Layered Ni-Cr-Al Coatings for Air Tuyeres Protection from the Burnout

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Abstract:

A technological scheme for obtaining of the protective layered coating of the Ni-Cr-Al system on the surface of copper parts is proposed. Deformation of the explosion welded composite material copper substrate M1 + alloy Cr20Ni80 + aluminum AD1 in the process of the cold pressing of the tuyere nose was simulated in the SIMULIA/Abaqus software and the temperature distribution over the profile of the three-layer wall M1-Cr20Ni80-coating under the conditions of the process stabilization at background temperature 1600°С was simulated in the DEFORM-2D software.

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Solid State Phenomena (Volume 284)

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1200-1204

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October 2018

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© 2018 Trans Tech Publications Ltd. All Rights Reserved

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[1] A.V. Borodulin, Scientific basis of rational use of energy resources in blast-furnace production: author's abstract of the dis. Dr. of Tech. science, Ekaterinburg, (1994).

Google Scholar

[2] A.A. Bondarenko, A.S. Gorbik, G.G. Dyshlevich, Investigation of the heat stress of different sections of tuyeres, Steel. 7 (1983) 11-12.

Google Scholar

[3] О. Yu. Elagina, B.A. Slobodyannikov, A.G. Buklakov et al, Increasing the reliability of layers sputtered with composite powders based on Al2O3, clad with an ultrathin copper layer, Quality management in the oil and gas sector. 4 (2009) 47-49.

Google Scholar

[4] V.V. Bochka, E.G. Donskov, E.V. Dorosh et al, Increase the stability of blast furnace air tuyeres, Ferrous metallurgy. 9 (2003) 21-24.

Google Scholar

[5] A.G. Manshilin, E.N. Skladanovskiy, V.I. Netsvetov et al, Russian Federation Patent 2235789. (2004).

Google Scholar

[6] A.E. Ukraintsev, Development of protective coatings for air blast furnace blast tuyeres, in: 62nd days of science students MISiS: international, interuniversity and institute scientific and technical conferences, Moscow, (2007) 219-220.

Google Scholar

[7] V.A. Akimov, Research and perfection of the technology of manufacturing blast furnace air tuyeres with application of aluminous gas flame coatings with subsequent heat treatment, MISiS, Moscow, (2011).

Google Scholar

[8] A.E Ukraintsev, Development of compositions and creation of diffusion layers on copper by electroarc metallization followed by heat treatment, MISiS, Moscow, (2010).

Google Scholar

[9] V.G. Shmorgun, A.P. Sonnov, Yu.P. Trykov, I.A. Kovalev, Evaluation of the impact parameters for welding by bursting multilayer compositions, Metallurgy and strength of materials, VSTU, Volgograd, (1997) 20-25.

Google Scholar

[10] V.G. Shmorgun, Yu.P. Trykov, A.I. Bogdanov, A.O. Taube, Investigation of heat-resistant layered coating of Al-Cr-Ni, IOP Conf. Series: Materials Science and Engineering. 116 (2016) 012018.

DOI: 10.1088/1757-899x/116/1/012018

Google Scholar

[11] V.G. Shmorgun, L.D. Iskhakova, A.I. Bogdanov, A.O. Taube, Phase Composition of Heat-Resistant Layered Coatings of the Al–Cr–Ni System, Metallurgist. 60, 9-10 (2017) 1113-1119.

DOI: 10.1007/s11015-017-0414-z

Google Scholar

[12] V.G. Shmorgun, L.D. Iskhakova, A.I. Bogdanov, A.O. Taube, R. P. Ermakov, The study of the chemical and phase composition of the diffusion interaction zone in layered composite Cr20Ni80-AD1, IOP Conf. Series: Materials Science and Engineering. 177 (2017).

DOI: 10.1088/1757-899x/177/1/012134

Google Scholar

[13] V.G. Shmorgun, A.I. Bogdanov, A.O. Taube, R. E. Novikov, Investigation of Heat Resistance of Al-Ni Layered Coating, Solid State Phenomena. 265 (2017) 211-214.

DOI: 10.4028/www.scientific.net/ssp.265.211

Google Scholar