Erosion of multilayer vacuum-arc metal-nitride coatings on the base of Ті, Zr, Cr, Mo under cavitation

Authors

  • Анатолий Афанасьевич Андреев Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine
  • Владимир Иванович Коваленко Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine
  • Владимир Иванович Коваленко Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine
  • Владимир Григорьевич Маринин Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine https://orcid.org/0000-0001-5417-7029
  • Владимир Григорьевич Маринин Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine https://orcid.org/0000-0001-5417-7029
  • Людмила Ивановна Мартыненко Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine
  • Вячеслав Александрович Столбовой Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine
  • Вячеслав Александрович Столбовой Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108, Ukraine

DOI:

https://doi.org/10.15587/2313-8416.2016.69622

Keywords:

coating, multilayer, multicomponent, nitrides, titan, zirconium, chromium, molybdenum, cavitation, erosion

Abstract

Multilayered and multicomponent coatings are synthesized by a method of vacuum-arc sedimentation of metals and their nitrides on the basis of Тi, Zr, Cr, Mo. It is established, that erosion rate of coatings under cavitation decreases with increase in microhardness (Hμ) from 20 up to 32GPa and with growth up to 45 GPa - increases. It is established almost linear dependence of parameter a =Нm3 ⁄ Е*2 from microhardness of coatings

Author Biographies

Анатолий Афанасьевич Андреев, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The scientific employee of a department

Department of intensive vacuum plasma technology

Владимир Иванович Коваленко, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The scientific employee of a department

Department of intensive vacuum plasma technology

Владимир Иванович Коваленко, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The scientific employee of a department

Department of intensive vacuum plasma technology

Владимир Григорьевич Маринин, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The candidate of physical and mathematical sciences, the senior lecturer, the senior scientific employee

Department of intensive vacuum plasma technology

Владимир Григорьевич Маринин, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The candidate of physical and mathematical sciences, the senior lecturer, the senior scientific employee

Department of intensive vacuum plasma technology

Людмила Ивановна Мартыненко, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The deputy chief of a department

Department of intensive vacuum plasma technology

Вячеслав Александрович Столбовой, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The candidate technical sciences, the senior scientific employee

Department of intensive vacuum plasma technology

Вячеслав Александрович Столбовой, Institute of physics of a firm body, materials science and technologies National Science of Centre «Kharkov institute of Physics and technology» 1 Akademicheskaja str., Kharkov, Ukraine, 61108

The candidate technical sciences, the senior scientific employee

Department of intensive vacuum plasma technology

References

Aksenov, I. I., Aksenov, D. S., Belous, V. A. (2014). Tehnika osazhdenija vakuumno-dugovyh pokrytij. Kharkiv: NNC HFTI, 280.

Boxman, R. L., Martin, P. J., Sanders, D. M. (Eds.) (1995). Handbook of vacuum arc sience and technology. N. J. Noyes Publ. Park Ridge, 250.

Aksenov, I. I., Andreev, A. A., Belous, V. A., Strel'nickij, V. E., Horoshih, V. M. (2012). Vakuumnaja duga: istochniki plazmy, osazhdenie pokrytij, poverhnostnoe modificirovanie. Kiev: Naukova dumka, 727.

Aksenov, I. I., Aksenov, D. S., Belous, V. A., Sobol', O. V. (2015). Vakuumno-dugovye pokrytija. Tehnologii, materialy, struktura, svojstva. Kharkiv: NNC HFTI, 379.

Anishhik, V. M., Uglov, V. V., Zlockij, S. V., Emel'janov, V. A., Ponomar', V. N., Uhov, V. A. (2003). Mnogoslojnye nanostrukturirovannye pokrytija TiN/ZrN: struktura i mehanicheskie svojstva. Perspektivnye materialy, 4, 75–78.

Chen, S.-F., Kuo, Y.-C., Wang, C.-J., Huang, S.-H., Lee, J.-W., Chan, Y.-C. et. al (2013). The effect of Cr/Zr chemical composition ratios on the mechanical properties of CrN/ZrN multilayered coatings deposited by cathodic arc deposition system. Surface and Coatings Technology, 231, 247–252. doi: 10.1016/j.surfcoat.2012.03.002

Lomello, F., Arab Pour Yazdi, M., Sanchette, F., Schuster, F., Tabarant, M., Billard, A. (2014). Temperature dependence of the residual stresses and mechanical properties in TiN/CrN nanolayered coatings processed by cathodic arc deposition. Surface and Coatings Technology, 238, 216–222. doi: 10.1016/j.surfcoat.2013.10.079

Sobol', O. V., Andreev, A. A., Gorban', V. F., Stolbovoj, V. A., Pinchuk, N. V., Mejlehov, A. A. (2015). Vlijanie tolshhiny bisloev TiN/ZrN na strukturu i svojstva mnogoslojnyh pokrytij, poluchennyh vakuumno-dugovym ispareniem. Voprosy atomnoj nauki i tehniki, 2, 124–129.

Wieciriski, P., Smolik, J., Garbacz, H., Kurzydłowski, K. J. (2014). Kurzydtowski. Failure and deformation mechanisms during indentation in nanostructured Cr/CrN multilayer coatings. Surface and Coatings Technology, 240, 23–31. doi: 10.1016/j.surfcoat.2013.12.006

Kovalenko, V. I., Marynin, V. G. (1998). Obladnannja dlja doslidzhennja erozii' pokryttiv pry mikro udarnomu dijanni. Voprosy atomnoj nauky y tehnyky, 5, 83–89.

Marinin, V. G., Kovalenko, V. I. (2013). Cavitation resistance of vacuum-arc coverings deposited on substrate of different orientation. Technology audit and production reserves, 4/2 (12), 15–18. Available at: http://journals.uran.ua/tarp/article/view/16243/13672

Pogrebnjak, A. D., Shpak, A. P., Azarenkov, N. A., Beresnev, V. M. (2009). Struktura i svojstva tverdyh i sverhtverdyh nanokompozitnyh pokrytij. Uspehi fizicheskih nauk, 179 (1), 35–64. doi: 10.3367/ufnr.0179.200901b.0035

Musiel, J., Vlček, J., Ježek, V., Benda, M., Kolega, M., Boomsma, R. (1995). Production of Ti films with controlled texture. Surface and Coatings Technology, 76-77, 274–279. doi: 10.1016/0257-8972(95)02582-0

Published

2016-05-31

Issue

Section

Technical Sciences