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Structure and Strength of Iron-Copper-Carbon Nanotube Nanocomposites

Identifieur interne : 000435 ( Ncbi/Merge ); précédent : 000434; suivant : 000436

Structure and Strength of Iron-Copper-Carbon Nanotube Nanocomposites

Auteurs : Oleh Boshko [Ukraine] ; Mykola Dashevskyi [Ukraine] ; Olga Mykhaliuk [Ukraine] ; Kateryna Ivanenko [Ukraine] ; Smail Hamamda [Algérie] ; Sergiy Revo [Ukraine]

Source :

RBID : PMC:4747918

Abstract

Nanocomposite materials of the Fe-Cu system with/without small addition of carbon nanotubes have been synthesized by mechanochemical activation of elemental Fe and Cu powders in a high-energy planetary ball mill and have been examined by the X-ray diffraction method, SEM and the thermopower methods; the tensile strength of the materials obtained has been estimated. The metastable (Fe, Cu) supersaturated solid solution is formed in the Fe-Cu nanocomposites during milling process. The coherent scattering block size of the materials obtained is decreased with increase of milling time. The duration of mechanochemical activation affects the physical properties of nanocomposites studied. Addition of a small amount of nanotubes into Fe-Cu charge results in a significant increase of strength of the Fe-Cu (4:1) + CNT nanocomposite materials (NCMs) obtained.


Url:
DOI: 10.1186/s11671-016-1298-8
PubMed: 26858160
PubMed Central: 4747918

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<given-names>Oleh</given-names>
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<given-names>Kateryna</given-names>
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<surname>Hamamda</surname>
<given-names>Smail</given-names>
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Taras Shevchenko National University of Kyiv, 64/13, Volodymyrska Street, 01601 Kyiv, Ukraine</aff>
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Laboratory of Thermodynamics and Surface Treatment of Materials, University of Frères Mentouri Constantine 1, B.P. 325 Route Ain El Bey, Constantine, 25017 Algeria</aff>
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<month>11</month>
<year>2015</year>
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<month>2</month>
<year>2016</year>
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<copyright-statement>© Boshko et al. 2016</copyright-statement>
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<bold>Open Access</bold>
This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (
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<p>Nanocomposite materials of the Fe-Cu system with/without small addition of carbon nanotubes have been synthesized by mechanochemical activation of elemental Fe and Cu powders in a high-energy planetary ball mill and have been examined by the X-ray diffraction method, SEM and the thermopower methods; the tensile strength of the materials obtained has been estimated. The metastable (Fe, Cu) supersaturated solid solution is formed in the Fe-Cu nanocomposites during milling process. The coherent scattering block size of the materials obtained is decreased with increase of milling time. The duration of mechanochemical activation affects the physical properties of nanocomposites studied. Addition of a small amount of nanotubes into Fe-Cu charge results in a significant increase of strength of the Fe-Cu (4:1) + CNT nanocomposite materials (NCMs) obtained.</p>
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<title>Keywords</title>
<kwd>Composite materials</kwd>
<kwd>Powder metallurgy</kwd>
<kwd>Crystal structure</kwd>
<kwd>X-ray diffraction</kwd>
<kwd>Thermopower</kwd>
<kwd>Tensile strength</kwd>
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