Semiconductor Physics, Quantum Electronics & Optoelectronics. 2013. V. 16, N 2. P. 162-165.
DOI: https://doi.org/10.15407/spqeo16.02.162


References

1. S.S. Ordan'yan, V.I. Rumyantsev, D.D. Nesmelov, D.V. Korablev, Physicochemical basis of creating new ceramics with participation of boron-containing refractory compounds and its practical implementation. Refractories and Industrial Ceramics, 53(2), p. 108-111 (2012).
https://doi.org/10.1007/s11148-012-9473-7
 
2. I.M. Neklyudov, V.C. Krasnorutsky, V.R. Tatarinov, N.N. Belash, On the prospects of developments and production of absorbers in Ukraine. Voprosy Atomnoy Nauki i Tekhniki, no 2, p. 60-68 (2013), in Russian.
 
3. O.E. Belyaev, V.V. Shynkarenko, I.M. Totsky, V.A. Makara, Art of manufacture of radiation-resistant carbide- and boride-based composite materials using microwave treatment. Patent of Ukraine no UA 67488, 27.02.2012 (in Ukrainian).
 
4. A.Yu. Popov, I.F. Kazo, V.A. Makara, S.V. Chornobuk, Structural-phase transformations in the course of synthesizing composite materials based on titanium and hafnium carbides and borides with superdispersed carbon inclusions. Materialovedenie, no 7, p. 54-56 (2007), in Russian.
 
5. A.Yu. Popov, S.V. Chornobuk, V.A. Makara, I.M. Totsky, Effect of pores and low-module inclusions on fracture strength of a ceramic material. Deformatsiya i Razrushenie Materialov, no 4, p. 36-39 (2011), in Russian.
 
6. I.M. Totsky, I.F. Kazo, A.Yu. Popov, V.A. Makara, Microhardness distribution in two-phase composite systems. Visnyk Kyivs'kogo Universitety, Ser. Fizika i Matematika, no 2, p. 297-302 (2010), in Ukrainian.