Modification of the physicomechanical properties of metallic materials by formation of nanoscale intermetallic phases under ion implantation

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Abstract

The fundamental and technological aspects of application of nanosized intermetallic compounds as implanted layers have been considered. The existing theoretical and experimental data on the effect of ion implantation on the structural state and physicomechanical properties of surface layers of metals (nickel and titanium) have been analyzed. The common features and differences in the phase composition and distribution of the phases formed by implantation over the alloyed metal layers are demonstrated.

Original languageEnglish
Pages (from-to)1125-1128
Number of pages4
JournalBulletin of the Russian Academy of Sciences: Physics
Volume72
Issue number8
DOIs
Publication statusPublished - 25 Sep 2008

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intermetallics
ion implantation
metals
implantation
surface layers
titanium
nickel

ASJC Scopus subject areas

  • Physics and Astronomy(all)

Cite this

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abstract = "The fundamental and technological aspects of application of nanosized intermetallic compounds as implanted layers have been considered. The existing theoretical and experimental data on the effect of ion implantation on the structural state and physicomechanical properties of surface layers of metals (nickel and titanium) have been analyzed. The common features and differences in the phase composition and distribution of the phases formed by implantation over the alloyed metal layers are demonstrated.",
author = "Kurzina, {I. A.} and Bozhko, {I. A.} and Kalashnikov, {Mark Petrovich} and Sharkeev, {Yu P.} and Kozlov, {E. V.}",
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AU - Bozhko, I. A.

AU - Kalashnikov, Mark Petrovich

AU - Sharkeev, Yu P.

AU - Kozlov, E. V.

PY - 2008/9/25

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AB - The fundamental and technological aspects of application of nanosized intermetallic compounds as implanted layers have been considered. The existing theoretical and experimental data on the effect of ion implantation on the structural state and physicomechanical properties of surface layers of metals (nickel and titanium) have been analyzed. The common features and differences in the phase composition and distribution of the phases formed by implantation over the alloyed metal layers are demonstrated.

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