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Characterization of Cr-P-C/MoS2 composite plating electro-deposited from trivalent chromium  

Park, Jong-Kyu (School of Materials Science and Engineering, Inha University)
Seo, Sun-Kyo (T&C Co., Ltd.)
Byoun, Young-Min (Metal & Machinery Team, Korea Conformity Laboratories (KCL))
Lee, Chi-Hwan (School of Materials Science and Engineering, Inha University)
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Abstract
Chromium plating is a common surface treatment technique extensively applied in industry due its excellent properties which include substantial hardness, abrasion resistance, corrosion resistance, surface color, and luster. In this study, the effect of $MoS_2$ particles of the composite coating was investigated. To improve the lubrication of mold, $Cr-P-C/MoS_2$ composite plating was studied by varying the $MoS_2$ content. The current efficiency of the composite plating incorporated $MoS_2$ particles was increased at $MoS_2$ contents of 0.5 and 1.0 g/l due to the incorporation of fine particles. On the other hand, when the content of $MoS_2$ is 1.0 g/l or more, the current efficiency is lowered due to an increase in impact on the cathode surface. In order to evaluate the mechanical properties of Scratch test were conducted. Scratch test confirmed the lubricity and abrasion resistance characteristics revealed that the composite plating with added $MoS_2$ had relatively low surface roughness and uniform surface modification to improve its properties.
Keywords
$Cr-P-C/MoS_2$; Composite plating; Electro-deposition; Abrasion resistance; Trivalent chromium;
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1 A. Liang, L. Ni, Q. Liu and J. Zhang, Surf. Coat. Technol. 218 (2013) 23-29.   DOI
2 X. He, Q. Zhu, B. Hou, C. Li, Y. Jiang, C. Zhang and L. Wu, Surf. Coat. Technol. 262 (2015) 148-153.   DOI
3 H. Ramezani-Varzaneh, S. Allahkaram and M. Isakhani-Zakaria, Surf. Coat. Technol. 244 (2014) 158-165.   DOI
4 T. Hardand, A. Watson, Met. Finish. 98 (2000) 388-399.   DOI
5 Z.F. Zhang, G. He, J. Eckert, L. Schultz, Phys. Rev. Lett. 91[4] (2003) 045505.   DOI
6 P.U. Skeldon, H.W. Wang, G.E. Thompson, Wear 206 (1997) 187-196.   DOI
7 J. Steinbach, H. Ferkel, Scr. Mater. 44[8-9] (2001) 1813-1816.   DOI
8 S.L. Kuoa, Y.C. Chen, M.D. Ger, W.H. Hwu, Mater. Chem. Phys. 86[1] (2004) 5-10.   DOI
9 M.C. Choua, M.D. Ger, S.T. Ke, Y.R. Huang, S.T. Wu, Mater. Chem. Phys. 92[1] (2005) 146-151.   DOI
10 G. Veloso, H.R. Alves, J.R.T. Branco, Mater. Res. 7[1] (2004) 195-202.   DOI
11 H. Ataee-Esfahani, M.R. Vaezi, L. Nikzad, B. Yazdani, S.K. Sadrnezhaad , J. Alloys. Compd. 484[1-2] (2009) 540-544.   DOI
12 C.T.J. Low, R.G.A. Wills, F.C. Walsh, Surf. Coat. Technol. 201[2] (2006) 371-383.   DOI
13 P. van Essen, R. Hoy, J.D. Kamminga, A.P. Ehiasarian, G.C.A.M. Janssen, Surf. Coat. Technol. 200[11] (2006) 3496-3502.   DOI
14 J. Takadoum, H.H. Bennani, Surf. Coat. Technol. 96[2-3] (1997) 272-282.   DOI