Influence of the high-power ion-beam irradiation of a hydroxyapatite target on the properties of formed calcium phosphate coatings

Research output: Contribution to journalArticle

Abstract

The physical-mechanical of properties of biocompatible calcium phosphate coatings deposited onto titanium and silicon substrates from erosion materials, which are generated by irradiating hydroxyapatite (synthetic and natural) targets by means of the high-power pulsed ion beam of a Temp-4 accelerator, are investigated. A calculation technique for predicting the rate and energy efficiency of deposition using pulsed ion beams is proposed. Their characteristics are analyzed as applied to the formation of calcium phosphate coatings.

Original languageEnglish
Pages (from-to)952-958
Number of pages7
JournalJournal of Surface Investigation
Volume7
Issue number5
DOIs
Publication statusPublished - 1 Sep 2013

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Phosphate coatings
Calcium phosphate
Durapatite
Hydroxyapatite
Ion beams
Irradiation
Coatings
Silicon
Titanium
Particle accelerators
Energy efficiency
Erosion
Substrates
calcium phosphate

ASJC Scopus subject areas

  • Surfaces, Coatings and Films

Cite this

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abstract = "The physical-mechanical of properties of biocompatible calcium phosphate coatings deposited onto titanium and silicon substrates from erosion materials, which are generated by irradiating hydroxyapatite (synthetic and natural) targets by means of the high-power pulsed ion beam of a Temp-4 accelerator, are investigated. A calculation technique for predicting the rate and energy efficiency of deposition using pulsed ion beams is proposed. Their characteristics are analyzed as applied to the formation of calcium phosphate coatings.",
author = "Bleykher, {G. A.} and Volokitina, {T. L.} and Tverdokhlebov, {S. I.}",
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AU - Volokitina, T. L.

AU - Tverdokhlebov, S. I.

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N2 - The physical-mechanical of properties of biocompatible calcium phosphate coatings deposited onto titanium and silicon substrates from erosion materials, which are generated by irradiating hydroxyapatite (synthetic and natural) targets by means of the high-power pulsed ion beam of a Temp-4 accelerator, are investigated. A calculation technique for predicting the rate and energy efficiency of deposition using pulsed ion beams is proposed. Their characteristics are analyzed as applied to the formation of calcium phosphate coatings.

AB - The physical-mechanical of properties of biocompatible calcium phosphate coatings deposited onto titanium and silicon substrates from erosion materials, which are generated by irradiating hydroxyapatite (synthetic and natural) targets by means of the high-power pulsed ion beam of a Temp-4 accelerator, are investigated. A calculation technique for predicting the rate and energy efficiency of deposition using pulsed ion beams is proposed. Their characteristics are analyzed as applied to the formation of calcium phosphate coatings.

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