Effect of the thermal treatment on the phase composition of the surface of coatings based on Si–B–ZrB2 and modified with ZrO2 fibers

Author:

Ban’kovskaya I. B.,Polyakova I. G.,Kolovertnov D. V.,Ul’yanova T. M.

Publisher

Pleiades Publishing Ltd

Subject

Materials Chemistry,Condensed Matter Physics,Ceramics and Composites

Reference5 articles.

1. Ulyanova, T.M. and Krut’ko, N.P., Nanoparticle formation in the synthesis of nanostructured fibers and powders of refractory oxides, Int. J. Nanotechnol., 2006, vol. 3, no. 1, pp. 47–56.

2. Ulyanova, T.M., Vitiaz, P.A., Krut’ko, N.P., Titova, L.V., Medichenko, S.V., and Shevchonok, A.A., Nanostructured ZrO2(Y2O3)—Al2O3 fibrous powders for composite materials, in Proceedings of the PM2010 World Congress on Nanotechnology, Florence, Italy, October 11–14, 2010, Vol. 2, Manuscript no. 421, pp. 11–14.

3. Ban’kovskaya, I.B., Kolovertnov, D.V., and Vasil’eva, I.A., A producing method of protective coating and the charge composition of protective coating, RFPatent no. 2471751, Byull. Izobret., 2013, no.1.

4. Ban’kovskaya, I.B., Vasil’eva, I.A., and Kolovertnov, D.V., Oxidation processes in a silicon-boron-zirconium boride composite in temperature range 1000–1300°C, Glass Phys. Chem., 2012, vol. 38, no. 3, pp. 327–331.

5. Ban’kovskaya, I.B., Semov, M.P., Lapshin, A.E., and Kostyreva, T.G., Nanotechnology for encapsulaing zirconium boride upon formation of heat-resistant coatings, Glass Phys. Chem., 2005, vol. 31, no. 4, pp. 433–438.

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