• 제목/요약/키워드: $Fe_2B$

검색결과 1,794건 처리시간 0.025초

THE EFFECT OF $HfB_{2}$ ON MAGNETIC PROPERTIES OF NANOCOMPOSITE $Fe_{2}Nd_{14}B/Fe_{3}B$ MAGNET

  • Yang, Choong-Jin;Kim, Chan-Wook;Park, Eyun-Byung
    • 한국자기학회지
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    • 제5권5호
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    • pp.412-415
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    • 1995
  • By adding 1wt.% $HfB_{2}$ into $Nd_{3-4}Fe_{77-78.5}B_{18.5}$ alloys, the grain growth of $Fe_{3}B/Nd_{2}Fe_{14}B$ composite phases during annealing was found to be hindered by 40~50%. It is proposed that the addition of $HfB_{2}$ leads to the formation of fine dispersoids of $HfB_{2}$ in the $Fe_{3}B/Nd_{2}Fe_{14}B$ composite magnet. The maximum energy product($(B.H)_{max}$) as well as intrinsic coercivity($_{i}H_{c}$) for the $Nd_{3}Fe_{78.5}B_{18.5}\;+\;1wt.%\;HfB_{2}$ alloy were enhanced by more than 25% $(B.H)_{max}=10\;MGOe,\;_{i}H_{c}=2.5\;kOe)$ due to the addition of $HfB_{2}$ while remanent magntization($B_{r}$) was reduced slightly. Itis deduced that the formation of fine dispersoids will also play a role of magnetic domain pinning.

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기계적합금법에 의한 $\textrm{Fe}_{5}\textrm{Si}_{x}\textrm{B}_{5-x}$(x=0, 1, 2, 3)분말의 제조 (Preparation of $\textrm{Fe}_{5}\textrm{Si}_{x}\textrm{B}_{5-x}$(x=0, 1, 2, 3) Powder by Mechanical Alloying)

  • 김택수;황연;이효숙
    • 한국재료학회지
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    • 제8권2호
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    • pp.141-146
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    • 1998
  • Ball mill을 이용하여 Ar 분위기에서 기계적 합금법으로 $Fe_{ 5}$$Si_{x}$ $B_{5-x}$ 분말을 제조하고, 제조된 분말을 연속 진공 열처리 시킨 후 Si첨가에 따른 결정구조 및 자기적성질을 조사하였다. 250시간 볼밀처리한 Fe$_{5}$ $B_{5}$ 합금에서 전체적으로 비정질 구조가 형성되었으나 일부분에 결정질이 존재하고 있었으며, $800^{\circ}C$에서 2시간 열처리하면 FeB와 $Fe_{2}$B 상이 혼재된 구조를 얻었다. 250시간 볼밀처리한 $Fe_{5}$ $Si_{2}$$B_{3}$합금에서 전체적으로 비정질 구조를 얻을 수 있었고, 이 시료를 2시간, $800^{\circ}C$로 열처리 하였을 때 $Fe_{2}$B상은 사라지고, 대부분 FeB의 균질한 상을 나타내었다. $Fe_{5}$ $B_{5}$ /조성에서는 분말 입자크기가 약 $1\mu\textrm{m}$이었으나, Si이 첨가되면 분말 입자크기가 약 $10\mu\textrm{m}$로 커졌다. Si의 첨가에 의해서 비정질상의 형성을 촉진시켜 단일 FeB상의 합성시간을 단축시킬 수 있었다.

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Exchange Coupling in Massively Produced Nd2Fe14B+Fe3B Nanocomposite Powders

