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Continuous Casting
Название Analysis of the features of forming of thermal sprayed coatings on the walls of slab mould
Автор Yu. S. Korobov, A. B. Kotelnikov, A. V. Kushnarev, A. A. Kirichkov
Информация об авторе

Ural Federal University (Ekaterinburg, Russia):

Korobov Yu. S., Dr. Eng., Prof., Head of the department, e-mail: yukorobov@gmail.com

 

Research & Development Enterprise “Mashprom” (Ekaterinburg, Russia):
Kotelnikov A. B., Chief Manager

 

EVRAZ Nizhniy Tagil Metallurgical Works (Nizhniy Tagil, Russia):
Kushanrev A. V., Dr. Eng., Managing Director
Kirichkov A. A., Cand. Eng., Advisor

Реферат

Abstract: Resource of continuous casting moulds is limited by the wall resistance. The walls made of bronze, with micro-alloying by silver or zirconium, which are characterized by high heat conductivity in combination with low loss of strength during cyclic heating, are usually used. Different coatings made of nickel- and chromium-base alloys are deposited on the walls in order to rise wear resistance. The structure of the samples made of CuCrZr bronze with chromium-nickel coating, applied by HVAF spraying, has been studied using metallographic and micro-X ray spectral analysis. Development of mutual diffusion of base and coating atoms, as well as recrystallization in sub-boundary base sections are shown in this paper. It finalizes in forming the transition area with size not less than 20 μm both in coating and in base. Lowering of recrystallization temperature of a base surface leads to forming of the layer with lowered strength properties; however, it provides increase of adhesion strength in coating and rise of its resistance during thermocycling. The mechanism of forming the transition area, connected with the features of the force effect during dynamic hitting of spraying particles with metal base in the process of coating HVAF spraying is suggested. The obtained results have been used in development of the technology for spraying coating on mould walls.

Ключевые слова HVAF spraying, copper mould, thermocycling, adhesion strength, structure of transition area, recrystallization, diffusion
Библиографический список

1. Kuklev A. V., Leytes A. V. Continuous casting practice. Moscow : Metallurgizdat, 2011. 432 p.
2. Investigation of failure and damages on a continuous casting copper mould. Silvia Barella, Andrea Gruttadauria, Carlo Mapelli, Davide Mombelli. Engineering Failure Analysis. 36 (2014). pp. 432–438.
3. Osintsev O. E., Fedorov V. N. Copper and copper alloys. Russian and foreign grades: reference book. Moscow : Mashinostroenie, 2004. 336 p.
4. ASM Specialty Handbook: Copper and Copper Alloys: ed. by J. R. Davis. ASM International, 200. 652 p.
5. Makrushin A. D., Kuklev A. V., Ayzin Yu. M. et al. Radial slab crystallizer with parallel-plate ducts and nickel cover of walls. Metallurg. 2005. No. 2. pp. 39–41.
6. Review of Thermal Spray Coating Applications in the Steel Industry Part 1 — Hardware in Steel Making to the Continuous Annealing Process. S. Matthews and B. James. Journal of Thermal Spray Technology Volume. 19(6) December 2010. pp.1267-1276.
7. Gerasimova A. A., Radyuk A. G., Glukhov L. M. Coating on narrow walls of CCM molds for improve of slabs surface quality. Metallurg. 2014. No. 5
8. ASM Handbook, Volume 5A: Thermal Spray Technology. Ed. By Robert C. Tucker, Jr. ASM International. 2013. 412 p.
9. Korobov Yu. S., Shumyakov V. I., Pryadko A. S. Rational approach to the reconditioning of equipment parts by gas thermal spraying. Remont, vosstanovlenie, modernizatsiya. 2013. No. 3. pp. 17–21.
10. HVAF — High Velocity Air Fuel Technology. UniqueCoat Technologies, USA. 2016. Available at: http://www.uniquecoat.com/.
11. Baldaev L. Kh., Borisov V. N., Vakhalin V. A. et al. Gas-thermal spraying: tutorial. Ed.: L. Kh. Baldaev. Moscow: Staraya Basmannaya, 2015. 539 p.
12. Functional and Protective Coatings by Novel High-Kinetic Spray Processes. Petri M. J. Vuoristo. Kokkola Material Week-2014: Proceedings of the International Conference. Kokkola, Finland, 2014.
13. Baranovskiy V. HVAF — equipment for supersonic air-gas spraying. Thermal spraying — modern state: materials of international scientific and practical seminar. Ekaterinburg: Ural State Technical University — Ural Polytechnic Institute, 2010. pp. 4–30. Available at: http://study.ustu.ru/view/aid_view.aspx?AidId=9563
14. Yu. Korobov, M. Filippov. HVAF coating application in steel-making process. Thermal Spray Crossing Borders: International Thermal Spray Conference & Exposition ITSC 2008, The Netherlands, Maastrich, June 2–4, 2008. pp. 1364-1367.
15. Korobov Yu. S. Analysis of properties of gas-thermal coatings: tutorial: in two parts. Part 2: assessment of parameters of coatings. Ekaterinburg: Publishing House of Ural University, 2016. 92 p.
16. Gorelik S. S., Dobatkin S. V., Kaputkina L. M. Recrystallization of metals and alloys. Moscow : MISIS, 2005. 432 p.
17. Lakhtin Yu. M., Leonteva V. P. Materials science. Third edition. Moscow : Mashinostroenie, 2010. 528 p.
18. Kobelev A. G., Potapov I. N., Kuznetsov E. V. Technology of layer materials. Moscow: Metallurgiya, 1991. 249 p.
19. Klykov N. A. Calculation of fatigue strength characteristics of welds. Moscow : Mashinostroenie, 1984. 158 p.

Language of full-text русский
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