• 제목/요약/키워드: Sr Ferrite

검색결과 115건 처리시간 0.028초

자기 연마재에 관한 연구 (A Study on Magnetic Abrasive)

  • 김희남
    • 동굴
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    • 제81호
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    • pp.1-5
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    • 2007
  • 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 an 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 feilld because of non-effectiveness of magnetic abrasive. Therefore, in this paper we deals with the development of the magnetic abrasive with the fse of Sr-Ferrite. In this development, abrasive grain A has been made by using the resin bond fabricated at low temperature. And magnetic abrasive powder was fabricated from the Sr-Ferrite which was crushed into 200 mesh. The XRD analysis result shows that only A abrasive and Sr-Ferrite crystal peaks were detected, explaining that resin bond was not any more to contribute chemical reaction. From SEM analysis, we found that A abrasive and Sr-Ferrite were strongly bonding with each other.

자기 연마재에 관한 연구 (A Study on Magnetic Abrasive)

  • 김희남
    • Design & Manufacturing
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    • 제2권4호
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    • pp.44-47
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    • 2008
  • 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 an 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 Sr-Ferrite. In this development, abrasive grain A has been made by using the resin bond fabricated at low temperature. And magnetic abrasive powder was fabricated from the Sr-Ferrite which was crushed into 200 mesh. The XRD analysis result shows that only A abrasive and Sr-Ferrite crystal peaks were detected, explaining that resin bond was not any more to contribute chemical reaction. From SEM analysis, we found that A abrasive and Sr-Ferrite were strongly bonding with each other.

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염을 이용한 Sr 페라이트의 분말합성과 그의 자성특성 (Synthesis of Sr-Ferrite by a Molten Salt Flux and Its Magnetic Properties)

  • 김정식;김시동
    • 한국세라믹학회지
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    • 제42권10호
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    • pp.672-677
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    • 2005
  • In this study we prepared the Sr-ferrite powders and magnet by a molten salt method using the (NaCl+KCl) salt mixture. Starting materials of $Fe_{2}$$O_{3}$ and Sr$Co_{3}$ were mixed as the molar ratio of 5.70:1, and 0.08 mol$ \% $ $Al_{2}$$O_{3}$, 0.10 mo1$ \% $ Si$O_{2}$ and 0.12 mo1$ \% $ CaO were added as additives. Sr-ferrite powders synthesized at the reaction temperatures of 800$\∼$1200$ ^{\circ}C $ showed the typical M-type hexagonal ferrite phase, and hexagonal plate-like morphology with uniform distribution of 1$\∼$3 $\mu$m particle size. The bulk density of the sintered Sr-ferrite magnet prepared with powders by the molten salt method showed the maximum density of 4.82 g/$cm^{3}$ at the sintering temperature of 1200$^{\circ}C $. The maxima of remanent flux density (Br, 45 emu/g) and coercive force (iHc, 3.75 kOe) occurred at the sintering temperatures of 1150$ ^{\circ}C$ and 1200$^{\circ}C $.

분말사출성형체에서 Sr-페라이트 자성분말의 배향도에 미치는 첨가제의 영향 (Effect of Additives on the Orientation of Magnetic Sr-Ferrite Powders in Powder Injection Molded Compacts)

  • 조태식;정원용
    • 폴리머
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    • 제25권2호
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    • pp.240-245
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    • 2001
  • 다극 이방성 Sr-페라이트 소결자석을 제조하기 위한 자장중 분말사출성형공정에서 Sr-페라이트 자성분말의 배향도에 미치는 결합제의 첨가제 영향이 연구되었다 외부자기장의 방향에 대한 Sr-페라이트 자성분말의 배향도는 첨가제의 종류, 사출성형온도와 관련한 사출성형체의 유동성과 외부자기장의 세기에 크게 의존하였다. Paraffin wax/carnauba wax/HDPE 3성분계 결합제에 stearic acid를 첨가하면 분말사출성형체의 유동성이 향상되어 Sr-페라이트 자성분말의 배향도가 증가되었으나, silane계 커플링제를 첨가하면 성형체의 유동성이 오히려 감소되어 Sr-페라이트의 배향도가 감소되었다. 80% 이상의 Sr-페라이트 자성분말의 배향도는 사출성형체의 겉보기점도가 2500 poise (1000sec$^{-1}$)이하이고 외부자기장의 세기가 4kOe 이상인 유용한 조건에서 얻어졌다.

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고품위 페라이트 본드자석 제조에 관한 연구 (A Study on the Fabrication for High Quality Ferrite Plastic Magnets)

