Mechanical properties of the copper alloyed carbon coatings deposited from cathodic pulse plasma
Problemy fiziki, matematiki i tehniki, no. 3 (2010), pp. 25-30.

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In the present paper the copper alloying of single-component and titanium- containing diamond-like coatings obtained from cathodic pulse plasma is examined. The pecularities of the influence of the copper alloying of such coatings on their microhardness, internal mechanical stresses and morphology have been defined. It is shown, that copper-containing carbon coatings have non-uniform structure, they are characterised by lower microhardness and they keep high tribotechnical properties. Microhardness increases after annealing the coatings containing carbon, titanium and copper. Copper implantation into the coating leads to decrease of internal mechanical stresses and changes their character; at high copper concentration they become compressing.
Keywords: carbon coatings, mechanical properties, alloying, copper, titanium, morphology.
Mots-clés : friction
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D. G. Piliptsov; A. V. Rogachev; N. N. Fedosenko; R. V. Bekarevich. Mechanical properties of the copper alloyed carbon coatings deposited from cathodic pulse plasma. Problemy fiziki, matematiki i tehniki, no. 3 (2010), pp. 25-30. http://geodesic.mathdoc.fr/item/PFMT_2010_3_a2/

[1] A. V. Rogachev, S. S. Sidorskii, Vosstanovlenie i povyshenie iznosostoikosti detalei mashin, BelGUT, Gomel, 2005, 343 pp.

[2] F. E. Kennedy et al., “Tribological behavior of hard carbon coatings on steel substrates”, Wear, 255 (2003), 854–858 | DOI

[3] A. N. Popov, Uluchshenie tribotekhnicheskikh kharakteristik pretsizionnykh uzlov treniya naneseniem vakuumno-plazmennykh pokrytii na osnove titana i ugleroda, Dis. ... kand. tekhn. nauk: 05.02.04, IMMS NANB, Gomel, 2002, 106 pp.

[4] A. Erdemir et al., “Synthesis of superlow friction carbon films from highly hydrogenated methane plasmas”, Surface and Coatings Technology, 134 (2000), 448–454 | DOI

[5] A. V. Rogachev i dr., “Mekhanicheskie, svoistva i struktura kompozitsionnykh uglerodnykh pokrytii”, Materialy, tekhnologii, instrument, 5:2 (2001), 77–80

[6] C. Chen, F. Hong, “Structure and properties of diamond-like carbon nanocomposite films containing copper nanoparticles”, Applied surface science, 232:3 (2005), 261–269 | DOI

[7] A. V. Rogachev, N. N. Fedosenko, D. G. Piliptsov, “Mekhanicheskie svoistva mnogokomponentno legirovannykh uglerodnykh pokrytii”, Materialy, tekhnologii i oborudovanie v proizvodstve, ekspluatatsii, remonte i modernizatsii mashin, Sb. nauchnykh trudov 7 MNTK, v. 1, PGU, Novopolotsk, 2009, 49–53

[8] A. V. Rogachev i dr., “Vliyanie prirody i kontsentratsii legiruyuschikh elementov na morfologiyu zony treniya uglerodnykh pokrytii”, Izvestiya Gomelskogo gosudarstvennogo universiteta imeni F. Skoriny, 2009, no. 5 (56), 100–103

[9] A. V. Rogachev, “Tribotekhnicheskie svoistva kompozitsionnykh pokrytii, osazhdaemykh vakuumno-plazmennymi metodami”, Trenie i iznos, 29:3 (2008), 285–592

[10] P. N. Bogdanovich, V. Ya. Prushak, Trenie i iznos v mashinakh, «Vysheishaya shkola», Minsk, 1999, 256 pp.