properties of iron castings, Foundry. 5 (2004) 33-34.

Google Scholar