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Articles

Tribological Behavior of Electrodeposited Ni-Fe Multilayer Coating

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Pages 923-931 | Received 08 Jan 2016, Accepted 26 Aug 2016, Published online: 17 Nov 2016

References

  • Ullal, Y. and Hegde, A. C. (2014), “Electrodeposition and Electro-Catalytic Study of Nanocrystalline Ni-Fe Alloy,” International Journal of Hydrogen Energy, 39(20), pp 10485–10492.
  • Tabakovic, I., Gong, J., Riemer, S., and Kautzky, M. (2014), “Influence of Surface Roughness and Current Efficiency on Composition Gradients of Thin NiFe Films Obtained by Electrodeposition,” Journal of the Electrochemical Society, 162(3), pp D102–D108.
  • Torabinejad, V., Rouhaghdam, A. S., Aliofkhazraei, M., and Allahyarzadeh, M. (2016), “Electrodeposition of Ni-Fe and Ni-Fe-(Nano Al2O3) Multilayer Coatings,” Journal of Alloys and Compounds, 657, pp 526–536.
  • Etminanfar, M. R. and Heydarzadeh Sohi, M. (2012), “Corrosion Resistance of Multilayer Coatings of Nanolayered Cr/Ni Electrodeposited from Cr(III)-Ni(II) Bath,” Thin Solid Films, 520(16), pp 5322–5327.
  • Liang, Y., Li, Y.-S., Yu, Q.-Y., Zhang, Y.-X., Zhao, W.-j., and Zeng, Z.-X. (2015), “Structure and Wear Resistance of High Hardness Ni-B Coatings as Alternative for Cr Coatings,” Surface and Coatings Technology, 264, pp 80–86.
  • Sharma, A., Bhattacharya, S., Das, S., and Das, K. (2014), “A Study on the Effect of Pulse Electrodeposition Parameters on the Morphology of Pure Tin Coatings,” Metallurgical and Materials Transactions A, 45(10), pp 4610–4622.
  • Hattori, T., Kaneko, Y., and Hashimoto, S. (2008), “Wear-Induced Microstructure in Ni/Cu Nano-Multilayers,” Journal of Materials Science, 43(11), pp 3923–3930.
  • Rahsepar, M. and Bahrololoom, M. E. (2009), “Corrosion Study of Ni/Zn Compositionally Modulated Multilayer Coatings Using Electrochemical Impedance Spectroscopy,” Corrosion Science, 51(11), pp 2537–2543.
  • Lari Baghal, S. M., Heydarzadeh Sohi, M., and Amadeh, A. (2012), “A Functionally Gradient Nano-Ni-Co/SiC Composite Coating on Aluminum and Its Tribological Properties,” Surface and Coatings Technology, 206(19–20), pp 4032–4039.
  • Kurmanaeva, L., McCrea, J., Jian, J., Fiebig, J., Wang, H., Mukherjee, A. K., and Lavernia, E. J. (2016), “Influence of Layer Thickness on Mechanical Properties of Multilayered NiFe Samples Processed by Electrodeposition,” Materials & Design, 90, pp 389–395.
  • Starosta, R. and Zielinski, A. (2004), “Effect of Chemical Composition on Corrosion and Wear Behaviour of the Composite Ni-Fe-Al2O3 Coatings,” Journal of Materials Processing Technology, 157–158, pp 434–441.
  • Djokić, S. S. and Maksimović, M. D. (1992), Electrodeposition of Nickel–Iron Alloys, in J.O'M. Bockris (Ed.), Modern Aspects of Electrochemistry, vol. 22, New York, NY: Plenum Press, p. 417.
  • Ma, L., Zhang, L., Li, X.-b., Li, Z.-y., and Zhou, K.-c. (2015), “Fabrication and Characterization of Electrodeposited Nanocrystalline Ni-Fe Alloys for NiFe2O4 Spinel Coatings,” Transactions of Nonferrous Metals Society of China, 25(1), pp 146–153.
