• Title/Summary/Keyword: Barium Ferrite

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Magnetic and Microwave Absorbing Properties of Ti-and Co-Substituted Barium Ferrite (BaFe12-2X TiXCoXO19)

  • Han-Shin Cho;Yong-Jin Kim;Sung-Soo Kim
    • Journal of Magnetics
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    • v.4 no.2
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    • pp.65-68
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    • 1999
  • The M-type barium ferrite ($BaFe_{12}O_{19}$) is well known magnetic material to be used as a permanent magnet due to its strong uniaxial anisotropy. The substitution of nonmagnetic $Ti^{+4}$ and magnetically weak $Co+^2ion for Fe^{+3}$ to its strong uniaxial anisotropy. The substitution of nonmagnetic $Ti^{+4}$ and magnetically weak $Co+^2ion for Fe^{+3}$ sublattices reduces the uniaxial anisotropy and those compounds open a new application field of noise suppressor at high frequencies. In this study, the magnetic and microwave absorbing properties are investigated in Ti-and Co-substituted barium ferrites ($BaFe_{12-2X} Ti_XCo_XO_{19}$). The saturated magnetization decreases linearly with the substitution of Ti and Co. The rapid drop in coercive force is observed with Ti and Co substitution upto x=1.2. The magnetic permeability spectrum shows the natural magnetic resonance in the specimens with small coercive force and large attenuation of microwave is predicted in those specimens at high frequencies (above 4 GHz).

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A Study on the Manufacturing and Physical Properties of Conducting Rubber (II) -Barium ferrite System Conducting Rubber- (전도성(導電性)고무의 제조(製造) 및 물성(物性)에 관한(關)한 연구(硏究) (II) -Barium Ferrite 혼합계(混合系) 도전성(導電性)고무-)

  • Lee, Young-Man;Yun, Ju-Ho;Choi, Sei-Young
    • Elastomers and Composites
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    • v.30 no.3
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    • pp.218-228
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    • 1995
  • To make filler loaded conducting rubber which has excellent electronical and physical properties, CR and NBR were mixed with barium ferrite(BaO.6Fe2O3). From the result of this study, vulcanization characteristics shows that curve is upgraded as the filler concentration increases and CR has higher torque than NBR. In physical properties, elongation being higher, modulus comes to decrease. Tear strength gradually decrease after showing the maximum point when is in the 100phr in CR. Resilience is not good to cause the increase in filler concentration. In electrical properties, conductivity becomes low when filler concentration increase. The increase of voltage makes a conductivity grown, but the rate change is weak. The influence of temperature hardly changes on increasing temperature. The morphology and the dispersion of a conductivity filler in vulcanizates through SEM were good. The more filler concentration increases, the shorter the particle interval is.

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Synthesis and magnetic properties of copper and Ba-ferrite ferromagnetic composites by mechanical alloying (기계적합금화법에 의한 Cu-Ba ferrite 강자성 복합재료의 합성 및 자기적 성질)

  • Lee, Chung-Hyo
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.28 no.1
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    • pp.21-27
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    • 2018
  • Synthesis of ferromagnetic composite materials for the $Cu-BaFe_{12}O_{19}$ system by mechanical alloying (MA) has been investigated at room temperature. A mixture of copper and barium ferrite with a weight ratio of $Cu:BaFe_{12}O_{19}=4:1$, 3 : 2, 2 : 3 and 1 : 4 was used. It is found that $Cu-BaFe_{12}O_{19}$ composite powders in which $BaFe_{12}O_{19}$ is dispersed in copper matrix are successfully produced by mechanical alloying of $BaFe_{12}O_{19}$ with Cu for 80 min. in all composition. The change in X-ray diffraction patterns and magnetic properties reflects the details for the formation of ferromagnetic metal matrix composite of pure Cu and $BaFe_{12}O_{19}$ during mechanical alloying. Magnetization of $Cu-BaFe_{12}O_{19}$ composite powders gradually increases with increasing the amounts of barium ferrite, whereas coercive force of MA powders gradually decreases due to the refinement of barium ferrite powders with ball milling. However, it can be seen that the coercivity of $Cu-BaFe_{12}O_{19}$ MA composite powders with a weight ratio of $Cu:BaFe_{12}O_{19}=4:1$ and 3 : 2 ball-milled for 80 min. is still high value of 1400 Oe and 1450 Oe, respectively suggesting that the refinement of barium ferrite powders during ball milling process tend to be suppressed due to the ductile copper.

Barium Ferrite Media for Extremely High Density Recording Applications

  • Yang-Ki Hong;Hong-Sik Jung
    • Journal of Magnetics
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    • v.3 no.3
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    • pp.96-98
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    • 1998
  • In this paper a structurally coupled and magnetically decoupled Ba-ferrite thin film medium is proposed to evade the superparamagnetic limit and reduce media noise. The proposed medium consists of ferrimagnetic Ba-ferrite nano-grains (< 10 nm) and a non-magnetic grain boundary material. Magnetic grains are crystallographically matched with the grain boundary material. Spherical or cubic shaped Ba-ferrite particle is also proposed for above 100 Kfci particulate recording application.