  • Yang, Choong Jin;Park, Eon Byung;Han, Jong Soo;Kim, Eung Chan
    • Journal of Magnetics
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    • 제9권2호
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    • pp.27-33
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    • 2004
  • Magnetic properties of $Nd_4Fe_{77.5}B_{18.5}$ compound in term of exchange coupling between $Nd_2Fe_{14}B$ and $Fe_3B$ magnetic nano crystals in melt spun powders were characterized by varying the quenching speed in mass production line. The exchange coupled phenomenon was characterized as functions of nano crystal size and volume fraction of each magnetic phase which was possible by employing Henkel plot (${\delta}M$) and refined Mossbauer spectroscopy. The optimized magnetic properties obtained from the present volume production line were: $B_r= 11.73 kG,{_i}H_c/ = 3.082 kOe$, and $(BH)_{max} = 12.28 MGOe.$ The volume fraction of each magnetic phase for those conditions giving the grain size of 10 nm were ${\alpha}-Fe; 4.2%, Fe_3B; 60.1 %$, and $Nd_2Fe_{14}B; 35.7%$. The superior magnetic properties in the $Nd_2Fe_{14}Fe_3B$ based nanocomposites were confirmed to be dependant on the volume fraction of $Fe_3B$.

강자성 $Fe_{16}N_2$ 화합물에서의 Fe 자기모멘트의 증가 (Enhancement of Fe Magnetic Moments in Ferromagnetic $Fe_{16}N_2$)

  • 민병일;김창석
    • 한국자기학회지
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    • 제1권2호
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    • pp.9-14
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    • 1991
  • $Fe_{16}N_{2}$의 전자, 자기적구조를 이해하고자 우리는 자체충족적 국제 밀도함수 근사 LMTO(Linearized Muffin Tin Orbita)밴드 방법을 이용하여 전자구조이론 연구를 수행하였다. $Fe_{16}N_{2}$ 금속 화합물의 기저상태의 물리적 파라미터들, 즉 에너지 밴드, 상태밀도, Stoner 상수, 자기 모멘트 등을 구하여 이들 의 전자기적 물성을 고찰하고 이들을 토대로 하여 이 화합물의 자기적 구조와 Fe 원자에서의 자기모멘트 증가를 미시적으로 고찰하였다. $Fe_{16}N_{2}$에 존재하는 3종류의 Fe 원자, Fe I, Fe II, Fe III 원자들의 자기모멘 트는 각각 2.13, 2.50, $2.85\;{\mu}_{B}$로 주어져 N 원자에서부터 멀리 떨어져잇는 Fe II, Fe III 원자들에서 큰 자기모멘트 증가를 얻었고 Fe 원자의 자기모멘트 결정에는 주위 국재환경이 매우 중요하다는 결론을 얻었다. Fe 원자당 평균 자기모멘트는 $2.50\;{\mu}_{B}$로 계산되어 보고된 측정 산출치($-3.0\;{\mu}_{B}$)보다는 적은 값을 얻었다.

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Mg$B_2$와 FeTi 합성체의 자기적 성질 (Magnetic properties of $MgB_2$ and FeTi composites)

  • 이헌봉;이준호;김영철;정대영
    • Progress in Superconductivity
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    • 제5권2호
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    • pp.109-113
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    • 2004
  • MgB$_2$ and FeTi composites was prepared to study the effect of FeTi particles on superconductivity of MgB$_2$. The sample, which had contained magnesium, boron and FeTi particles, was synthesized by the Commercial Stainless Steel Tube Enveloping Technique(COSSET) at 92$0^{\circ}C$ for 2 hours. The structure and properties of the sample was investigated by XRD, SEM, and SQUID magnetometer. It was found that there was a little change of T$_{c}$ compared with pure MgB$_2$ superconductor in spite of high percentage of FeTi particles, and there was no proof of structure change of MgB$_2$ superconductor due to FeTi particles. But the high porosity which was appeared in the pure MgB$_2$ was disappeared in the composites. We conclude that FeTi particles do not influence the superconductivity of MgB$_2$ and it is expected that fe-Ti material system will be a good material for a tube of the PIT process and for a substrate of the film.m.

