• 제목/요약/키워드: FeN

검색결과 2,281건 처리시간 0.027초

THE EFFECT OF NITROGEN ON THE MICROSTRUCTURE AND THE CORROSION RESISTANCE OF Fe-Hf-C-N THIN FILMS

  • Choi, J.O.;Han, S.H.;Kim, H.J.;Kang, I.K.
    • 한국자기학회지
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    • 제5권5호
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    • pp.641-644
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    • 1995
  • We have studied the effect of the nitrogen on the microstructure, thermomagnetic properties and corrosion resistance of Fe-Hf-C-N nanocrystalline thin films with high permeability and high saturation magnetization. These films were fabricated by reactive sputtering in $Ar+N_{2}$ plasma using an rf magnetron sputtering apparatus. As $P_{N2}$ increases, the microstructure changes from amorphous to crystalline $\alpha$-Fe phase and again returns to amorphous one. Spin wave stiffness constant increases with $P_{N2}$ until 5% $P_{N2}$, and then decreases with the further increase. This trend corresponds well with that of the microstructure with increasing $P_{N2}$. The Fe-Hf-C-N films with over 3% $P_{N2}$ show higher corrosion resistance than the N-free Fe-Hf-C films. The Fe-Hf-C-N films are considered to have high potentials for the head core materials suitable for high density recording systems, owing to their excellent soft magnetic properties and corrosion resistance.

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초고주파대역용 소자를 위한 FeTaN 박막의 이방자계의 영향 (The effect of anisotropy field of FeTaN thin films for ultraigh-hfrequency applications)

  • 류성룡;배석;정종한;김충식;남승의;김형준
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 추계학술대회 논문집
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    • pp.303-305
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    • 2000
  • The effect of anisotropy field on the high frequency magnetic characteristics of FeTaN films was investigated. Those films show good magnetic properties : 4$\pi$Ms of 13KG, Hc of 0.6 Oe, effective permeability(${\mu}$') of 800 with a stable frequency response up to 800MHz. The films also show a large anisotropy field(Hk) over 21Oe. It result from the increased anisotropy of patterned FeTaN films. The combination of high saturation magnetization and relatively high Hk in these films is believed to the partly responsible for FeTaN for the excellent high-frequency behavior.

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Magnetic Hardening of Nano-thick $Sm_2Fe_{17}N_x$ Films Grown by Pulsed Laser Deposition

  • Yang, Choong Jin;Wu, Jianmin
    • Journal of Magnetics
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    • 제5권4호
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    • pp.124-129
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    • 2000
  • $Sm_2Fe_{17}N_x$ film magnets were prepared using a $Sm_2Fe_{17}$ target in a $N_2$ gas atmosphere using a Nd-YAG pulsed laser ablation technique. The effect of nitrogen pressure, deposition temperature, pulse time and film thickness on the structure and magnetic properties of $Sm_2Fe_{17}N_x$ film were studied. Increasing the nitrogen pressure up to 5 atm led to the formation of complete $Sm_2Fe_{17}N_x$ compound. Optimized magnetic properties with the nitrogenation temperature in the range 500-53$0^{\circ}C$ could be obtained by extending the nitrogenation time up to 4 hours. Relatively low coercivities of 400~600 Oe were found in $Sm_2Fe_{17}N_x$films 50~100 m thick, while a $4\piM_s$ of 10$\sim$12 kG could be achieved. In-plane anisotropy, which was the basic goal in this study, was achieved by controlling the nitrogenation parameters.

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RELATION BETWEEN MICROSTRUCTURE AND SOFT MAGNETIC PROPERTIES OF Fe-TM-C-N (TM:Hf, Zr AND Nb) NANOCRYSTALLINE FILMS

  • Ryu, H.J.;Choi, J.O.;Han, S.H.;Kim, H.J.;Lee, J.J.;Kang, I.K.
    • 한국자기학회지
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    • 제5권5호
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    • pp.519-523
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    • 1995
  • The Fe-TM-C-N nanocrystalline films (TM : Hf, Zr and Nb) are investigated to examine the relation between microstructure and soft magnetic properties. In these films, as the atomic radius of TM element increases, $P_{N2}$ which was added to get good soft magnetic properties was decreased and the maximum value of the permeability shifted to the high Fe range in the composition diagram. The best soft magnetic properties achieved in these films are : Hc of 0.15 Oe, $\mu_{eff}$ of 7800 (1MHz) and $4{\pi}M_{s}$ of 17.5 kG in Fe-Hf-C-N film ; Hc of 0.06 Oe, $\mu_{eff}$ of 2750 (1MHz) and $4{\pi}M_{s}$ of 16.8 kG in Fe-Zr-C-N film and Hc of 0.31 Oe; $\mu_{eff}$ of 2100 (1MHz) and $4{\pi}M_{s}$ of 15.5 kG in Fe-Nb-C-N film. It was considered that the stronger the bonding force between TM and C(N), the finer TM(C,N) phase is precipitated and therefore, the finer $\alpha$-Fe grains are formed. The effective permeability of the Fe-Zr-C-N films and Fe-Nb-C-N films remains nearly constant up to 10 MHz.

