Journal of Advanced Dielectrics, Volume. 15, Issue 2, 2450017(2025)

Dielectric percolation in ceramic matrix composites

A. N. Rybyanets*, N. A. Shvetsova, I. A. Shvetsov, and N. A. Kolpacheva
References(17)

[1] S. Schmidt et al. Advanced ceramic matrix composite materials for current and future propulsion technology applications. Acta Astronaut., 55, 409(2004).

[2] A. G. Evans. Perspective on the development of high-toughness ceramics. J. Am. Ceram. Soc., 73, 187(1990).

[3] B. Yang, X. M. Chen. Alumina ceramics toughened by piezoelectric secondary phase. J. Eur. Ceram. Soc., 20, 1687(2000).

[4] Y. G. Liu et al. Microstructure and mechanical properties of a lithium tantalate-dispersed-alumina ceramic composite. Ceram. Int., 28, 111(2002).

[5] V. G. Smotracov et al. Fabrication and study of the composite monocrystal — ceramics. Bull. Russ. Acad. Sci.: Phys., 64, 1220(2000).

[6] H. J. Hwang, K. Niihara. Perovskite type BaTiO3 ceramics containing particulate SiC. J. Mater. Sci., 33, 549(1998).

[7] B. Malic, M. Kosec, T. Kosmac. Mechanical and electrical properties of PZT-ZrO2 composites. Ferroelectrics, 129, 147(1992).

[8] P.-H. Xiang et al. Mechanical and electrical properties of small amount of oxides reinforced PZT ceramics. Ceram. Int., 29, 499(2003).

[9] A. N. Rybyanets, A. A. Rybyanets. Ceramic piezocomposites: Modeling, technology, and characterization. IEEE Trans. UFFC, 58, 1757(2011).

[10] S. Shrivastava et al. Ceramic matrix composites: Classifications, manufacturing, properties, and applications. Ceramics, 7, 652(2024).

[11] A. B. Rashid et al. Breaking boundaries with ceramic matrix composites: A comprehensive overview of materials, manufacturing techniques, transformative applications, recent advancements, and future prospects. Adv. Mater. Sci. Eng., 2024, 2112358(2024).

[12] K. K. Chawla, K. K. Chawla. Composite Materials, 249-292(2012).

[14] A. N. Rybyanets et al. Ceramic–Matrix piezocomposites: Microstructural features and dielectric properties. Bull. Russ. Acad. Sci.: Phys., 87, 1337(2023).

[16] J. G. Smits. Iterative method for accurate determination of the real and imaginary parts of the materials coefficients of piezoelectric ceramics. IEEE Trans. Sonics Ultrason., SU-23, 393(1976).

[17] C. Alemany et al. Automatic determination of complex of piezoelectric lossy materials in the radial mode. J. Phys. D: Appl. Phys., 28, 945(1995).

[18] A. N. Rybyanets. Porous piezoceramics: Theory, technology, and properties. IEEE Trans. UFFC, 58, 1492(2011).

Tools

Get Citation

Copy Citation Text

A. N. Rybyanets, N. A. Shvetsova, I. A. Shvetsov, N. A. Kolpacheva. Dielectric percolation in ceramic matrix composites[J]. Journal of Advanced Dielectrics, 2025, 15(2): 2450017

Download Citation

EndNote(RIS)BibTexPlain Text
Save article for my favorites
Paper Information

Category: Research Articles

Received: Apr. 26, 2024

Accepted: Jun. 17, 2024

Published Online: Feb. 18, 2025

The Author Email: Rybyanets A. N. (arybyanets@gmail.com)

DOI:10.1142/S2010135X24500176

Topics