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Investigation of the structure of carbon-ceramic composite using of electron microscopy and nuclear backscattering spectrometry

  • New Methods of Treatment and Fabrication of Materials with Desired Properties
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Inorganic Materials: Applied Research Aims and scope

Abstract

The structure and composition of carbon-ceramic composite FEBUS reinforced with carbon fibers based on viscose, as well as its precursors, are studied using the methods of scanning electron microscopy with energy dispersion analysis and nuclear backscattering spectrometry of 7.5 MeV protons. It is shown that impregnation of the composite precursor with Si (up to ∼30 at %) scarcely leads to siliconizing of the reinforcing fibers. With the stoichiometry of SiC taken into account, the fraction of the carbide component in the composite reaches ∼40%; the remaining ∼60% is the carbon component.

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Correspondence to N. N. Andrianova.

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Original Russian Text © N.N. Andrianova, N.Yu. Beilina, A.M. Borisov, V.G. Vostrikov, E.S. Mashkova, D.V. Petrov, N.V. Tkachenko, D.N. Chernenko, N.M. Chernenko, 2014, published in Fizika i Khimiya Obrabotki Materialov, 2014, No. 1, pp. 62–66.

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Andrianova, N.N., Beilina, N.Y., Borisov, A.M. et al. Investigation of the structure of carbon-ceramic composite using of electron microscopy and nuclear backscattering spectrometry. Inorg. Mater. Appl. Res. 6, 255–258 (2015). https://doi.org/10.1134/S2075113315030028

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  • DOI: https://doi.org/10.1134/S2075113315030028

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