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Determining Factors for the Protectiveness of the Passive Film of FeCrN Stainless Steel Formed in Sulfuric Acid Solutions

  • Ha, Heon-Young;Lee, Tae-Ho
    • Corrosion Science and Technology
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    • 제12권4호
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    • pp.163-170
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    • 2013
  • In NaCl solutions acidified with $H_2SO_4$, Fe20Cr1.1N alloy showed enhanced pitting corrosion resistance than Fe20Cr alloy. An XPS analysis revealed that the passive film of Fe20Cr1.1N alloy contained higher cationfraction of Cr than that of Fe20Cr alloy, and nitrogen was incorporated into the film. In addition, it was found that the passive film of Fe20Cr1.1N alloy was thinner and had higher oxygen vacancy density than that of Fe20Cr alloy. Based on these observations, it was concluded that the chemical composition was the determining factor for the protectiveness of the passive film of Fe20Cr based alloy in dilute $H_2SO_4$ solution.

뫼스바우어 효과를 통한 FeIn2S4에서의 Fe2+ 초미세 상호 작용 연구 (The Hyperfine Interaction for the FeIn2S4 by Mössbauer Spectroscopy)

  • 손배순;김삼진;김철성
    • 한국자기학회지
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    • 제17권1호
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    • pp.30-33
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    • 2007
  • [ $FeIn_2S_4$ ]를 제조하여 뫼스바우어 분광기, X-선 회절기, SQUID 자화율 측정기를 이용하여 결정학적 및 자기적 특성을 연구하였다. 결정구조는 역스피넬 구조로 In 이온은 각각 사면체 자리(A site)와 팔면체 자리(B site)에 동시에 존재하는데 비하여, Fe 이온은 팔면체 자리에만 존재하였다. Curie-Weiss 역자화율에 따른 유효자기모멘트는 $5.09{\mu}_B$였으며, 닐온도($N\'{e}el$ temperature)는 13 K였다. 이와 같이 낮은 닐온도는 팔면체 자리의 $Fe^{2+}(B)-S^2-Fe^{2+}(B)$의 초미세 상호작용이 약하기 때문인 것으로 설명되어진다. 전기사중극자 상호작용의 온도 의존성은 z-축에 따른 결정장 이론으로 설명되어진다.

Fe-Hf-N 박막의 열처리 후 연차기특성 열화 (Degradation of Soft Magnetic Properties of Fe-Hf-N Films After Annealing)

  • 제해준;박재환;김영환;김병국
    • 한국결정학회지
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    • 제12권3호
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    • pp.182-187
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    • 2001
  • 고포화자속밀도 특성을 갖는 Fe-Hf-N 박막의 진공분위기 열처리 시 발생하는 연자기 특성 열화현상을 조사하였다. 열처리 온도는 450℃∼650℃이며, TEM 분석 및 전자회절빔 분석을 통하여 박막의 미세구조와 국부적 미세결정상을분석하였다 450℃에서 600℃까지 열처리한 박막의 연자기 특성은 미세화 되어있는 α-Fe 결정립이 성장함에 따라, 열처리 전에 비해 보자력 이 0.2 Oe 정도 증가하고 유효투자율이 1500 정도 감소하는 것으로 나타났다. 포화자속밀도는 600℃ 이하까지는 0.5 KG 정도 미량 증가하나 650℃에서는 모든 연자기 특성 이 급격하게 떨어졌다. 이러한 열화현상은 650℃ 열처리시 α-Fe격자 내에 존재하던 N이 HfN로 석출됨에 따라, α-Fe 결정립이 급격히 성장하여 박막의 미세구조가 초미세 결정구조를 벗어났기 때문인 것으로 나타났다.

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Magnetic Properties of Fe-Ni-N/Cu Multilayered Films by DC Magnetron Sputtering Method

  • Kim, Jung-Gi;Kim, Hyun-Joong;Jang, Ji-Young;Han, Kyung-Hunn
    • Journal of Magnetics
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    • 제9권3호
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    • pp.79-82
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    • 2004
  • The structure and magnetic properties of Fe-Ni-N/Cu multilayered films, prepared by the DC magnetron sputter, as a function of different thicknesses of Fe-Ni-N ($t_{FeNiN}$) and Cu ($t_Cu$) layers have been studied by the methods of x-ray diffraction and measurement of magnetic moment. It has been found that the enhancement of (200) orientation in Fe-Ni-N layers is observed at the ratio of layer thickness with about $t_{FeNiN}/t_{Cu}$ $\underline{\simeq}$ 3.75. The reduction of magnetization due to the formation of interdiffusion near the interface is explained by means of the dead layer model. The temperature dependence of magnetization exhibits the feature of Blochs $T^{\frac{2}{3}}$ law. The layer thickness dependence of Curie temperature has been discussed by critical temperature theory of Heisenberg model.

고주파유도 가열에 의한 나노구조 Fe-Si3N4 복합재료의 합성 및 급속소결 (Rapid Sintering and Synthesis of a Nanocrystalline Fe-Si3N4 Composites by High-Frequency Induction Heating)

  • 고인용;두송이;도정만;윤진국;박상환;손인진
    • 대한금속재료학회지
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    • 제49권9호
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    • pp.715-719
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    • 2011
  • Nanopowders of $Fe_3N$ and Si were fabricated by high-energy ball milling. A dense nanostructured $12Fe-Si_3N_4$ composite was simultaneously synthesized and consolidated using a high-frequency induction-heated sintering method for 2 minutes or less from mechanically activated powders of $Fe_3N$ and Si. Highly dense $12Fe-Si_3N_4$ with a relative density of up to 99% was produced under simultaneous application of 80 MPa pressure and the induced current. The microstructure and mechanical properties of the composite were investigated.