Ion-Plasma Sprayed Coating as a Protective Decorative Coating for Copper-Nickel Alloy

Article Preview

Abstract:

This article is devoted to studiing the ion-plasma sprayed coating on the surface of copper-nickel alloy obtained by complex titanium nitride and zirconium nitride treatment. To evaluate the coating microhardness we use the method that provides the obligatory penetration of diamond-pointed pyramid through nitride layer. It is shown that nitride coating microhardness is much higher than the copper-nickel alloy microhardness. Furthermore, surface treatment provides the color of the nitride coating just as gold plated.

You might also be interested in these eBooks

Info:

Periodical:

Solid State Phenomena (Volume 284)

Pages:

1195-1199

Citation:

Online since:

October 2018

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2018 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] О.Е. Osintsev, V.N. Fedorov, Copper and copper alloys. Domestic and foreign signs: handbook, Mashinostroenie, Мoscow, (2004).

Google Scholar

[2] А.К. Nikolaev, S.А. Kostin, Copper and heatproof alloys: handbook, DPK Press, Мoscow, (2012).

Google Scholar

[5] V.I. Kumanin, V.B. Lifshits, Materials for Jewells, Kladies, Moscow, (2012).

Google Scholar

[4] E.I. Orlovsky, Commodity research of jewelry and watches. Мoscow: Economics, (1983).

Google Scholar

[5] I.N. Mutilina, Artistic Materials Science. Jewelery Alloys, Vladivostok: ESTU, (2005).

Google Scholar

[6] I.M. Kovensky, V.V. Povetkin, Metallurgy of coatings: Мoskow. (1999).

Google Scholar

[7] N.A. Sosnin, S.A. Yermakov, P.A. Topolyansky, Plasma technologies. Manual for Engineers. Saint-Petersburg, (2013).

Google Scholar

[8] J.K. Hirvonen, Ion implantation, Translated from English. Мoscow. Metallurgy, (1985).

Google Scholar

[9] D.R. Coupland, Advanced Coating Technology A.C.T. Platinum Metals Rev, 37(2)6 (1993).

Google Scholar

[10] N. Valmoria, A. Mendenilla, M. Yambot, M. Mena, H. Ramos, Synthesis of ZrN Film Via the Plasma Sputter-Type Negative Ion Source Science Diliman, 11(2) (1999) 39-43(5).

DOI: 10.1016/j.vacuum.2003.12.158

Google Scholar

[11] Yu.P. Tarasenko, L.A. Krivina, I.N. Tsareva, V.A. Il'ichev, The technology optimization of ion-plasma titanium-nitride coating on the small size thin-wall details. Nizhny Novgorod. 3-2 (27) (2011) 170-174.

Google Scholar

[12] L. Pranavichus, R. Valatka, L. Ancyavichine, Protective coatings and technology for their production by physical methods. Kaunas, (1990).

Google Scholar

[13] V.V. Budilov, R.M. Kireev, I.I. Yagafarov, Assessment of GTE parts precision at the ion-plasma spraying of coatings, Russian Aeronautics C/C Of Izvestiia Vysshie Uchebnye Zavedeniia Aviatsionnaia Tekhnika, 55(2) (2012) 203-207(5).

DOI: 10.3103/s1068799812020158

Google Scholar

[14] V.A. Strigak, V.R. Baraz, S.S. Gerasimov, A.N. Mahankov, Investigation of protective coatings of copper-nickel alloys, Сollection of reports Innovations in Materials Science and Metallurgy,, Ekaterinburg, 1 (2012) 372-376.

Google Scholar

[15] Yu.A. Bykov, S.D. Karpukhin, Yu.V. Panfilov, M.K. Boichenco, Measurement of hardness of thin films, 10 (2003) 32-35.

Google Scholar

[16] Yu.A. Bykov, S.D. Karpukhin, Method for determining the hardness of subthin protective coatings, Directory. Engineering Journal. 10 (2003) 26-30.

Google Scholar

[17] Yu.P. Pshenichnov, Detection of the fine structure of crystals, Directory. Мoscow, Metallurgy, (1974).

Google Scholar

[18] M. Sebastiani, M. Renzelli, Focused Ion Beam and Nanomechanical Tests for High Resolution Surface Characterisation Platinum Metals Rev., 58 (1)3 (2014).

DOI: 10.1595/147106714x675768

Google Scholar

[19] A. Vinicius, C. Octávio, E. Galvani, Microstructural characterization of TiN/ZrN multilayer coatings on titanium alloy produced by powder metallurgy, Tecnologia em Metalurgia, 11(3) (2014) 195-201.

DOI: 10.4322/tmm.2014.029

Google Scholar

[20] Yang, Yu-Sen; Huang, Wesley; Huang, Guo-Ping; Chou, Jyh-Horng Adaptive Neuro-Fuzzy Approach for Predicting Hardness of Deposited TiN/ZrN Multilayer Coatings Journal of Nanoscience and Nanotechnology, 10(7) 4667-4673(7).

DOI: 10.1166/jnn.2010.1687

Google Scholar

[21] A.I. Kostrzhitskii, T.V. Cheban, R.A. Podolyan, Physicochemical properties of steel surfaces with titanium nitride ion-plasma sprayed coating, Protection of metals. 44(6) (2008) 603-606(4).

DOI: 10.1134/s003317320806012x

Google Scholar

[22] W.-H. Soe,  R. Yamamoto, Mechanical properties of multilayers: TiN/CrN, TiN/ZrN, and TiN/TaN // MATERIALS CHEMISTRY AND PHYSICS, 50(2) (1997) 176-181(6).

DOI: 10.1016/s0254-0584(97)80256-8

Google Scholar