[1]
A.L. Maistrenko. V.G. Kulich, To determine the effect of strain rate on the change in the strength of SiC ceramics, Artillery and small arms, 1 (2011) 45-53.
Google Scholar
[2]
Campbell, D.P. Waallace, Y. Katoh, Method for analyzing passive silicon carbide thermometry with a continues dilatot meter to determine irradiation temperature, Nuclear Instruments and Methods in Physics Research B, 370 (2016) 49-58.
DOI: 10.1016/j.nimb.2016.01.005
Google Scholar
[3]
R.A. Andrievski, A.V. Khatchoyan,. Nanomaterials in Extreme Environments. Springer Series in Materials Science, 1st ed, (2016).
DOI: 10.1007/978-3-319-25331-2
Google Scholar
[4]
Yu.F. Ivanov, K.V. Usaraeva, E. Gromov, The fatigue life of silumin during processing by high-intensity pulsed electronnuclear, J. Fundamental problems of materials science, 11 (2014) 281-284.
Google Scholar
[5]
Yu.F. Ivanov, O. S. Tolkachev, A. D. Interests, Modeling of thermal processes, structural and phase and properties of ceramics from zirconium dioxide, irradiated by pulsed electron beam, Russian Physics Journal, 58 (2015) 91-95.
Google Scholar
[6]
E. Ovcharenko, S.G. Psakhie, Yu.F. Ivanov, Regularities of formation and influence of multi-scale nano-sized structures on the physical properties of the surface layer of hard alloy, Russian Physics Journal, 56 (2013) 283–291.
Google Scholar
[7]
A. P. Laskovnev, Modification of structure and properties of eutectic silumin electron-ion-plasma treatment, Belarus. Navuka, Minsk, (2013).
Google Scholar
[8]
N. N. Koval, Y.F. Ivanov, Nanostructuring the surface of metal-ceramic and ceramic materials by pulsed electron-beam treatment, Russian Physics Journal, 5 (2008) 60-70.
Google Scholar
[9]
V. Rotshtein, Yu. Ivanov and A. Markov , Surface treatment of materials with low-energy high-current electron beams , in: Y. Pauleau, Charter 6 in Book Materials Surface Processing by Directed Energy Techniques, Elsever, 2006, pp.205-240.
DOI: 10.1016/b978-008044496-3/50007-1
Google Scholar
[10]
М.S. Petukevich, Y.F. Ivanov, O.L. Khasanov, E.S. Dvilis and A.A. Panina, Structural Analysis of В4С Bimodal Powder Mixture, Advanced Materials Research, 1085 (2015) 197-200.
DOI: 10.4028/www.scientific.net/amr.1085.197
Google Scholar
[11]
O.L. Khasanov, E.S. Dvilis, Z.G. Bikbaeva, V.V. Polisadova, A.O. Khasanov, М.S. Petukevich and T.V. Milovanova, Influence of Physical Properties of B4C Powder on the Strength Properties of the Ceramics Manufactured by SPS Sintering, Advanced Materials Research, 1085(2015).
DOI: 10.4028/www.scientific.net/amr.1085.312
Google Scholar
[12]
E.L. Blank, Order - disorder and polytypes in structures, Moscow State University, Moscow, (2005).
Google Scholar
[13]
S. Nakashima , H. Harima, Raman Investigation of SiC Polytypes, J. Phys. Stat. Sol. (a) 516 (2008) 3824-3830.
Google Scholar
[14]
Hui-Jun Guo, Wei Huany, A competitive lattec lattice model Monte Carlo method for simulation competitive growth of different polytypes in cloze packet crystals, J. Computational Materials Science, 100 (2015) 159-168.
DOI: 10.1016/j.commatsci.2014.11.056
Google Scholar