• 제목/요약/키워드: FeCoB

검색결과 654건 처리시간 0.033초

nm-수준의 상분리를 이용하여 제조한 고강도 고인성 철계 비정질 합금 (Fe-based Amorphous Alloy with High Strength and Toughness Synthesized based on nm-scale Phase Separation)

  • 이광복;박경원;이상호;이재철
    • 대한금속재료학회지
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    • 제48권1호
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    • pp.1-7
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    • 2010
  • Experiments have demonstrated that the addition of a moderate amount of V to $Fe_{52}Co_{(20-x)}B_{20}Si_4Nb_4V_x$ amorphous alloy enhances the plasticity of the alloy. In particular, $Fe_{52}Co_{17.5}B_{20}Si_4Nb_4V_{2.5}$ alloy withstood a maximum of 8.3% strain prior to fracture along with a strength exceeding 4.7 GPa. Energy dispersive x-ray spectroscopy conducted on the $Fe_{52}Co_{17.5}B_{20}Si_4Nb_4V_{2.5}$ alloy exhibited evidence of compositional modulation, indicating that nm-scale phase separation had occurred at local regions. In this study, the role played by nm-scale phase separation on the plasticity was investigated in terms of structural disordering and shear localization in order to better understand the structural origin of the enhanced plasticity shown by the developed alloy.

A Study on the Magnetic Properties and Solid-HDDR Characteristics of Nd-Fe-B-type Alloys

  • Shon, S.W.;Kwon, H.W.
    • Journal of Magnetics
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    • 제4권2호
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    • pp.46-51
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    • 1999
  • A solid-HDDR characteristics of the Nd-Fe-B-type alloys magnetic properties of the solid-HDDR treated materials have been investigated using three types of alloys; $Nd_{15}Fe_{77}B_8 (alloy A), Nd_{16}Fe_{75.9}B_8Zr_{0.1}(alloy B), and Nd_{12.6}Fe_{68.7}Co_{11.6}B_8Ga_{1.0}Zr_{0.1} $(alloy C). It has been found that the four-components alloy B and six-components alloy C have showed higher hydrogenation temperatures than the ternary alloy A. The alloys A and B appeared to absorb more hydrogen gas more rapidly as well compared to the alloy C. The disproportionation temperature of hydrogenated materials was exhibited no significant difference among the alloys. The thermal stability of the hydrided materials of the three types of alloys was found to become more stable in order of number of components. The disproportionation and the recombination kinetics were significantly sluggish in the solid-HDDR manner with respect to the conventional manner. Some degree of anisotropic nature was found to exist in the ingot and this anisotropic nature was retained even after the solid-HDDR treatment. It was suggested the solid-HDDR treatment may possibly be used for a preparation of an isotropic or anisotropic Nd-Fe-B-type cast magnets.

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철강전노 dust의 활용에 관한 연구 (The Utilization of the steel converter dust)

  • 김미성;김민석;김성원;오재현
    • 자원리싸이클링
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    • 제2권2호
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    • pp.9-15
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    • 1993
  • 본 연구에서는 광양제철소 전로 dust를 사용하여 자력산별 및 심강(분급) 실험을 통해서 산화철(magnetite)를 분리.회수하였다. 그리고 분리.회수한 산화철(magnetite)과 SrCO$_{#}$를 고상방응시켜 Sr-ferrite를 제조하고 그 자기적 특성은 조사하였으며, 이를 통하여 다음과 같은 결론을 얻었다. 1. 광양제철소 제동전로 Ep dust는 대부분 ${\alpha}$-Fe와 magnetite, wustite 등의 철산화물 상태로 존재하며 자력산별과 심강(분급)실험을 행한 결과 magnetite가 주된 구성물질인 산물을 얻을 수 있었다. 2. 전로 dust 정제를 통하여 얻어진 magnetite와 SrCO$_{4}$를 혼합한 후 하소를 행한 결과 magnetite의 산화배소과정 없이도 Sr-ferrite 생성이 가능함을 확인 하였으며, Sr-ferrite 생성 반응은 다음과 같다. I. $SrCO_3$ $+Fe_3$O$_4$+1/2(1-X)$O_2 $longrightarrow$\alpha$ $-Fe _2$$O_3$ $+SrFeO _3$\ulcorner+$CO_2$ II. $5.5\alpha$ $-Fe_2$$O_3$ $+SrFeO_3$\ulcornerlongrightarrowSrFe\ulcornerO\ulcorner+1/2(1/2-X)$O_2$ 3. 1150$^{\circ}C$에서 1시간동안 하소한 후 1250$^{\circ}C$에서 2시간 동안 산결하여 Br=3.75GK, $_{1}$Hc=1.7KOe, (B.H)$_{max}$=2.64 MGOe인 Sr-ferrite 이방성 영구자석을 제조하였다.

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ErFe2O4 다결정체 시료의 자기적 특성 연구 (Magnetic Properties of Polycrystalline ErFe2O4)

  • 김재영;이보화
    • 한국자기학회지
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    • 제18권6호
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    • pp.217-220
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    • 2008
  • Rare-earth iron oxide $ErFe_2O_4$의 다결정체 시료의 자기적 특성을 연구하였다. 단일상의 다결정체 $ErFe_2O_4$ 시료를 CO/$CO_2$ gas 분위기에서 고체상태반응법으로 합성하였다. X-ray diffraction 측정을 통해 $ErFe_2O_4$ 시료는 space group R3m Rhombohedral 구조를 가지며, 온도에 의존하는 magnetization 측정을 통해 250 K에서는 자기적 전이가, 220 K에서는 구조적 전이가 일어나는 2단계 상전이 현상을 확인하였다.

Fabrication and Magnetic Properties of A New Fe-based Amorphous Compound Powder Cores

  • Xiangyue, Wang;Feng, Guo;Caowei, Lu;Zhichao, Lu;Deren, Li;Shaoxiong, Zhou
    • Journal of Magnetics
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    • 제16권3호
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    • pp.318-321
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    • 2011
  • A new Fe-based amorphous compound powder was prepared from Fe-Si-B amorphous powder by crushing amorphous ribbons as the first magnetic component and Fe-Cr-Mo metallic glassy powder by water atomization as the second magnetic component. Subsequently by adding organic and inorganic binders to the compound powder and cold pressing, the new Fe-based amorphous compound powder cores were fabricated. This new Fe-based amorphous compound powder cores combine the superior DC-Bias properties and the excellent core loss. The core loss of 500 kW/$m^3$ at $B_m$ = 0.1T and f = 100 kHz was obtained When the mass ratio of FeSiB/FeCrMo equals 3:2, and meanwhile the DC-bias properties of the new Fe-based amorphous compound powder cores just decreased by 10% compared with that of the FeSiB powder cores. In addition, with the increasing of the content of the FeCrMo metallic glassy powder, the core loss tends to decrease.