Tribo-corrosion resistance of carbon steels with arc-sprayed coatings using powder electrodes 60Х15Р2ГС and 75X19Р3С2

Author:

Vynar V., ,Holovchuk M.,Vasyliv C.,Hvozdetskyi V.,Ratska N.,Rudkovskyi Y., , , , ,

Publisher

Lviv National Agrarian University

Subject

General Engineering

Reference20 articles.

1. Pokhmurskyi, V., Student, M., Pokhmurska H., Ryabcev, I., Gvozdeckii, V., & Stupnytskyy, V. (2013). Gazoabrazinnaya iznosostojkost pri povyshennyh temperaturah pokrytiy, poluchennyh duhovoj metallizaciej. Avtomaticheskaja svarka, 6, 16-23.

2. Pokhmurskyi, V., Student, M., Stupnytskyy, V., Chervinska, N., & Kondyr A. (2012). Zasady stvorennia koroziinostikykh elektroduhovykh pokryttiv z poroshkovykh drotiv. Fizyko-himichna mehanika materialiv, 9(2), 600-606.

3. Khoma, M. S., Pereplotchikov, E. F., Vasyliv, Ch. B., Vynar, V. A., Ryabtsev, I. A., Ratska, N. B., & Ivashkiv, V. R. (2019). Corrosion and tribocorrosion properties of plasma coatings on the base of iron, nickel and chromium in environments, which contain hydrogen sulfide, chloride and ammiac. Naukovi notatky, 66, 356-361.

4. Pokhmurska, H. V., Student, М. М., & Pokhmurskyi, V. І. (2017). Gazotermichni pokryttia: Navch. posib. Lviv: Prostir-М.

5. Pokhmurskyi, V., Student, M., Stupnytskyy, V., & Chervinska, N. (2013). Struktura, mehanichny ta elektrokhimichni kharakterystyky koroziinostiikykh elektroduhovykh pokrytttiv z poroshkovykh drotiv. Naukovi notatky, 2(41),127-132.

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