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Functional plasma-deposited coatings

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Języki publikacji
EN
Abstrakty
EN
The paper focuses on the problem of low adhesion of plasma sprayed coatings to the substrate. The subsequent laser treatment modes and their influence on the coating-substrate interface were studied. This allows to decrease the level of met-stability of the coating, thus decreasing its hardness down to 11–12 GPa on the surface and to about 9 GPa on depth of 400 μm. The redistribution of alloying elements through solid and liquid diffusion improves mechanical properties and rises the adhesion up to 450 MPa after remelting and up to 90–110 MPa after laser-aided thermal cycling. At the same time, remelting of coating helps to decrease its porosity down to 1%. The obtained complex of properties also allows to improve wear resistance of coatings and to decrease friction factor.
Twórcy
autor
  • Department of Fundamentals of Technology, Lublin University of Technology, Nadbystrzycka 38, 20-618 Lublin, Poland
  • Engineering Department, National Aviation University, Kyiv, Ukraine
autor
  • Engineering Department, National Aviation University, Kyiv, Ukraine
autor
  • Engineering Department, National Aviation University, Kyiv, Ukraine
Bibliografia
  • 1.Borovsky`j Y.B., Gorodsky`j D.Zh., Sharafeev Y.N., Moryashhev S.F. Vass transfer at surface treatment of metals by melting using pulse laser irradiation. Reports AN SSSR. Vol. 263, 1982, 616-687 (In Russian).
  • 2.Castañeda E., Rubio-Gonzalez C., Chavez-Chavez A., Gomez-Rosas G. Laser shock processing with different conditions of treatment on duplex stainless steel. Journal of Materials Engineering and Performance, 24(6), 2015, 2521–2525.
  • 3.Fauchais P.L., Heberlein J.V.R., Boulos M.I. Industrial applications of thermal spraying technology. In book: Thermal Spray Fundamentals, 2013, pp. 1401-1566.
  • 4.Gerczry`ken D.S., Mazanko V.F., Fal`chenko V.M. Pulse treatment and mass transfer in metals at low temperatures. Nauk. dumka, 1991, pp. 208 (In Russian).
  • 5.Khatri S., Smith R., Jokiel P., Lugscheider E., Bohley M. Plasma spraying of high-nitrogen-bearing steels for wear-resistant coatings and structural applications. Journal of Materials Engineering and Performance, 3(4), 1994, 476–483.
  • 6.Kindrachuk M.V. The influence of eutectic plasma coating’s structure on their tribotechnical properties in a wide temperature range. Fiziko-Khimicheskaya Mekhanika Materialov, 30(4), 1994, 66-71.
  • 7.Kindrachuk M.V., Dushek Yu.Ya., Luchka M.V., Gladchenko A.N. Evolution of the structure and properties of eutectic coatings during friction. Powder Metallurgy and Metal Ceramics, 34(5), 1995, 321–326.
  • 8.Kovalenko V.S., Verxoturov A.D., Golovko L.F., Podchernyaeva Y.A. Laser and electroerrosion strengthening of materials. Nauka, 1986, pp. 276. (In Russian).
  • 9.Kuzneczov V.D. , Pashhenko V.M. Phisical and chemical fundamentals of coatins formation. NMCz VO, 1999, pp. 176 (In Ukrainian).
  • 10.Pashechko M. Golubets V., Stefanishin I. Hot gas eutectic coatings made of powder materials of the Fe-Mn-C-B system. Soviet Materials Science, 25(3), 1989, 270–272.
  • 11.Pashechko M. Wear resistance of eutectic coatings of the Fe–Mn–C–B system alloyed with Si, Ni and Cr. Materials Science, 46(5), 2011, 695–701.
  • 12.Paustovskii A.V., Botvinko V.P. Phase composition of the surface layers of high-speed cutting steel after electrospark alloying and laser treatment. Materials Science, 36(1), 2000, 100–103.
  • 13.Syed A.A., Denoirjean A., Denoirjean P., Labbe J.C., Fauchais P. In-flight oxidation of stainless steel particles in plasma spraying. Journal of Thermal Spray Technology, 14(1), 2005, 117–124.
  • 14.Yushhenko K.A., Borysov Yu.S., Kuzneczov V.D., Korzh V.M. Surface engineering. Naukova dumka, 2007, pp. 559 (In Ukrainian).
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c7e81eac-0088-4531-8f8a-d1c04e49395e
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