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纳米力学科学与技术:国际期刊
ESCI SJR: 1.031 SNIP: 1.517 CiteScore™: 0.7

ISSN 打印: 2572-4258
ISSN 在线: 2572-4266

纳米力学科学与技术:国际期刊

Formerly known as Nanomechanics Science and Technology: An International Journal

DOI: 10.1615/NanoSciTechnolIntJ.2020033829
pages 339-353

STRUCTURE FORMATION OF A COMPOSITE BASED ON NANOCARBON WITH THE ADDITION OF IRON-DOPED AMORPHOUS BORON IN CONDITIONS OF HIGH PRESSURES AND TEMPERATURES

Dmitry V. Kuis
Belarusian State Technological University, 13A Sverdlov Str., Minsk, 220006, Belarus
G. P. Okatova
Belarusian State Technological University, 13A Sverdlov Str., Minsk, 220006, Belarus
N. A. Svidunovich
Belarusian State Technological University, 13A Sverdlov Str., Minsk, 220006, Belarus
A.S. Rakavets
Belarusian State Technological University, 13A Sverdlov Str., Minsk, 220006, Belarus
Vladimir S. Urbanovich
Scientific-Practical Materials Research Center, National Academy of Sciences of Belarus, 19 P. Brovka Str., Minsk, 220072, Belarus
A. I. Sedov
A.F. Ioffe Physical-Technical Institute, Russian Academy of Sciences, St. Petersburg, Russia
S. N. Lezhnev
Rudny Industrial Institute, Rudny, Kazakhstan
E. A. Panin
Rudny Industrial Institute, Rudny, Kazakhstan

ABSTRACT

Under conditions of intense high-temperature plastic deformation with the use of extracted fuller-ene soot, a new composite based on C-B-Fe heterophase amorphous nanostructured composition with high crack resistance and elasticity was obtained in two modifications: with a highly solid carbon "phase-base"−matrix filled with reinforcing nanocrystallites of carbides and borides of Fe and carboborides and especially with solid particles of the carbon phase distributed in the matrix with an amorphized surface.

REFERENCES

  1. Arbuzov, A.A., Volodin, A.A., and Tarasov, B.P., The Synthesis and Properties of Carbon-Graphene Composites, in Fullerenes and Nanostructures in Condensed Media, Coll. Sci. Papers, Minsk: A.V. Luikov HMTI, NAS of Belarus, pp. 37-42, 2018.

  2. Chernogorova, O.P., Drozdova, E.I., Blinov, V.M., and Bul'enkov, N.A., Structure and Properties of Superelastic and Hard Carbon Particles Reinforcing Wear-Resistant Composite Materials Obtained from the Iron-Fullerene Mixture under Pressure, Nanotechnol. Russia, vol. 3, nos. 5-6, pp. 150-157, 2008.

  3. Panchenko, E.V., Skakov, Yu.A., Krimer, B.I., Arsentiev, P.P., Popov, K.V., and Tsviling, M.Ya., Laboratory of Metallography. Tutorial, Moscow: Metallurgiya Press, 1965.

  4. Urbanovich, V.S. and Shkatulo, G.G., Computerized Complex for Sintering Nanoceramics at High Pressures, Powder Metallurgy, nos. 1-2, pp. 21-27, 2003.

  5. Urbanovich, V.S., Kuis, D.V., Okatova, G.P., Svidunovich, N.A., Oychenko, V.M., and Baran, L.V., Influence of Modes of Thermobaric Treatment of Nanocarbon at High Pressure on Formation and Fine Structure of Superhard Phase, Conf. Proc., Izv. Vyssh. Ucheb. Zaved., Khim. Khim. Tekhnol., vol. 56, no. 5, pp. 31-35, 2013.


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