  • 신용진;문형욱;진성빈;정왕일
    • E2M - 전기 전자와 첨단 소재
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    • 제10권5호
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    • pp.440-446
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    • 1997
  • This research has been performed for the fabrication of high quality ferrite plastic magnet. The magnetic properties of S $r_{5.9}$F $e_2$ $O_3$ ferrite bonded magnets by injection moulding with a variety of applied magnetic field were investigated. 0.3wt% CaCO3, 0.2wt% $SiO_2$, 0.5wt% $Al_2$ $O_3$and 0.5wt% N $a_2$ $SiO_3$are added in order to improve the magnetic properties of Sr-ferrite plastic magnets during the powder fabrication. For carbon coating on chemical compound specimen, 5wt% polyvinyl alcohol is added, and then calcinated under $N_2$ environment of 12$25^{\circ}C$. The particle size is distributed from 0.9~1.2${\mu}{\textrm}{m}$ which approximates to the single domain. The obtained Sr ferrite powder is well mixed with silane coupling and calcium stearate of 1wt%. Nest, the specimen is pelleted after kneading each of them with polyamidel2 as a binder. When the temperature of injection and mould were 25$0^{\circ}C$ and 8$0^{\circ}C$ respectively at injection pressure of 200kgf/$\textrm{cm}^2$, the degree of orientation was 85.3% under the applied magnetic field of 12kOe. As the results, when the packing density of Sr ferrite powder was 90wt%, the magnetic properties of Sr ferrite bonded magnet were follows : $_{B}$ $H_{c}$=2.41kOe, Br=3.1kG, (BH)$_{max}$=2.21MgOe. Especially, the Sr-ferrite bonded magnet with 10wt% N $d_2$F $e_{14}$B additive were as follows : $_{B}$ $H_{c}$=2.57kOe, Br=3.14kG and (BH)$_{max}$=2.39MGOe.GOe.GOe.GOe.e.

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이방성 Sr-페라이트/ 레진본드 영구자석에서 Sr-페라이트 자성분말의 방향성 (The alignment of Sr-ferrite magnetic powder in anisotropic Sr-ferrite/resin-bonded magnets)

  • 정원용;조태식;문탁진
    • 한국자기학회지
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    • 제4권3호
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    • pp.219-225
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    • 1994
  • 이방성 Sr-페라이트/레진본드 영구자석에서 외부자장과 성형체의 유동성이 Sr-페라이트 자성분말의 방향성에 어떤 영향을 미치는지 조사하였다. 이방성 Sr-페라이트 자성분말의 방향성은 외부자장의 세기와 충전율과 성형온도의 함수인 유동성에 따라 변화하였다. 자성분말의 방향성은, 자성분말의 충전율이 56vol%이고 $1000sec^{-1}$의 전단속도에서 성형체의 겉보기점도가 약 3000 poise 이하인 성형온도에서 5 kOe 이상의 자장을 가해주었을때, 본 실험에서 얻을 수 있는 최대값을 나타내었다. 이러한 조건에서 직류자기이력곡선으로부터 측정된 Sr-페라이트 자성분말의 방향성은 배향도가 84~85%(0.84~0.85)이었다. 이 결과는 ${23~40}^0$ 범위의 $2{\theta}$에서 X-선 회절분석 결과인 0.85의 방향계수와 일치하였다. 이러한 Sr-페라이트 자성분말의 방향성에서 이방성 레진본드 영구자석은 잔류자 속밀도가 2.2kG, 최대자기에너지적이 2.2 MGOe인 자기특성을 나타내었다.

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THE ALIGNMENT OF SR-FERRITE POWDERS AND MAGNETIC PROPERTIES IN FABRICATION OF MULTI-POLE ANISOTROPIC SINTERED SR-FERRITES BY POWDER INJECTION MOLDING

  • Cho, T.S.;Park, B.S.;Jeung, W.Y.;Moon, T.J.
    • 한국자기학회지
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    • 제5권5호
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    • pp.740-744
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    • 1995
  • For the fabrication of a multi-pole anisotropic Sr-ferrite magnet by powder injection molding, it is important to control effectively the alignment of magnetic powders during the injection molding process. The effect of the fluidity of powder/binder mixture on the powder alignment was studied with changing the particle sizes and the volume fraction of Sr-ferrite magnetic powders. The critical volume fraction of Sr-ferrite powders increases from 58 vol.% to 64 vol.% as the mean powder size increases from $0.8\;\mu\textrm{m}$ to $1.2\;\mu\textrm{m}$. A Sr-ferrite powder alignment greater than 80 % is achieved at the conditions of an apparent viscosity lower than 1000 poise at $1600\;sec^{-1}$ shear rate, an applied magnetic field higher than 4 kOe, and a powder volume fraction 8 vol.% lower than the critical fraction. The powder alignment obtained during the injection molding process is not much affected by the subsequent processes of debinding and sintering, showing the magnetic properties of 3.8 kG of remanent flux density and 3.37 kOe of intrinsic coercivity.

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등방성 Sr-페라이트 과립을 이용한 새로운 자성도자기 소지 (New Magnetic Porcelain Mmaterials using Isotropic Sr-ferrite Granules)

  • 조태식;정지욱
    • 한국전기전자재료학회논문지
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    • 제17권8호
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    • pp.882-887
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    • 2004
  • The new magnetic porcelain materials have been studied by mixing magnetic St-ferrite powders with traditional porcelain materials before forming process. For the maintenance of magnetic characteristics after glaze firing process, the Sr-ferrite grains with the size of 1∼2 ${\mu}{\textrm}{m}$ were agglomerated as the isotropic granules with the size of 0.5∼2 mm. The high characteristics of magnetic porcelain materials were achieved at the following conditions; isotropic Sr-ferrite granules of 30 wt%, granule size of 1.4∼2 mm, and glaze firing temperature of $1250^{\circ}C$ in air The magnetic porcelain materials indicated the high magnetic properties, such as the remanent flux density of 240 G, the intrinsic coercivity of 3910 Oe, and the surface flux density of 178 G. The extraction properties of the magnetic tea cups were high compared to that of the traditional tea cups.