  • Sanaty-Zadeh, A., Raeissi, K., and Saidi, A. (2009), “Properties of Nanocrystalline Iron–Nickel Alloys Fabricated by Galvano-Static Electrodeposition,” Journal of Alloys and Compounds, 485(1–2), pp 402–407.
  • Buchheit, T. E., Goods, S. H., Kotula, P. G., and Hlava, P. F. (2006), “Electrodeposited 80Ni-20Fe (Permalloy) as a Structural Material for High Aspect Ratio Microfabrication,” Materials Science and Engineering: A, 432(1–2), pp 149–157.
  • Hou, K.-H., Han, T., Sheu, H.-H., and Ger, M.-D. (2014), “Preparation and Wear Resistance of Electrodeposited Ni-W/Diamond Composite Coatings,” Applied Surface Science, 308, pp 372–379.
  • Sharma, A., Bhattacharya, S., Das, S., and Das, K. (2015), “Fabrication of Sn Nanostructures by Template Assisted Pulse Electrodeposition,” Surface Engineering, 32 (5), pp 378–384.
  • Chung, C. K. and Chang, W. T. (2009), “Effect of Pulse Frequency and Current Density on Anomalous Composition and Nanomechanical Property of Electrodeposited Ni-Co Films,” Thin Solid Films, 517(17), pp 4800–4804.
  • Lajevardi, S. A., Shahrabi, T., and Szpunar, J. A. (2013), “Synthesis of Functionally Graded nano Al2O3-Ni Composite Coating by Pulse Electrodeposition,” Applied Surface Science, 279, pp 180–188.
  • Bahrololoom, M. E. and Sani, R. (2005), “The Influence of Pulse Plating Parameters on the Hardness and Wear Resistance of Nickel–Alumina Composite Coatings,” Surface and Coatings Technology, 192(2–3), pp 154–163.
  • Pradhan, A. K. and Das, S. (2014), “Pulse-Reverse Electrodeposition of Cu-SiC Nanocomposite Coating: Effect of Concentration of SiC in the Electrolyte,” Journal of Alloys and Compounds, 590, pp 294–302.
  • Ebrahimi, F. and Li, H. (2003), “Structure and Properties of Electrodeposited Nanocrystalline FCC Ni-Fe Alloys,” Reviews on Advanced Materials Science, 5(2), pp 134–138.
  • Straffelini, G. and Molinari, A. (1999), “Dry Sliding Wear of Ti-6Al-4V Alloy as Influenced by the Counterface and Sliding Conditions,” Wear, 236(1–2), pp 328–338.
  • Suh, N. P. (1973), “The Delamination Theory of Wear,” Wear, 25(1), pp 111–124.
  • Li, H. and Ebrahimi, F. (2006), “Tensile Behavior of a Nanocrystalline Ni-Fe Alloy,” Acta Materialia, 54(10), pp 2877–2886.
  • Shrestha, N. K., Masuko, M., and Saji, T. (2003), “Composite Plating of Ni/SiC Using Azo-Cationic Surfactants and Wear Resistance of Coatings,” Wear, 254(5–6), pp 555–564.
  • Ramezanalizadeh, H., Emamy, M., and Shokouhimehr, M. (2015), “Wear Behavior of Al/CMA-Type Al3Mg2 Nanocomposites Fabricated by Mechanical Milling and Hot Extrusion,” Tribology Transactions, 59 (2), pp 219–228.
  • Wasekar, N. P., Haridoss, P., Seshadri, S. K., and Sundararajan, G. (2012), “Sliding Wear Behavior of Nanocrystalline Nickel Coatings: Influence of Grain Size,” Wear, 296(1–2), pp 536–546.
  • Shafiei, M. and Alpas, A. (2008), “Effect of Sliding Speed on Friction and Wear Behaviour of Nanocrystalline Nickel Tested in an Argon Atmosphere,” Wear, 265(3), pp 429–438.
  • Farrokhzad, M. A., Saha, G. C., and Khan, T. I. (2014), “Three-Body Wear Performance of Co-Electrodeposited Cermet Coatings,” Wear, 313(1–2), pp 34–42.

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