NUMERICAL SIMULATION OF THE THERMAL FIELD IN THE PROCESS OF OBTAINING A BIMETALLIC STRIP IN THE FOUNDRY-PLASMA TECHNOLOGY
Keywords:
bimetallic construction, melt, steel,, cast iron, billet, substrate, heat source, crystallizer, casting device, temperature distribution, primary contact zone, diffusion bondAbstract
In the conditions of the foundry-plasma method for producing bimetallic structures, when casting a cast iron melt onto a steel billet, the temperature field in the zone of pouring and solidification of the melt was studied using numerical simulation. The necessity of preliminary heating of the substrate by a thermal source is substantiated. Two variants of the design of the internal cavity of the pouring unit were analyzed and the optimal one was chosen.
References
Brykov, M. N., Efremenko, V. G. & Efremenko, A. V. (2014) Durability of steels and cast irons in abrasive wear: Scientific edition. Xerson: Grin D.S. [in Russian].
Karichkovskij, P.N., Shinskij, I.O., Klimenko, L.M. (2009) Methods of increasing the technical resource, operational reliability of the working bodies of crushing and grinding equipment. Metall i lit’e Ukrainy, vol. 7−8, рр. 56−60 [in Russian].
Orlik, A.G. & Gernyshev, G.G. (2008) Development of technology of mechanized arc surfacing coated with a given set of properties, resistant to hydroabrasive wear. Mashinostroenie, vol. 8, рр. 53−61 [in Russian].
Golovanensko, S.A. & Meandrov, A.V. (1966) Production of bimetals. Moskva: Mashinostroenie. [in Russian].
Vajnerman, A. E., Shoroxov, M. X., Veselkov, V. D. & Novosadov, V. S. (1985) Plasma surfacing. Moskva: Mashinostroenie. [in Russian].
Hasui, A., Morigaki, O. (1985) Surfacing and spraying. (Popova, V. N., Trans.). Moscow: Mashinostroenie. [in Russian].
Gologoskij, E.G. (1998) Mechanized methods of surfacing and spraying parts of construction, road and municipal machines. Moskov: MIKHiS [in Russian].
Tіtova, T. M., Ogurcov, A. P., Bolshakov, V. I., Pavlyuchenkov, I. O., Byalik, G. A., Gerasimenko, V. G. & Adamchuk, S. I. (2004) Ukrainian Patent UA №70473. Kiev: Derdavne pіdpriemstvo «Ukrains’kij іnstitut іntelektual’noї vlasnostі». Bimetallic continuous casting method [in Ukrainian].
Tіtova, T. M., Bolshakov, V. I. & Tubolcev, L.G. (2004) Ukrainian Patent UA №69114. Kiev: Derzhavne pіdpriemstvo «Ukrains’kij іnstitut іntelektual›noї vlasnosti» Method for producing bimetallic continuous cast casting [in Ukrainian].
Lexov, O. S., Turlaev, V. V., Lisin, I. V. & Tuev, M. Yu. (2014) Investigation of the combined process of continuous casting and deformation for the production of bimetallic bands. Vestnik MGTU im. G. I. Nosova, vol. 4,рр. 69−73 [in Russian].
Belousov, Yu. V., Koryagin, E. I., Taranina, E. V., Razumej, S. V. & Oprishhenko, V. A. (2008) Modern high-performance welding technology of units of the metallurgical cycle. Nauchno-prakticheskaja konferencija «novye i netradicionnye texnolgii v resurso- i energosberezhenii» (pp. 5−8). Odessa. URL: www.atmu.net.ua/downloads/archive/odessa2008.pdf [in Russian].
Tkachev, V. N., Fixshein, B. M., Kazince, N. V., Aldyrevv, V. A. (1970) Induction hardfacing of hard alloys. Moskow: Mashinostroenie [in Russian].
Lixoshva, V. P., Naidek, V.L., Karichkovckii, P. M., Pelican, O. A., Glushkov, D. V. Nadashkevcih, R. S. (2010) Ukrainian Patent UA №54486. Kiev: Derzhavne pіdpriemstvo «Ukrains’kij іnstitut іntelektual’noї vlasnostі» Method of obtaining wear-resistant multilayer metal castings [in Ukrainian].
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