Smart Search 



Title of the article

SPECIAL ASPECTS OF DIFFUSIONAL TRANSFER OF THE ALLOYING ADMIXTURE DURING ION NITRIDING OF THE THERMAL-SPRAYED COATINGS

Authors

GRIGORCHIK Aleksandr N., Post-Graduate Student, Junior Researcher of the Center of Structural Research and Tribo-Mechanical Test of Materials and Machine-Building Output

KUKAREKO Vladimir A., Dr. Phys.-Math. Sc., Associate Professor, Head of the Center of Structural Research and Tribo-Mechanical Test of Materials and Machine-Building Output, Joint Institute of Mechanical Engineering of the National Academy of Sciences of Belarus, Minsk, The Republic of Belarus, This email address is being protected from spambots. You need JavaScript enabled to view it.">This email address is being protected from spambots. You need JavaScript enabled to view it.

BYELI Aleksey V., Dr. Techn. Sc., Professor, Associate Director, Physicotechnical Institute of the National Academy of Sciences of Belarus, Minsk, The Republic of Belarus

BELOTSERKOVSKIY Marat A., Dr. Techn. Sc., Associate Professor, Head of the Laboratory of Thermal Spray Methods of Machines units Managment, Joint Institute of Mechanical Engineering of the National Academy of Sciences of Belarus, Minsk, The Republic of Belarus

In the section TECHNOLOGICAL MECHANICS
Year 2016 Issue 1 Pages 75-80
Type of article RAR Index UDK 621.793: 621.785.532 Index BBK  
Abstract

The effect of ion-beam nitriding of 09X19H9T austenitic high velocity oxygen fuel coating on phase composition and structure of nitrided layer has been investigated. The distribution of nitrogen atoms in near-surface layer has been studied. It is established that deposited particles with relatively low depth of oxide streaks have higher concentration of alloying element and microhardness. The model connecting inhomogeneous distribution of alloying element in deposited particles with diffusion impermeability of oxide streaks located on the boundaries of the deposited particles has been suggested.

Keywords

thermal coating, ion-beam nitriding, oxide streaks, concentration discontinuity

  You can access full text version of the article.
Bibliography
  • Vityaz P.A., Ivashko V.S., Il’jushhenko A.F. [et al.]. Teorija i praktika nanesenija zashhitnyh pokrytij [Theory and practice of protective coatings application]. Minsk, Belorus.navuka, 1998. 583 p.
  • Vityaz P.A. [et al.]. Povyshenie resursa tribosoprjazhenij aktivirovannymi metodami inzhenerii poverhnosti [Improving of resource of tribocoupling activated with surface engineering methods]. Minsk, Belorus. navuka, 2012. 452 p.
  • Byeli A.V., Kukareko V.A., Taran I.I. [et al.]. Formirovanie i svojstva nanostrukturnyh poverhnostnyh sloev v austenitnyh staljah podvergnutyh ionno-luchevomu azotirovaniju [Formation and properties of nanostructured surface layers in austenitic steels subjected to ion-beam nitriding]. Poverhnost. Rentgenovskie, sinhrotronnye i nejtronnye issledovanija [Surface. X-ray, synchrotron and neutron researches], 2006, vol. 7, pp. 100–106.
  • Kukareko V.A., Byeli A.V. Dose rate and microstructure of nitrogen ion-implanted chromium steels. Surface and coatings technology, 2000, vol. 127, no. 2–3, pp. 174–178.
  • Byeli A.V., Kukareko V.A., Kononov A.G., Bilenko Je.G. Strukturnye prevrashhenija i amorfizacija splava Fe-Zr pri obluchenii intensivnymi potokami ionov azota [Structural transformations and amorphization of alloy Fe-Zr during irradiation with intensity flows of nitrogen ions]. Poverhnost. Rentgenovskie, nejtronnye i sinhrotronnye issledovanija [Surface. X-ray, synchrotron and neutron researches], 2008, vol. 5, pp. 13–16.
  • Byeli A.V., Kukareko V.A., Patejuk A. Inzhenerija poverhnostej konstrukcionnyh materialov koncentrirovannymi potokami ionov azota [Surface engineering of structural materials with concentrated flows of nitrogen ions]. Minsk, Belorusskaja nauka. 2007. 244 p.
  • Grigorchik A.N., Kukareko V.A. [et al.]. Struktura i tribotehnicheskie harakteristiki gazotermicheskogo pokrytija iz provolochnoj stali 06H19N9T obrabotannogo ionami azota [Structure and tribological characteristics of thermal coating of wire steel 06H19N9T treated with nitrogen ions]. Izvestija vuzov. Chernaja metallurgija [Proceedings of universities. Ferrous metallurgy], 2014, vol. 2, pp. 61–64.
  • Goldshmidt H.Dzh. Splavy vnedrenija [Filled alloy]. Moscow, izd-vo “Mir”, 1971, vol. 2, pp. 87–120.