The Effects of Flux on the Microstructure and Memory Core Characteristics of Lithium Ferrites

Flux가 Lithium Ferrite의 미세구조 및 메모리코어 특성에 미치는 영향

  • 임호빈 (한국과학원 재료공학과)
  • Published : 1979.01.01

Abstract

The microstructures and memory core characteristics of substituted lithium ferrites with addition of $Bi_2O_3$, $V_2O_5$, $Nb_2O_3$, and $P_2O_5$ were investigated. The effects of composite flux on the sintering of the substituted lithium ferrites were also studied. The results show that the addition of $Bi_2O_3$, $V_2O_5$, and $Nb_2O_5$ enhances sintering whereas $Sb_2O_3$ and $P_2O_5$ inhibits it, and that the addition of $Nb_2O_5$ results in uniform grain size while the addition of $Bi_2O_3$ or $V_2O_5$ results in non-uniformity in grain size. When $P_2O_5$ was added with $V_2O_5$ or $Bi_2O_3$, however, it results in uniform grain size and improved memory core properties.

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References

  1. Magnetic properties of Materials v.205 Square-Loop Ferrites R.S. Weiss;J. Smit(ed.)
  2. IEEE Transactions on Magnetics v.MAG-5 no.4 Ferrite Memory Materials A.P. Greifer
  3. Philips Tech. Rev. v.16 no.49 Conditions for Scuare Hysteresis Loops in Ferrites H.P.J. Wijn;E.W. Gorter;C.J. Esveldt;D. Geldermans
  4. IEEE Transactions on Magnetics v.MAG-8 no.4 Memory-Core Characteristics of Cobalt Substituted Lithium Ferrite H.B. Im;D.G. Wickham
  5. U.S. Patent 3300 411 D.G. Wickham;H.B. Im
  6. Japan Kokai 7680 997 Kumada Masaharu
  7. Yogyo Kyokai Shi v.84 no.9 Effects of Vanadum Pentoxide Addition on the Magnetic Properties of Lithium-Zinc Ferrites T. Iimura
  8. Poroshkovaya Metallurgia v.8 Formation of Microstructure and Its Effects on the properties of Lithium-Containing Rectangular Hysteresis Loop Ferrites L.M. Letyuk
  9. Neorganickeskie Materialy v.12 no.11 Influence of Low-Melting Additives on Microstructure Formation and Properties of Ferrites with Rectangular Hysteresis Loops L.M. Letyuk;S.S. Gorelik;E.A. Babich;V.A. Nigontov
  10. Philips Research Reports no.SUP. 3 Crystal and Some Magnetic Properties of Mixed Metal Oxides with Spinel Structure G. Blasse
  11. Private Communication D.G. Wickham