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MgB2 초전도체의 임계특성에 대한 Fe 입자 크기의 영향 (The Influence of Fe Particle Size on the Critical Properties of MgB2 Superconductor)

  • 정현덕;이동건;류성수;박해웅;김찬중;전병혁
    • 한국분말재료학회지
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    • 제26권5호
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    • pp.432-436
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    • 2019
  • This study demonstrates the effect of addition of Fe particles of different sizes on the critical properties of the superconductor $MgB_2$. Bulk $MgB_2$ is synthesized by ball milling Mg and B powders with Fe particles at $900^{\circ}C$. When Fe particles with size less than $10{\mu}m$ are added in $MgB_2$, they easily react with B and form the FeB phase, resulting in a reduction in the amount of the $MgB_2$ phase and deterioration of the crystallinity. Accordingly, both the critical temperature and the critical current density are significantly reduced. On the other hand, when larger Fe particles are added, the $Fe_2B$ phase forms instead of FeB due to the lower reactivity of Fe toward B. Accordingly, negligible loss of B occurs, and the critical properties are found to be similar to those of the intact $MgB_2$.

Mechanically Driven Decomposition of Intermetallics

  • Kwon, Young-Soon;Kim, Hyun-Sik;Gerasimov, Konstantin B.
    • 한국분말재료학회지
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    • 제9권6호
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    • pp.422-432
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    • 2002
  • Mechanically driven decomposition of intermetallics during mechanical milling(MM 1 was investigated. This process for Fe-Ce and Fe-Sn system was studied using conventional XRD, DSC, magnetization and alternative current susceptibility measurements. Mechanical alloying and milling form products of the following composition (in sequence of increasing Gecontent): $\alpha$(${\alpha}_1$) bcc solid solution, $\alpha$+$\beta$-phase ($Fe_{2-x}Ge$), $\beta$-phase, $\beta$+FeGe(B20), FeGE(B20), FeGe(B20)+$FeGe_2$,$FeGe_2$,$FeGe_2$+Ge, Ge. Incongruently melting intermetallics $Fe_6Ge_5$ and $Fe_2Ge_3$ decompose under milling. $Fe_6Ge_5$ produces mixture of $\hat{a}$-phase and FeGe(B20), $Fe_2Ge_3$ produces mixture of FeGe(B20) and $FeGe_2$ phases. These facts are in good agreement with the model that implies local melting as a mechanism of new phase for-mation during medchanical alloying. Stability of FeGe(B20) phase, which is also incongruently melting compound, is explained as a result of highest density of this phase in Fe-Ge system. Under mechanical milling (MM) in planetary ball mill, FeSn intermetallic decomposes with formation $Fe_5Sn_3$ and $FeSn_2$ phases, which have the biggest density among the phases of Fe-Sn system. If decomposition degree of FeSn is relatively small(<60%), milled powder shows superparamagnetic behavior at room temperature. For this case, magnetization curves can be fitted by superposition of two Langevin functions. particle sizes for ferromagnetic $Fe_5Sn_3$ phase determined from fitting parameters are in good agreement with crystalline sizes determined from XRD data and remiain approximately chageless during MM. The decomposition of FeSn is attributed to the effects of local temperature and local pressure produced by ball collisions.

CoFeSiB/Ru/CoFeSiB 자유층을 갖는 자기터널 접합의 스위칭 자기장 (Magnetization Switching of MTJs with CoFeSiB/Ru/CoFeSiB Free Layers)

  • 이선영;이서원;이장로
    • 한국자기학회지
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    • 제17권3호
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    • pp.124-127
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    • 2007
  • 비정질 $Co_{70.5}Fe_{4.5}Si_{15}B_{10}$층을 갖는 자기터널접합(magnetic tunneling junctions; MTJ)를 연구하였다. 비정질 자유층이 MTJ의 스위칭 특성에 미치는 영향을 중점적으로 이해하기 위하여 기존의 사용된 CoFe 그리고 NiFe층들을 대신하여 비정질 강자성체 CoFeSiB을 사용하였다. CoFeSiB은 CoFe과 NiFe보다 각각 낮은 포화자기장($M_s:\;560\;emu/cm^3$)과 높은 자기이방성 상수($K_u:\;0.2800\;erg/cm^3$)를 갖는다. CoFeSiB층들의 사이에 1.0 nm Ru층 삽입시 $-0.003\;erg/cm^3$ 교환결합에너지($J_{ex}$)를 나타내었다. $Si-SiO_2-Ta$ 45/Ru 9.5/IrMn 10/CoFe 7/$AlO_x$/CoFeSiB 7 또는 CoFeSiB (t)/Ru 1.0/CoFeSiB (7-t)/Ru 60(in nm) MTJ 구조의 터널접합에 대하여 실험 및 시뮬레이션 결과를 통하여 낮은 $J_{ex}$에 기인하는 스위칭 자기장(switching field; $H_{sw}$)의 시료 크기 의존성이 나타나는 것을 알 수 있었다. CoFeSiB 합성형 반강자성 구조는 micrometer뿐만 아니라 submicrometer 시료 크기영역에서도 보자력($H_c$)의 감소와 민감도를 증가 시킴으로써 자기 스위칭 특성에 유리한 것으로 확인 되었다.

