• 제목/요약/키워드: amorphous magnetic materials

검색결과 186건 처리시간 0.026초

Partitioning of Si in Fe-Zr-Si-B Nanocrystalline Alloys

  • Waniewska, A.Slawska;Greneche, J.M.;A.Inoue
    • Journal of Magnetics
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    • 제4권1호
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    • pp.1-4
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    • 1999
  • The microstructure and magnetic properties of$ Fe_{87}Zr_7Si_4B_2$ nanocrystalline alloys were studied by magnetization measurements and M ssbauer spectrometry over a wide temperature range. Three well resolved spectral components have been found and attributed to bcc-Fe grains (with almost pure iron structure), residual amorphous matrix enriched with solute elements and interfaces formed at the grain-matrix boundaries. It has been shown that, contrary to the expectation, during crystallization the atomic segregation occurs leading to the formation of primary bcc-Fe grains and the partition of Si atoms into the residual amorphous matrix.

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열처리가 FeSiB 연자성 박막의 자기특성에 미치는 영향 (Effect of Heat Treatment on The Magnetic Properties of FeSiB Thin Film)

  • 홍종욱;장태석;박종완
    • 한국재료학회지
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    • 제12권11호
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    • pp.880-882
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    • 2002
  • We have prepared magnetic thin films of FeSiB by sputtering and examined microstructure and magnetic properties of the annealed films in order to investigate the feasibility of the films to microsensor application. Effects of vacuum annealing on the magnetic properties of $Fe_{84}$$Si_{6}$$B_{10}$ films have been examined as a function of temperature. The heating rate and the holding time were 10 K/min and 1 hour, respectively. Vacuum condition was held during cooling to prevent oxidation of the films. The coercivity did not show any noticeable change (~1500 A/m), although the grain size of the crystalline phase in the annealed films increased gradually up to about 16 nm until 673 K. However, both the grain size and the coercivity increased steeply when the annealing temperature increased over 723 K. Since the saturation magnetization is closely related to the phase evolution, the variation of the saturation magnetization of the annealed films was similar to that of the ribbon materials; the thin films were transformed from amorphous to crystalline with $\alpha$-(Fe,Si) phase by increasing annealing temperature.

Crystalline Behavior and Microstructure Analysis in Fe73.28Si13.43B8.72Cu0.94Nb3.63 Alloy

  • Oh, Young Hwa;Kim, Yoon Bae;Seok, Hyun Kwang;Kim, Young-Woon
    • Applied Microscopy
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    • 제47권1호
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    • pp.50-54
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    • 2017
  • The microstructure, the crystallization behavior, and magnetic properties of FeSi-based soft magnetic alloys (FINEMET) were investigated using transmission electron microscopy, X-ray diffraction, and coercive force measurements. The amorphous $Fe_{73.28}Si_{13.43}B_{8.72}Cu_{0.94}Nb_{3.63}$ alloys particles, prepared in $10^{-4}$ torr by gas atomization process, were heat treated at $530^{\circ}C$, $600^{\circ}C$, and $670^{\circ}C$ for 1 hour in a vacuum of $10^{-2}$ torr. Nanocrystalline Fe precipitation was first formed followed by the grain growth. Phase formation and crystallite sizes was compared linked to its magnetic behavior, which showed that excellent soft magnetic property can directly be correlated with its microstructure.

저자장에서 비정질 후막$(Sm_{1-x}Pr_x)Fe_2$의 자성 (Magnetism of Amorphous Bulk $(Sm_{1-x}Pr_x)Fe_2$ Alloys in a Low Magnetic Field)

  • Kim, Jai-Young
    • 한국재료학회지
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    • 제5권8호
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    • pp.913-920
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    • 1995
  • RFe$_2$(R=rare earth) Laves상 금속간 화할물은 $10^{-3}$ 정도의 큰 포화 자왜 정수를 나타내고 있어, 자왜 재료의 응용 분야에서 많은 주목을 받고 있다. 그러나, 이 금속간 화합물은 결정 자기 이방성 에너지가 크기 때문에, 큰 포화 자왜 정수를 얻기 위해서는 높은 외부 자장이 요구되어진다. 이에 따라 저자장에서 보다 높은 자왜 정수를 얻고자 하는 연구들이 행하여 지고 있는데, 이를 위한 방법은 RFe$_2$Laves상 금속간 화합물중 결정 자기 이방성 부호가 각기 다른 회토류 금속의 치환 혹은 RFe$_2$금속간 화합물의 비정질화이다. 본 연구에서는 RFe$_2$금속간 화합물의 자기 이방성 에너지를 최소화하여 저자장에서 높은 자왜 정수를 얻기 위해, 결정 자기 이방성 정수 및 자왜 정수의 부호가 각각 반대인 SmFe$_2$와 PrFe$_2$을 합금화 한후, 비정질화하여 자왜 정수의 변화를 포함한 자성을 조사하였다.

