Estimating the Dielectric Permittivity in Nonconductive Composites by the Content and Morphology of Conducting Particles in the Microwave Frequency Range

Author:

Chasnyk D. V.,Chasnyk V. I.,Kaidash O. M.

Publisher

Allerton Press

Subject

Inorganic Chemistry,General Materials Science

Reference18 articles.

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2. Bukharin, E.N., Vlasov, A.S., and Alekseev, A.A., New high-conductivity bulk microwave absorbers, Elektron. Tekh., Ser. 6: Mater., 1988, no. 6 (235), pp. 66–70.

3. Khan, A.A. and Labbe, J.C., Aluminum nitride–molybdenum ceramic matrix composites: characterization of the ceramic-metal interface, J. Eur. Ceram. Soc., 1996, vol. 16, pp. 739–744.

4. Fesenko, I.P., Prokopiv, M.M., Chasnyk, V.I., Kaidash, O.M., Oliynyk, G.S., and Kuzenkova, M.A., Alyumonitrydni funktsionalʹni materialy, oderzhani z nanodyspersnykh ta mikronnykh poroshkiv haryachym presuvannyam ta vilʹnym spikannyam (Aluminum Nitride-Based Functional Materials Produced from Nanodispersed and Micron Powders by Hot Pressing and Pressureless Sintering: Monograph), Novikov, M.V., Ed., Kyiv: Alkon, 2015.

5. Gu, J., Sang, L., Pan, B., Feng, Y., Yang, J., and Li, X., Thermal conductivity and high–frequency dielectric properties of pressureless sintered SiC–AlN multiphase ceramics, Materials, 2018, vol. 11, no. 6, p. 969.

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