Structural-Phase Changes of Graphite during Mechanochemical Treatment

Author:

Chaika Victoriia A.1,Savin V.V.1,Savina L.A.1,Osadchy A. V.2,Zherebcov I.S.1

Affiliation:

1. Immanuel Kant Baltic Federal University

2. Russian Academy of Sciences

Abstract

Studied the structure and phase changes in graphite MPG-7 depending on time of mechanochemical treatment (MCT) in high-speed ball mill at different rotation frequencies. The formation of the carbon material with amorphous and diamond-like component shows. Note the spontaneous combustion of the carbon powder after 8 hours of the MCT at 1500 rpm.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference7 articles.

1. Maxim Polikarpov,* Hermann Emerich, Nataliya Klimova, Irina Snigireva, Valeriy Savin, and Anatoly Snigirev, Spectral X-Ray Glitches in Monocrystalline Diamond Refractive Lenses, - J.Phys. Status Solidi B (2017), 00, 1700229 (1 of 7).

2. Osadchy, A.V., Obraztsova, E.D., Savin, V.V., Svirko, Y.P., Computer simulation of edge-terminated carbon nanoribbons, Bulletin of the Lebedev Physics Institute, 44 (5), (2017) 151-153.

3. Прокофьев М.В., Смольникова О.Н., Бибиков С.Б., Кузнецов А.М. Влияние условий термообработки на структуру и свойства покрытий, полученных из коллоидно-графитовых дисперсий. Вестник МАИ. 2010. Т.17. №2. С.78-86.

4. Молодец А.М., Голышев А.А, Емельянов А.Н., Шульга Ю.М., Фортов В.Е. Cкачок электропроводности ударно-сжатого стеклоуглерода. Письма в ЖЭТФ. 2014.- Том 99, вып.4, с.263 –267.

5. A.C. Ferrari and J. Robertson. Resonant Raman spectroscopy of disordered, amorphous, and diamondlike carbon. Physical Review B, V. 64.075414.

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