1. Andrievskii, R.A. and Spivak, I.I., Nitrid kremniya i materialy na ego osnove (Silicon Nitride and Related Materials), Moscow: Metallurgiya, 1984.
2. Ziegler, G., Heinrich, J., and Wotting, G., Relationships between processing, microstructure and properties of dense and reaction-bonded silicon nitride, J. Mater. Sci., 1987, vol. 22, pp. 3041–3086.
3. Nair, R.U., Vandana, S., Sandhya, S., and Jha, R.M., Temperature-dependent electromagnetic performance predictions of a hypersonic streamlined radome, Prog. Electromagn. Res., 2015, vol. 154, pp. 65–78.
4. Romashin, A.G., Gaidachuk, V.E., Karpov, Ya.S., and Rusin, M.Yu., Radioprozrachnye obtekateli letatel’nykh apparatov. Proektirovanie, konstruktsionnye materialy, tekhnologiya proizvodstva, ispytaniya. Uchebnoe posobie (Streamlined Radomes for Aircraft: Design Engineering, Structural Materials, Technological Aspects of Production, and Testing. A Learning Guide), Kharkiv: Nats. Aerokosm. Univ. “Kharkiv. Aviatsionnyi Institut,” 2003, p. 239.
5. Zhou, Y., Hyuga, H., Kusano, D., Yoshizawa, Y., Ohji, T., and Hirao, K., Development of high-thermal-conductivity silicon nitride ceramics, J. Asian Ceram. Soc., 2015, vol. 3, pp. 221–229. https://doi.org/10.1016/j.jascer.2015.03.003