Influence of the plasma-immersion ion implantation of titanium on the structure, morphology, and composition of the surface layer of Zr–1Nb alloy


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Abstract

The results of investigating the plasma-immersion ion implantation of titanium into Zr–1Nb alloy from arc-discharge plasma are presented. The investigations are performed using 1.5-kV bias voltage applied to the sample by means of a coaxial plasma filter for 5, 15, and 30 min. Scanning electron and atomic-force microscopy data demonstrate that, after implantation, grains with sizes of ~50–100 nm and craters with lateral sizes varying from ~1 μm to vanishingly small values are detected on the surface. Energy-dispersive X-ray spectroscopy data indicate the formation of an oxide film under titanium implantation. It follows from X-ray diffraction analysis that implanted titanium is in the dissolved state and the crystal-lattice-parameter ratio c/a increases after ion implantation. The layer-by-layer elemental analysis of the implanted layer performed via optical emission spectroscopy is evidence that the titanium-concentration maximum is shifted to larger depths with incresing implantation duration.

About the authors

A. N. Sutygina

National Research Tomsk Polytechnic University

Author for correspondence.
Email: sutygina2013@mail.ru
Russian Federation, Tomsk, 634050

N. N. Nikitenkov

National Research Tomsk Polytechnic University

Email: sutygina2013@mail.ru
Russian Federation, Tomsk, 634050

E. B. Kashkarov

National Research Tomsk Polytechnic University

Email: sutygina2013@mail.ru
Russian Federation, Tomsk, 634050

M. S. Syrtanov

National Research Tomsk Polytechnic University

Email: sutygina2013@mail.ru
Russian Federation, Tomsk, 634050

L. Volesky

Technical University of Liberec

Email: sutygina2013@mail.ru
Czech Republic, Liberec, 46117

P. Louda

Technical University of Liberec

Email: sutygina2013@mail.ru
Czech Republic, Liberec, 46117

T. S. Priamushko

National Research Tomsk Polytechnic University

Email: sutygina2013@mail.ru
Russian Federation, Tomsk, 634050

V. S. Sypchenko

National Research Tomsk Polytechnic University

Email: sutygina2013@mail.ru
Russian Federation, Tomsk, 634050

A. Hashhash

Egyptian Atomic Energy Authority

Email: sutygina2013@mail.ru
Egypt, Cairo

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