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The paper presents research results of multilayer systems composed of alternate Cu/Ni layers. The layers thickness obtained by the galvanic treatment was determined by using the transmission electron microscopy and X-ray diffraction method in the grazing incidence diffraction geometry. The surface morphology was observed using scanning electron microscope with EDS microanalysis. Observation of the surface topography of systems using the atomic force microscope was also carried out.
Wydawca
Czasopismo
Rocznik
Tom
Strony
2067--2073
Opis fizyczny
Bibliogr. 16 poz., fot., rys., tab., wzory
Twórcy
autor
- Silesian University of Technology, Faculty of Mechanical Engineering, Institute of Engineering Materials and Biomaterials, 18a Konarskiego Str., 44-100 Gliwice, Poland
autor
- Silesian University of Technology, Faculty of Mechanical Engineering, Institute of Engineering Materials and Biomaterials, 18a Konarskiego Str., 44-100 Gliwice, Poland
autor
- AGH University of Science and Technology, Faculty of Metals Engineering and Industrial Computer Science, Department of Physical and Powder Metallurgy, Al. Mickiewicza 30, 30-059 Kraków, Poland
autor
- AGH University of Science and Technology, Faculty of Metals Engineering and Industrial Computer Science, Department of Physical and Powder Metallurgy, Al. Mickiewicza 30, 30-059 Kraków, Poland
autor
- Silesian University of Technology, Faculty of Mechanical Engineering, Institute of Engineering Materials and Biomaterials, 18a Konarskiego Str., 44-100 Gliwice, Poland
Bibliografia
- [1] A. Zawadzka, Cienkie warstwy i nanostruktury cienkowarstwowe - eksperymentalne metody wytwarzania i badania własności, Wydawnictwo Naukowe Uniwersytetu Mikołaja Kopernika, Toruń (2016) (in Polish).
- [2] H. Kuru, H. Kockar, M. Alper, J. Magn. Magn. Mater. 444, 132-139 (2017), DOI:10.1016/j.jmmm.2017.08.019.
- [3] A. Tekgül, M. Alper, H. Kockar, M. Haciismailoglu, J. Mater. Sci.: Mater. Electron. 26, 2411-2417 (2015), DOI: 10.1007/s10854-015-2699-7.
- [4] L. Péter, K. Vad, A. Csik, R. Muñíz, L. Lobo, R. Pereiro, S. Šturm, K. Žužek Rožman, G. Molnár, K. Németh, K. Neuróhr, K. Boros, L. Pogány, I. Bakonyi, J. Electrochem. Sci. Eng. 8 (1), 49-71 (2018), DOI: http://dx.doi.org/10.5599/jese.480.
- [5] M. Spilka, A. Kania, R. Nowosielski, A. Maciej, Metalurgija 56 (3-4), 389-392 (2017).
- [6] M. Gągorowska, M. Duś-Sitek, Arch. Metall. Mater. 53 (3), 909-917 (2008).
- [7] Q. Zhou, J.Y. Xie, F. Wang, P. Huang, K.W. Xu, T.J. Lu, Acta Mech. Sin. 31 (3), 319-337 (2015), DOI:10.1007/s10409-015-0401-1.
- [8] S. Esmaili, Inter. Res. J. App. Basic Sci. 9 (11), 1937-1940 (2015).
- [9] E. Łągiewka, A. Budniok, Struktura, właściwości i metody badań materiałów otrzymanych elektrolitycznie, Wydawnictwo Uniwersytetu Śląskiego, Katowice (2010) (in Polish).
- [10] E. Wilhelms, F. Dehchar, R. Jordberg, M. Kjellberg, J. Stjärnesund, P. Söderbäck, Electrochemical deposition of multi- and single layer coatings, Uppsala Universitet, Sweden (2015).
- [11] S. J. Skrzypek, M. Witkowska, J. Kowalska, K. Chruściel, Solid State Phenom. 163, 9-12 (2010), DOI:10.4028/www.scientific.net/SSP.163.9.
- [12] S. J. Skrzypek, M. Goły, J. Kowalska, K. Chruściel, Hutnik – Wiadomości Hutnicze 79 (4), 238-246 (2012) (in Polish).
- [13] Q. Yang, L. R. Zhao, Mater. Charact. 59, 1285-1291 (2008).
- [14] B. Kucharska, E. Kulej, Arch. Metall. Mater. 55 (1), 45-51 (2010).
- [15] H. C. Barshilia, K. S. Rajam, Surf. Coat. Tech. 155, 195-202 (2002).
- [16] B. Kucharska, E. Kulej, M. Gwoździk, Arch. Metall. Mater. 57 (3), 671-677 (2012), DOI:10.2478/v10172-012-0072-x.
Uwagi
EN
This publication was financed by the Ministry of Science and Higher Education of Poland as the statutory financial grant of the Faculty of Mechanical Engineering SUT.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b0ae8f14-7965-4e52-a1cf-804a78a99a5f