Study on Reaction Behavior of Mg-FeB Phase for Rare Earth Elements Recovery from End-of-life Magnet

  • Sangmin Park;Dae-Kyeom Kim;Rongyu Liu;Jaeyun Jeong;Taek-Soo Kim;Myungsuk Song
    • 한국분말재료학회지
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    • 제30권2호
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    • pp.101-106
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    • 2023
  • Liquid metal extraction (LME), a pyrometallurgical recycling method, is popular owing to its negligible environmental impact. LME mainly targets rare-earth permanent magnets having several rare-earth elements. Mg is used as a solvent metal for LME because of its selective and eminent reactivity with rare-earth elements in magnets. Several studies concerning the formation of Dy-Fe intermetallic compounds and their effects on LME using Mg exist. However, methods for reducing these compounds are unavailable. Fe reacts more strongly with B than with Dy; B addition can be a reducing method for Dy-Fe intermetallic compounds owing to the formation of Fe2B, which takes Fe from Dy-Fe intermetallic compounds. The FeB alloy is an adequate additive for the decomposition of Fe2B. To accomplish the former process, Mg must convey B to a permanent magnet during the decomposition of the FeB alloy. Here, the effect of Mg on the transfer of B from FeB to permanent magnet is observed through microstructural and phase analyses. Through microstructural and phase analysis, it is confirmed that FeB is converted to Fe2B upon B transfer, owing to Mg. Finally, the transfer effect of Mg is confirmed, and the possibility of reducing Dy-Fe intermetallic compounds during LME is suggested.

Al이 치환된 Co 페라이트에 관한 뫼스바우어 분광법 및 중성자 회절 연구 (Neutron Diffraction and Mössbauer Studies of Superexchange Interaction on Al Substituted Co-ferrite)

  • 김삼진;명보라;김철성;백경선
    • 한국자기학회지
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    • 제16권6호
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    • pp.287-292
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    • 2006
  • Al이 치환된 Co 페라이트 $CoAl_{0.5}Fe_{1.5}O_{4}$에 대하여 x-선 회절,중성자 회절, 자기화 실험, 뫼스바우어 분광법으로 연구하였다. $CoAl_{0.5}Fe_{1.5}O_{4}$의 경우 입방정형 스피넬 구조의 결정구조를 가지며, 사면체자리(A)와 팔면체자리(B)의 자성이온의 자기 모우멘트는 상온에서 각각 $Fe^{3+}(A)(-2.29{\mu}_{B},\;Fe^{3+}(B)(3.81{\mu}_{B}),\;Co^{2+}(B)(2.66{\mu}_{B})$인 준강자성적인 자기구조임을 밝혀냈다. A, B자리에서의 $^{57}Fe$ 핵의 초미세 자기장의 온도 의존성을 $N{\'{e}}el$ 이론에 근거하여 분석하였다. $CoAl_{0.5}Fe_{1.5}O_{4}$의 경우 부격자 간의 A-B 초교환 상호작용 및 부격자 내의 A-A 초교환 상호작용은 각각 그 세기가 $J_{A-B}=-19.3{\pm}0.2k_{B}\;J_{A-A}=-21.6{\pm}0.2k_{B}$인 반강자성 상호작용을 하고 있다. 반면, B-B 상호작용은 세기가 $J_{B-B}=3.8{\pm}0.2k_{B}$인 강자성 상호작용을 하고 있음을 밝혀냈다.