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2015 | 128 | 5 | 946-948
Article title

Composition and Microstructure of Surface Layers Produced by Ion Beam Assisted Deposition of Metals from a Pulsed Arc-Discharge Plasma onto Aluminum Substrates

Content
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Languages of publication
EN
Abstracts
EN
Ion beam assisted deposition of alloying metals (Zn, Cd, Zr, Cr) onto pure aluminum and aluminum alloy substrates from the plasma of a pulsed arc discharge for the purpose of materials corrosion stability was carried out. The Rutherford backscattering spectrometry, electron backscatter diffraction, scanning electron microscopy, and electron probe microanalysis methods were applied to investigate composition and microstructure of the prepared layers. It was found that the obtained layers are characterized by amorphous atomic structure and contain the atoms of deposited metal, substrate material components, as well as impurities of oxygen and carbon; their thickness was measured to be ≈ 30-100 nm.
Keywords
EN
Publisher

Year
Volume
128
Issue
5
Pages
946-948
Physical description
Dates
published
2015-11
Contributors
author
  • Belarusian State University of Technology, 13a, Sverdlov Str., 220006 Minsk, Belarus
author
  • Belarusian State University, 4, Nezavisimosti av., 220030 Minsk, Belarus
author
  • Belarusian State University of Technology, 13a, Sverdlov Str., 220006 Minsk, Belarus
author
  • Belarusian State University, 4, Nezavisimosti av., 220030 Minsk, Belarus
author
  • Lublin University of Technology, Nadbystrzycka 38a, 20-618 Lublin, Poland
References
  • [1] V.V. Poplavsky, V.G. Matys, I.M. Bely, in: 3rd Int. Congress on Radiation Physics and Chemistry of Condensed Matter, High Current Electronics and Modification of Materials with Particle Beams and Plasma Flows, Tomsk (Russia) 2012, National Research Tomsk Polytechnic University, Institute of High Current Electronics SB RAS, Abstracts, Tomsk 2012, p. 400
  • [2] V.V. Poplavsky, V.G. Matys, in: Int. Congress on Energy Fluxes and Radiation Effects, Tomsk (Russia) 2014, National Research Tomsk Polytechnic University, Institute of High Current Electronics SB RAS, Abstracts, Tomsk 2014, p. 297
  • [3] V.V. Poplavskii, T.S. Mishchenko, V.G. Matys, Techn. Phys. 55, 296 (2010), doi: 10.1134/S1063784210020222
  • [4] V.V. Poplavskii, T.S. Mishchenko, V.G. Matys, J. Surf. Invest. X-ray Synchr. Neutron Techn. 4, 576 (2010), doi: 10.1134/S1027451010040051
  • [5] V.V. Poplavskii, T.S. Stel'makh, V.G. Matys, J. Surf. Invest. X-ray Synchr. Neutron Techn. 6, 748 (2012), doi: 10.1134/S1027451012090121
Document Type
Publication order reference
Identifiers
YADDA identifier
bwmeta1.element.bwnjournal-article-appv128n535kz
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