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Microstructure, magnetic and elastic properties of electrodeposited Cu+Ni nanocomposites coatings

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The paper presents systematic studies of fabrication and properties of Cu+Ni nanocomposite coatings obtained by electrodeposition technique. Special attention is paid to establish the influence of fabrication conditions and microstructure of the coating material on its magnetic and elastic properties. Design/methodology/approach: The results were obtained by applying electrochemical impedance spectroscopy (EIS, PARSTAT 2273, roughness factor), magnetization versus temperature measurements (2
Rocznik
Strony
17--26
Opis fizyczny
Bibliogr. 26 poz., rys.
Twórcy
autor
  • Institute of Physics, Silesian University, ul. Uniwersytecka 4, 40-007 Katowice, Poland
autor
  • Institute of Materials Science, Silesian University, ul. Bankowa 12, 40-007 Katowice, Poland
autor
  • Institute of Materials Science, Silesian University, ul. Bankowa 12, 40-007 Katowice, Poland
autor
  • Department of Organic Chemistry, Medical University of Silesia, ul. Jagiellońska 4, 41-200 Sosnowiec, Poland
autor
  • Institute of Materials Science, Silesian University, ul. Bankowa 12, 40-007 Katowice, Poland
Bibliografia
  • [1] M. Lekka, G. Zendron, C. Zanella, A. Lanzutti, L. Fedrizzi, P.L. Bonora, Corrosion properties of micro- and nanocomposite copper matrix coatings produced from a copper pyrophosphate bath under pulse current, Surface and Coatings Technology 205 (2011) 3438-3447.
  • [2] M. Kubisztal, J. Kubisztal, A. Chrobak, G. Haneczok, A. Budniok, J. Rasek, Elastic properties of Ni and Ni+Mo coatings electrodeposited on stainless steel substrate, Surface and Coatings Technology 202 (2008) 2292-2296.
  • [3] A. Robin, J.L. Rosa, M.B. Silva, Electrodeposition and characterization of Cu-Nb composite coatings Surface and Coatings Technology 205 (2010) 2152-2159.
  • [4] M. Musiani, Electrodeposition of composites: an expanding subject in electrochemical materials science, Electrochimica Acta 45 (2000) 3397-3402.
  • [5] Wun-Hsing Lee, Sen-Cheh Tang, Kung-Cheng Chung, Effects of direct current and pulse-plating on the codeposition of nickel and nanometer diamond powder, Surface and Coating Technology 120-121 (1999) 607-611.
  • [6] J. Steinach, H. Ferkel, Nanostructured Ni-Al2O3 films prepared by DC and pulsed DC electroplating, Scripta Materialia 44 (2001) 1813-1816.
  • [7] H. Chiriac, A.E. Moga, C. Gherasim, N. Lupu, Synthesis and Characterization of Fe-W and Ni-W Composite Coatings, Romanian Journal of Information Science and Technology 11 (2008) 123-132.
  • [8] A. Chrobak, A. Kaleta, P. Kwapuliński, M. Kubisztal, G. Haneczok, Magnetic shielding effectiveness of iron-based amorphous alloys and nanocrystalline composites, Proceedings of the International Conference on Soft Magnetic Materials, SMM20, IEEE Transactions on Magnetics, Kos, 2011.
  • [9] M. Kubisztal, A. Chrobak, G. Haneczok, Non-destructive method of determination of elastic properties and adhesion coefficient of different coating materials, Journal of Achievements in Materials and Manufacturing Engineering 43/2 (2010) 634-643.
  • [10] M. Kubisztal, J. Kubisztal, A. Chrobak, G. Haneczok, Young’s modulus and adhesion coefficient of amorphous Ni-P coatings on a metal substrate, Journal of Adhesion Science and Technology 21 (2007) 1009-1019.
  • [11] M. Kubisztal, G. Haneczok, A. Chrobak, B. Rams, D. Miara, J. Rasek, Elastic properties of epoxy system coatings on aluminum substrate, Surface and Coatings Technology 204 (2009) 120-124.
  • [12] A. Chrobak, M. Kubisztal, J. Kubisztal, G. Haneczok, Adhesion coefficient and elastic properties of composite coatings on metallic substrate, Surface and Coatings Technology 204 (2010) 2077-2080.
  • [13] A. Chrobak, B. Kotur, T. Mika, G. Haneczok, Effect of Gd and Fe doping on magnetic properties of Al87Y5Ni8 amorphous alloy, Journal of Magnetism and Magnetic Materials 321 (2009) 2767-2771.
  • [14] A. Chrobak, A. Bajorek, G. Chełkowska, G. Haneczok, M. Kwiecień, Magnetic properties and magnetocaloric effect of Gd(Ni1-xFex)3 crystalline compound and powder Physica Status Solidi A 206 (2009) 731-737.
  • [15] Xiaochun Li, Zhiwei Li, Nano-sized Si3N4 reinforced NiFe nanocomposites by electroplating, Materials Science and Engineering A 358 (2003) 107-113.
  • [16] Luisa Peraldo Bicelli, Benedetto Bozzini, Claudio Mele, Lucia D'Urzo, Corrosion Behavior of Titanium and Nickel-based Alloys in HCl and HCl + H2S Environments, International Journal of Electrochemical Science 3 (2008) 356-408.
  • [17] Qiuyuan Feng, Tingju Li, Zhongtao Zhang, Jian Zhang, Mei Liu Junze Jin, Preparation of nanostructured Ni/Al2O3 composite coatings in high magnetic field, Surface and Coating Technology 201 (2007) 6247-6252.
  • [18] D. Thieming, R. Lange, A. Bund, Influence of pulse plating parameters on the electrocodeposition of matrix metal nanocomposites, Electrochimica Acta 52 (2007) 7362-7371.
  • [19] C.T.J. Low, R.G.A. Wills, F.C. Walsh, Electrodeposition of composite coatings containing nanoparticles in a metal deposit, Surface and Coating Technology 201 (2006) 371-383.
  • [20] J.P. Celis, J.R. Roos, C. Buelens, J. Fransaer, Mechanism of electrolytic composite plating: survey and trends, Transactions of the Institute of Metal Finishing 69 (1991) 133-139.
  • [21] J. Kubisztal, A. Budniok, A. Lasia, Study of the hydrogen evolution reaction on nickel-based composite coatings containing molybdenum powder, International Journal of Hydrogen Energy 32 (2007) 1211-1218.
  • [22] J. Kubisztal, A. Budniok, Study of the oxygen evolution reaction on nickel-based composite coatings in alkaline media, International Journal of Hydrogen Energy 33 (2008) 4488-4494.
  • [23] Q. Su, S.Z. Hua, M. Wuttig, Nondestructive dynamic evaluation of thin NiTi film adhesion, Journal of Adhesion Science and Technology 8 (1994) 625-633.
  • [24] R.K. Shervedani, A. Lasia, Studies of the hydrogen Evolution Reaction on Ni-P electrodes, Journal of the Electrochemical Society 144 (1997) 3214-3219.
  • [25] F. Wen, C. Xie, S. Cai, Y. Gui, Electrochemical behaviour of copper/LDPE composites in the simulated uterine solution, Electrochimica Acta 51 (2006) 5606-5611.
  • [26] I. Gurrappa, L. Binder, Electrodeposition of nanostructured coatings and their characterization a review, Science and Technology of Advanced Materials 9 (2008) 043001.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2702ffce-6619-4fa6-8b90-47ff3ec32642
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