Effect of Abrasive Tools in Galvanomechanical Treatment on the Roughness of the Deposited Chromium Layer

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The article deals with the method of obtaining a hard chromium coating on details of the "body of rotation" type with the use of an abrasive tool. The influence of the composition and hardness of the elastic abrasive tool on the results of galvanomechanical chromium plating of rotating cylindrical parts has been studied. Binder compositions for an abrasive tool used to improve the roughness of the deposited chromium layer have been developed. A series of experimental studies has been carried out with chromium plating of steel cylindrical parts with simultaneous abrasive processing. Beforehand, an abrasive tool with previously developed binder formulations was manufactured. The obtained results of the influence of the characteristics of the abrasive tool and its pressing force on the chromium-plated part on the quality of the precipitated chromium made it possible to determine the optimum modes for obtaining a coating of the required thickness. Also, a suitable abrasive tool has been chosen to obtain a coating of proper quality.

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Solid State Phenomena (Volume 284)

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1178-1183

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October 2018

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© 2018 Trans Tech Publications Ltd. All Rights Reserved

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[1] M.A. Shluger, Galvanic coatings in mechanical engineering: Handbook. In 2 volumes, Mashinostroenie, Moscow, (1985).

Google Scholar

[2] M.A. Dasoyan, I.Ya. Palmskaya, Equipment of electrochemical coatings shops, third ed., Mechanical Engineering, Leningrad, (1979).

Google Scholar

[3] V.V. Bodrov, R.M. Bagautdinov, RU Patent 2400571.

Google Scholar

[4] F.F. Azhogin, M.A. Belenky, I.E. Gal et al., Electroplating, Metallurgy, Moscow, (1987).

Google Scholar

[5] B. Weiss, A. Lefebvre, O. Sinot, M. Marquer, A. Tidu, Surf. Coat. Technol. 272 (2015) 165-175.

Google Scholar

[6] M. Vidal, M. Ostra, N. Imaz, E. Garcia-Lecina, C. Ubide, Surf. Coat. Technol. 285 (2016) 289-297.

Google Scholar

[7] A. Redza, T. Yasui, M. Fukumoto, Deposition of Hard Chromium Coating onto Heat Susceptible Substrates by Low Power Microwave Plasma Spray, IOP Conference Series: Materials Science and Engineering, 114-1 (2016).

DOI: 10.1088/1757-899x/114/1/012030

Google Scholar

[8] N. Imaz, E.Garcia-Lecina, J. A. Diez, et al., Chemometrics applied to functional chromium electroplating by pulse plating techniques, Transactions of the Institute of Metal Finishing, 90 (2012) 259-266.

DOI: 10.1179/0020296712z.00000000046

Google Scholar

[9] N. Imaz, M. Ostra, M.Vidal, et al., Corrosion behaviour of chromium coatings obtained by direct and reverse pulse plating electrodeposition in NaCl aqueous solution. Corrosion Science, 78 (2014) 251-259.

DOI: 10.1016/j.corsci.2013.10.005

Google Scholar

[10] C.B. Mello, R.A.F. Mansur, N.M. Santos, W.E.S.S. Viana, M. Ueda, Experimental study of mechanical and tribological behavior of nitrogen ion-implanted chromium thin films, Surface and Coatings Technology, 312 (2017)123-127.

DOI: 10.1016/j.surfcoat.2016.12.100

Google Scholar

[11] S. H. Sarraf, M. Soltanieh, H. Aghajani, Vacuum, 127 (2016) 1-9.

Google Scholar

[12] H.-H. Sheu, C.-E. Lu, K.-H. Hou, M.-L. Kuo, M.-D. Ger, Journal of the Taiwan Institute of Chemical Engineers, 48 (2015) 73-80.

Google Scholar

[13] J. Qi, T. Hashimoto, G. E. Thompson, J. Carr, J. Electrochem. Soc., 163(5) (2016) 131-138.

Google Scholar

[14] J. Sun, C. Zhang, C. Zhang, R. Ding, Y. Xu, RSC Adv, 4 (2014) 50873-50881.

Google Scholar

[15] S. Chatterjee, J. D. Majumdar, S. M. Shariff, G. Padmanabham, A. R. Choudhury, Int J Adv Manuf Technol, 61 (2012) 559-567.

Google Scholar

[16] C. B. Mello, M. Ueda, R. M. Oliveira, J. A. Garcia, Surf. Coat. Technol., 205 (2011) 151-156.

Google Scholar

[17] M. Ueda, R. M. Oliveira, J. O. Rossi, C. B. Mello, Rita C. C. Rangel, M. S. Vieira, Surf. Coat. Technol. 229 (2013) 97-104.

Google Scholar

[18] B. Kagajwala, T. Hall, M. Inman, G. Cushnie, R. Taylor, Functional trivalent chromium electroplating of internal diameters, National Association for Surface Finishing Annual Conference and Trade Show 2012, 1 (2012) 46-69.

Google Scholar

[19] Z. Zhu, S. Wang, N. Qu, D. Zhu, Electrodeposition, assisted by abrasive polishing, of crack-free hard chromium with compressive stress, Philosophical Magazine Letters. 96-6 (2016) 205-211.

DOI: 10.1080/09500839.2016.1190039

Google Scholar

[20] X.L. Li, X.H. Liu, H.B. Tian, W.J. Yuan, Experimental research on hard and crack-free electrodeposited chromium coatings, Advanced Materials Research, 1044-1045 (2014) 47-52.

DOI: 10.4028/www.scientific.net/amr.1044-1045.47

Google Scholar