Synthesis of Bi2O3- B2O3- SiO2- ZnO Glass and their Effects on the Sintering Temperature and Magnetoelectric Properties of Co / Ti Doped M-Type Barium Ferrite

作者: Wen Guo Zhong , Ying Li Liu , Yuan Xun Li , Da Ming Chen , Kai Yang

DOI: 10.4028/WWW.SCIENTIFIC.NET/MSF.687.189

关键词: CeramicSinteringFabricationScanning electron microscopeMaterials scienceBarium ferriteDopingInductorFerrite (magnet)MetallurgyComposite material

摘要: The 25%Bi2O3-30%B2O3-10%SiO2-35%ZnO (molar ratio, abbreviated as BBSZ) glass were successfully prepared by solid-phase method. amount of BBSZ varied from 1wt% to 5 wt% was optimized and its effects on the sintering behavior, structure magnetoelectric properties Co / Ti doped M-type barium ferrite investigated HP 4291B vector analysis, scanning electron microscopy (SEM) VSM magnetometer respectively. testing results show that could be well sintered at 900°C with excellent performances when 3wt% is added. initiative permeability cut-off frequency are 13.5 800MHz, respectiveley, which suggests this material a candidate for application in fabrication chip inductors technology low temperature cofired ceramics ferrites (LTCC).

参考文章(10)
C. Fredericci, H.N. Yoshimura, A.L. Molisani, H. Fellegara, Effect of TiO2 addition on the chemical durability of Bi2O3–SiO2–ZnO–B2O3 glass system Journal of Non-crystalline Solids. ,vol. 354, pp. 4777- 4785 ,(2008) , 10.1016/J.JNONCRYSOL.2008.04.026
G. Kniajer, K. Dechant, P. Apte, Low loss, low temperature cofired ceramics with higher dielectric constants for multichip modules (MCM) Proceedings 1997 International Conference on Multichip Modules. pp. 121- 127 ,(1997) , 10.1109/ICMCM.1997.581159
Sherin Thomas, Mailadil Thomas Sebastian, Effect of B2O3-Bi2O3-SiO2-ZnO glass on the sintering and microwave dielectric properties of 0.83ZnAl2O4-0.17TiO2 Materials Research Bulletin. ,vol. 43, pp. 843- 851 ,(2008) , 10.1016/J.MATERRESBULL.2007.05.015
Hsing-I Hsiang, Tai-How Chen, Electrical properties of low-temperature-fired ferrite–dielectric composites Ceramics International. ,vol. 35, pp. 2035- 2039 ,(2009) , 10.1016/J.CERAMINT.2008.11.004
G.B. Teh, N. Saravanan, D.A. Jefferson, A study of magnetoplumbite-type (M-type) cobalt–titanium-substituted barium ferrite, BaCoxTixFe12−2xO19 (x = 1–6) Materials Chemistry and Physics. ,vol. 105, pp. 253- 259 ,(2007) , 10.1016/J.MATCHEMPHYS.2007.04.054
Z. Šimša, S. Lego, R. Gerber, E. Pollert, Cation distribution in Co-Ti-substituted barium hexaferrites: a consistent model Journal of Magnetism and Magnetic Materials. ,vol. 140-144, pp. 2103- 2104 ,(1995) , 10.1016/0304-8853(94)01393-4
J.M. Williams, J. Adetunji, M. Gregori, Mössbauer spectroscopic determination of magnetic moments of Fe3+ and Co2+ in substituted barium hexaferrite, Ba(Co,Ti)xFe(12−2x)O19 Journal of Magnetism and Magnetic Materials. ,vol. 220, pp. 124- 128 ,(2000) , 10.1016/S0304-8853(00)00458-3
M. Richtarsic, J. Thornton, Characterization and optimization of LTCC for high density large area MCM's Proceedings. 1998 International Conference on Multichip Modules and High Density Packaging (Cat. No.98EX154). pp. 92- 97 ,(1998) , 10.1109/ICMCM.1998.670761
Xiaoyu Sui, M.H. Kryder, Effects of CoTi-doping on longitudinal barium ferrite thin film media IEEE Transactions on Magnetics. ,vol. 30, pp. 4044- 4046 ,(1994) , 10.1109/20.333984
Yu Rong, K.A. Zaki, M. Hageman, D. Stevens, J. Gipprich, Low-temperature cofired ceramic (LTCC) ridge waveguide bandpass chip filters international microwave symposium. ,vol. 47, pp. 2317- 2324 ,(1999) , 10.1109/22.808977