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Fe-Hf-N 연자성 박막의 자기적 특성에 미치는 박막 두께의 영향 (The Effect of Thicknesses on Magnetic Properties of Fe-Hf-N Soft Magnetic Thin Films)

  • 최종운;강계명
    • 한국표면공학회지
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    • 제44권6호
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    • pp.255-259
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    • 2011
  • The thickness dependence of magnetic properties was experimentally investigated in nanocrystalline Fe-Hf-N thin films fabricated by a RF magnetron sputtering method. In order to investigate the thickness effect on their magnetic properties, the films are prepared with different thickness ranges from 90 nm to 330 nm. It was revealed that the coercivity of the thin film increased with film thickness. On the contrary, the saturation magnetization decreased with film thickness. On the basis of the SEM and TEM, an amorphous phase forms during initial growth stage and it changes to crystalline structure after heat treatment at $550^{\circ}C$. Nanocrystalline Fe-Hf-N particles are also generated.

Effect of Crystallization Treatment on the Magnetic Properties of Amorphous Strips Based on Co-Fe-Ni-B-Si-Cr Containing Nitrogen

  • Cho H.J.;Kwon H.T.;Ryu H.H.;Sohn K.Y.;You B.S.;Park W.W.
    • 한국분말재료학회지
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    • 제13권4호
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    • pp.285-289
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    • 2006
  • Co-Fe-Ni-B-Si-Cr based amorphous strips containing nitrogen were manufactured via melt spinning, and then devitrified by crystallization treatment at the various annealing temperatures of $300^{\circ}C{\sim}540^{\circ}C$ for up to 30 minutes in an inert gas $(N_2)$ atmosphere. The microstructures were examined by using XRD and TEM and the magnetic properties were measured by using VSM and B-H meter. Among the alloys, the amorphous ribbons of $Co_{72.6}Fe_{9.8}Ni_{5.5}B_{2.4}Si_{7.1}Cr_{2.6}$ containing 121 ppm of nitrogen showed relatively high saturation magnetization. The alloy ribbons crystallized at $540^{\circ}C$ showed that the grain size of $Co_{72.6}Fe_{9.8}Ni_{5.5}B_{2.4}Si_{7.1}Cr_{2.6}$ alloy containing 121 ppm of nitrogen was about f nm, which exhibited paramagnetic behavior. The formation of nano-grain structure was attributed to the finely dispersed Fe4N particles and the solid-solutionized nitrogen atoms in the matrix. Accordingly, it can be concluded that the nano-grain structure of 5nm in size could reduce the core loss within the normally applied magnetic field of 300A/m at 10kHz.

Discovery of Giant Magnetostriction in Amorphous RFe$_2$B (R = Sm, Tb) Alloys

  • Kim, Jai-Young
    • Journal of Magnetics
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    • 제1권2호
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    • pp.64-68
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    • 1996
  • Compared with the conventional magnetostriction in Ni alloys which are in the order of several tens ppm (Parts Per Million =10-6), RFe$_2$(R = rare earth element) Laves Phase intermetallic compounds show large saturation magnetostriction in the range of a few thousands ppm. However, the large external magnetic field necessary to obtain saturatio magnetostriction has due to large magnetocrystalline anisotropy energy restrained the applicationof magnetostriction materials in RFe$_2$intermetallic compounds. As a result of its solution, the largest published value of effective giant magnetostriction in a low external magnetic field (less than a few hundred Oe) is reported in this paper by means of amorphisation of RFe$_2$intermetallic compounds with the addition of boron, as a half metal. For the amorphous (SmFe$_2$)0.97 B0.03 alloys, the effective magnetostriction of -545 and -610 $\times$ 10-6 is obtained at 400 and 1,000 Ie, respectively. Moreover, the effective magnetostriction of 590 and 630$\times$10-6 in the amorphous (TbFe$_2$)0.98 B0.02 alloys is also found at 400 and 1,000 Oe, respectively. This result will provide a clue to understanding the effect of half metal on anomalous increase of the effective giant magnetostriction and attract the great attention for magnetostriction applications.

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