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Magnetic Properties and Structure of Co-precipitated Barium Ferrite (BaM) Powders (공침법으로 합성한 바륨 페라이트(BaM) 분말의 결정구조와 자기적 성질)

  • Baek, In-Seung;Nam, In-Tak
    • Journal of the Korean Magnetics Society
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    • v.20 no.4
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    • pp.134-142
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    • 2010
  • Barium ferrite ($BaFe_{12}O_{19}$) powders were synthesized by the co-precipitation method. $Fe^{3+}:Ba^{2+}$ mole ratio was fixed 8 and relative amount of $Fe^{3+}$ and $Ba^{2+}$ was controlled. The effects of the pH (= 8, 9, 10), calcination temperature and time on the morphology, structure and magnetic properties of the barium ferrite particles are characterized using XRD, FESEM, and VSM respectively. Coercivity and magnetization value of powders were changed with calcination temperature and time, relative amount of $Fe^{3+}$ and $Ba^{2+}$ and pH. Single-phase barium ferrite was obtained when pH value was 9 in the investigated range of $Fe^{3+}:Ba^{2+}$ relative amount and secondary phases were appeared at $Fe^{3+}:Ba^{2+}$ relative amount of 14.4 : 1.8. The largest value of magnetization (65.7 emu/g) was obtained when $Fe^{3+}:Ba^{2+}$ mole ratio was 12.8 : 1.6 and calcination temperature was $900^{\circ}C$ with air calcination atmosphere. The largest value of coercivity (5280 Oe) was obtained with $O_2$ calcination atmosphere.

Conditions for the Formation of Ba-Ferrite by Hydrothermal Synthesis (수열합성에 의한 Ba-Ferrite의 형성조건)

  • 이경희;이병하;윤갑중
    • Journal of the Korean Ceramic Society
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    • v.22 no.5
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    • pp.61-65
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    • 1985
  • This stud deals with the conditions for the Formation of Ba-Ferrite by Hydrothemal synthesis Suspensions Containing either iron(III) hydroxide or hydroxide oxide and barium ians were subjected to autoclavings at various temperatures from 150 to 30$0^{\circ}C$. A ferromagnetic precipitate BaO.$6Fe_2O_3$ consisting of hexagonal plate-like particle was obtained by suitable combination of temperature and concentration of KOH

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Development of The Magnetic Abrasive Using Barium Ferrite (Ba-Ferrite를 이용한 자기 연마재 개발)

  • 김희남;송승기;정윤중;윤여권;김희원;조상원;심재환
    • Journal of the Korean Society of Safety
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    • v.18 no.2
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    • pp.46-49
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    • 2003
  • The magnetic polishing is the useful method to finish some machinery fabrications by using magnetic power. This method is one of the precision techniques and has m aim for clean technology in the transportation of the pure gas in the clean pipes. The magnetic abrasive polishing method is not so common in the field of machine that it is not known to widely. There are rarely researcher in this field because of non-effectiveness of magnetic abrasive. Therefore, in this paper we deals with the development of the magnetic abrasive with the use of Ba-Ferrite. In this development, abrasive grain WA has been made by using the min bond fabricated at low temperature. And magnetic abrasive powder was fabricated from the Ba-Ferrite which was crushed into 200 mesh. The XRD analysis result shows that only WA abrasive and Ba-Ferrite crystal peaks were detected, explaining that resin bond was not any more to contribute chemical reaction. From SEM analysis, we found that WA abrasive and Ba-Ferrite were strongly bonding with each other.

Grain Growth in Barium Ferrite II. Grain Growth in Barium Ferrite (바리움페라이트내의 입자 성장 제2보 바리움페라이트내의 입자 성장)

  • Cho, kurn;Kim, Kee-Soon
    • Journal of the Korean Ceramic Society
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    • v.12 no.3
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    • pp.18-23
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    • 1975
  • 본 연구는 다결정질 바리움 페라이트의 고상간의 반응에 있어서 입자성장기구의 규명 및 기타 유용한 자료를 얻고저 수행되었으며 아울러 첨가물의 첨가효과도 관찰하였다. 실험은 115$0^{\circ}C$부터 130$0^{\circ}C$까지 25도의 간격으로 행해졌으며 입자성장현상은 전자현미경으로 관찰되었다. 실험결과, 115$0^{\circ}C$부터 120$0^{\circ}C$까지는 식 D2-D20=Kt(D: 반응이 진행된 ttlrksgn의 입자경, D0: t=0때의 입자경, K: 반응속도)로 표현되었으며 비교적 고온에서는 증발-응축기구가 관여됨을 관찰하였다. 한편 실험적으로 구한 활성에너지는 130$\pm$20 Kcal/mole이었으며 소량의 첨가물 SiO2는 반응속도를 저하시키나 활성화 에너지에 대해서는 큰 영향을 미치지 못하였다.

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Grain Growth in Barium Ferrite I. Kinetics of the Formation of Barium Ferrite (바리움페라이트내의 입자성장 제1보 바리움페라이트의 합성반응)

  • Cho, kurn;Kim, Kee-Soon
    • Journal of the Korean Ceramic Society
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    • v.12 no.3
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    • pp.13-17
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    • 1975
  • 본 연구는 열분해반응에 의한 바리움 페라이트 합성반응 후기에 있어서의 반응기구를 규명코자 수행되었다. 실험은 등온하에 90$0^{\circ}C$부터 110$0^{\circ}C$까지 50도의 간격으로 행해졌으며, 반응량의 결정은 X-선의 회절분석법을 이용하여 기초실험에서 얻은 표준보정자료와 비교함으로서 이루어졌다. 연구실험결과 합성반응의 후기는 주로 확산기구에 의해 지배되며 실험적으로 구한 활성화에너지는 14$\pm$10Kcal/mole이었다. 그리고 반응초기는 표면반응이나 혹은 반응후기와는 다른 이온에 의한 확산에 의해 지배될 것이다.

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