Carbon Nanomaterials in Electrochemical Coatings of Machinery Products

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Abstract:

The questions of application of nanomaterials in mechanical engineering are considered. Concept of electrochemical processing products in mechanical engineering with the use of a solid nanodisperse phase is defined. The characteristics and methods of application in the processes of electrodeposition of carbon nanomaterials are determined. The results of experimental investigations of electrolytic chrome plating with multi-walled carbon nanotubes of the "Taunit" series are presented.

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834-840

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February 2022

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© 2022 Trans Tech Publications Ltd. All Rights Reserved

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[1] V.F. Petrunin, Development of nanomaterials and nanotechnology in atomic industry, Nuclear Physics and Engineering 2(3) (2011) 196-204.

Google Scholar

[2] V.F. Petrunin, Development stages of ultradispersed (nano-) systems, Physicochemistry of Ultrafine (Nano-) Systems (2012) 12-14.

Google Scholar

[3] S.M. Alfimov, B.A. Bykov, E.P. Grebennikov, Development of works in the field of nanotechnology in Russia, Nano- and Microsystem Technology 8 (2004) 2-8.

Google Scholar

[4] I.B. Oparina, A.G. Kolmakov, M.A. Sevostyanov, M.L. Heifetz, Composite materials production, Innovative Technologies in Mechanical Engineering (2018) 99-102.

Google Scholar

[5] T.V. Elinek, Advances in electroplating. Review of the world special literature for 2017-2018, Electroplating and Surface Treatment 27(2) (2019) 4-8.

Google Scholar

[6] E.G. Vinokurov, L.N. Margolin, V.V. Farafonov, Electrodeposition of composite coatings, News of Higher Educational Institutions. Chemistry and Chemical Technology 63(8) (2020) 4-38.

Google Scholar

[7] V.Yu. Dolmatov, G.K. Burkat, D.V. Rudenko, I.A. Dyakov, The development of the electrochemical deposition process of nickel-diamond coating with phosphorus modified DND, Journal of Superhard Materials 41(1) (2019) 43-48.

DOI: 10.3103/s1063457619010064

Google Scholar

[8] V.Yu. Dolmatov, D.V. Rudenko, G.K. Burkat, et al., A study of the process of gold plating from citrate and phosphate electrolytes in the presence of modified detonation nanodiamonds, Journal of Superhard Materials 41(3) (2019) 167-177.

DOI: 10.3103/s1063457619030043

Google Scholar

[9] V.N. Shinkin, Springback coefficient of round steel beam under elastoplastic torsion, CIS Iron and Steel Review 15 (2018) 23-27.

DOI: 10.17580/cisisr.2018.01.05

Google Scholar

[10] V.N. Shinkin, Simple analytical dependence of elastic modulus on high temperatures for some steels and alloys, CIS Iron and Steel Review 15 (2018) 32-38.

DOI: 10.17580/cisisr.2018.01.07

Google Scholar

[11] V.N. Shinkin, Preliminary straightening of steel strip, Chernye Metally 5 (2018) 34-40.

Google Scholar

[12] V.N. Shinkin, Direct and inverse non-linear approximation of hardening zone of steel, Chernye Metally 3 (2019) 32-37.

Google Scholar

[13] V.N. Shinkin, Elastoplastic flexure of round steel beams. 2. Residual stress, Steel in Translation 48(11) (2018) 718-723.

DOI: 10.3103/s0967091218110098

Google Scholar

[14] V.N. Shinkin, Elastoplastic flexure of round steel beams. 1. Springback coefficient, Steel in Translation 48(3) (2018) 149-153.

DOI: 10.3103/s0967091218030117

Google Scholar

[15] V.A. Fedorov, I.V. Ushakov, Effect of annealing on the deformation and fracture of metallic glass under local loading, Technical Physics 46(6) (2001) 673-676.

DOI: 10.1134/1.1379632

Google Scholar

[16] I.V. Ushakov, V.A. Feodorov, I.J. Permyakova, Determination of plasticity of thermally treated metallic glass by U-method and microindentation, Proceedings of SPIE - The International Society for Optical Engineering 5127 (2002) 246-251.

DOI: 10.1117/12.517988

Google Scholar

[17] I.V. Ushakov, V.A. Feodorov, Effect of annealing temperature of amorphous metal alloy on cobalt base on cracks formation under local loading, Fizika i Khimiya Obrabotki Materialov 6 (2002) 77-80.

Google Scholar

[18] I.V. Ushakov, V.A. Feodorov, I.J. Permyakova, Influence of etching and annealing on evolution of surface structure of metallic glass, Proceedings of SPIE - The International Society for Optical Engineering 5400 (2004) 265-268.

DOI: 10.1117/12.555529

Google Scholar

[19] V.A. Fedorov, I.V. Ushakov, I.E. Permyakova, Deformation and fracture features of annealed metallic glass ribbons of a Co-Fe-Cr-Si system during microindentation, Bulletin of the Russian Academy of Sciences: Physics 69(9) (2005) 1537-1542.

Google Scholar

[20] I.V. Ushakov, How a crack and the defect material in its neighborhood affect the radiation strength of transparent materials, Journal of Optical Technology 75(2) (2008) 128-131.

DOI: 10.1364/jot.75.000128

Google Scholar

[21] I.A. Dyakov, Nanomodified electroplating coatings, Nanotechnology 1 (2013) 60-68.

Google Scholar