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Abstrakty
The complex permeability ( a?r*) and permittivity ( e?r*) of radar absorbing materials (RAMs) play a key role in determining the reflection and attenuation properties of incident microwaves. Their real (a?' and e?') and imaginary (a?'' and e?'') components and relationship with microwave absorbing properties have been investigated in the frequency range 8-16 GHz for doped M-type barium hexaferrites in polychloroprene (CR) matrices. Individual and simultaneous substitutions of Fe3+ ions by Co2+, Ti4+, and Mn3+, and of Ba2+ ions by La3+ and Na+ make possible the use of these materials as RAMs, due to frequency dependence of ??* of hexaferrite, responsible for the location of its natural resonance. A double substitution of Ba2+ and Fe3+ (LaNaCoTiMn-BaHF) resulted in the best microwave absorption (99.9%) at the frequency of 15 GHz.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
245--252
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
- Instituto de Pesquisas da Marinha, Rio de Janeiro, RJ, Brazil
- Engenharia Metalúrgica da Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil
autor
- Instituto de Pesquisas da Marinha, Rio de Janeiro, RJ, Brazil
- Instituto de Macromoléculas (IMA) da Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil
autor
- Instituto de Pesquisas da Marinha, Rio de Janeiro, RJ, Brazil
autor
- Instituto de Macromoléculas (IMA) da Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil
autor
- Engenharia Metalúrgica da Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil
Bibliografia
- [1] CHO H.S., KIM S.S., IEEE Trans. Magn., 35 (1999), 3151.
- [2] MATSUMOTO M.,MIYATA Y., J. Appl. Phys., 79 (1996), 5486.
- [3] LI Y., LIU R., ZHANG Z., XIONG C., Mat. Chem. Phys., 64 (2000), 256.
- [4] LIMA R.C., PINHO M.S., GREGORI M.L., NUNES R.C.R., OGASAWARA T., Effect of different dopants on the microwave properties of M-doped barium hexaferrites, 8th Conference and Exhibition of the European Ceramic Society, Istambul, Turkey, 2003.
- [5] ZHANG H., ZHICHAO L., XI Y., Mat. Sci. Eng., B 96 (2002), 289.
- [6] GRÜNBERGER W., SPRINGMANN B., BRUSBERG M., SCHMIDT M., JAHNKE R., J. Magn. Magn. Mat., 101 (1991), 173.
- [7] PINHO M.S., GREGORI M.L., NUNES R.C.R., SOARES B.G., Eur. Polymer J., 38 (2002), 2321.
- [8] PINHO M.S., PhD. Thesis, Radar Absorbing Materials in Polychloroprene Matrices, IMA-UFRJ, Rio de Janeiro, Brasil, 2002.
- [9] NEDKOV I., PETKOV A., KARPOV V., IEEE Trans. Magn., 26 (1990), 1483.
- [10] YAMAMOTI H., KAWAGUCHI T., NAGAKURA M., IEEE Trans. Magn., 15 (1979), 1141.
- [11] BAKER-JARVIS J., JANEZIC M.D., GROSVENOR J.H., GEYER R.G., NIST Technical Note, 1355-R (1993), 4.
- [12] GUPTA S.C., AGRAWAL N., J. IETE, 39 (1993), 197.
- [13] SUÁREZ N., SÁNCHEZ J.L., DIAZ S., CUETO A., LÓPEZ G., OÑATE J., Magnetism, Magnetic Materials and their Applications, Section III (Part 2), La Habana, Cuba, 1991, pp. 21–29.
- [14] SINGH P., BABBAR V.K., RAZDAN A., SRIVASTAVA S.L., PURI R.K., Mat. Sci. Eng. B, Solid State Mat. Adv. Techn., 67 (1999), 132.
- [15] KOOPS C.G., Phys. Rev., 83 (1951), 121.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0003-0026