• 제목/요약/키워드: magnetization method

검색결과 460건 처리시간 0.027초

GSMAC법을 이용한 밀폐된 정방형관내 자성유체의 열-유동 특성에 관한 해석적 연구 (Numerical analysis on thermal-fluidic characteristics of the magnetic fluid in a cavity using GSMAC)

  • 서재형;이무연
    • 한국산학기술학회논문지
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    • 제14권3호
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    • pp.997-1002
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    • 2013
  • 본 연구에서는 자성유체의 열-유동 특성을 고찰하기 위하여 밀폐된 정방형관내 자성유체의 열-유동 특성에 관하여 GSMAC법을 이용하여 수치해석적으로 접근하였다. 자성유체의 지배방정식은 자연대류의 연속, 운동량 및 에너지 방정식과 나노자장입자의 자장 및 자화방정식을 추가로 고려하였고 밀폐된 정방형관의 외부에서 가하는 인가자장 세기 및 방향에 따른 자성유체의 온도 및 열전달계수 등의 열전달 특성과 유선 및 등온선도 등의 유동 특성의 변화를 규명하였다. 그 결과, 정방형관내 자장이 수평방향으로 인가될 경우 인가자장 H=-6000에서 평균 Nusselt 수가 0.1592가 되었으며, 자성유체의 열-유동 현상을 인가자장의 세기 및 방향에 따라 제어할 수 있게 되었다.

Simultaneously Enhanced Magnetic and Ferroelectric Properties of $Bi_{0.9}Dy_{0.1}Fe_{0.97}Co_{0.03}O_3 $ compound

  • 유영준;황지섭;박정수;이주열;강지훈;이광훈;이보화;김기원;이영백
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.147-147
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    • 2013
  • Multiferroic material $BiFeO_3$ (BFO) is a typical multiferroic material with a room-temperature magnetoelectric coupling in view of high magnetic- and ferroelectric-ordering temperatures (Neel temperature $T_N$ ~ 647 K and Curie temperature TC ~1,103 K). Rare-earth ion substitution at the Bi sites is very interesting, which induces suppressed volatility of the Bi ion and improved ferroelectric properties. At the same time, the Fe-site substitution with magnetic ions is also attracting, since the enhanced ferromagnetism was reported. In this study, BFO, $Bi_{0.9}Dy_{0.1}FeO_3$ (BDFO), $BiFe_{0.97}Co_{0.03}O_3$ (BFCO) and $Bi_{0.9}Dy_{0.1}Fe_{0.97}Co_{0.03}O_3 $ (BDFCO) compounds were prepared by conventional solid-state reaction and wet-mixing method. High-purity $Bi_2O_3$, $Dy_2O_3$, $Fe_2O_3$ and $Co_3O_4$ powders with the stoichiometric proportions were mixed, and calcined at $500^{\circ}C$ for 24 h. The samples were immediately put into an oven, which was heated up to 800oC and sintered in air for 1 h. The crystalline structure of samples was investigated at room temperature by using a Rigaku Miniflex powder diffractometer. The field-dependent magnetization measurements were performed with a vibrating-sample magnetometer. The electric polarization was measured at room temperature by using a standard ferroelectric tester (RT66B, Radiant Technologies). Dy and Co co-doping at the Bi and the Fe sites induce the enhancement of both magnetic and ferroelectric properties of $BiFeO_3$.

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Electrical Transport Properties and Magnetoresistance of (1-x)La0.7Sr0.3MnO3/xZnFe2O4 Composites

  • Seo, Yong-Jun;Kim, Geun-Woo;Sung, Chang-Hoon;Lee, Chan-Gyu;Koo, Bon-Heun
    • 한국재료학회지
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    • 제20권3호
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    • pp.137-141
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    • 2010
  • The $(1-x)La_{0.7}Sr_{0.3}MnO_3(LSMO)/xZnFe_2O_4$(ZFO) (x = 0, 0.01, 0.03, 0.06 and 0.09) composites were prepared by a conventional solid-state reaction method. We investigated the structural properties, magnetic properties and electrical transport properties of (1-x)LSMO/xZFO composites using X-ray diffraction (XRD), scanning electron microscopy (SEM), field-cooled dc magnetization and magnetoresistance (MR) measurements. The XRD and SEM results indicate that LSMO and ZFO coexist in the composites and the ZFO mostly segregates at the grain boundaries of LSMO, which agreed well with the results of the magnetic measurements. The resistivity of the samples increased by the increase of the ZFO doping level. A clear metal-to-insulator (M-I) transition was observed at 360K in pure LSMO. The introduction of ZFO further downshifted the transition temperature (350K-160K) while the transition disappeared in the sample (x = 0.09) and it presented insulating/semiconducting behavior in the measured temperature range (100K to 400K). The MR was measured in the presence of the 10kOe field. Compared with pure LSMO, the enhancement of low-field magnetoresistance (LFMR) was observed in the composites. It was clearly observed that the magnetoresistance effect of x = 0.03 was enhanced at room temperature range. These phenomena can be explained using the double-exchange (DE) mechanism, the grain boundary effect and the intrinsic transport properties together.

The Magnetic Properties of Co-Ni-Fe-N Soft Magnetic Thin Films

  • Kim, Y. M.;Park, D.;Kim, K. H.;Kim, J.;S. H. Han;Kim, H. J.
    • Journal of Magnetics
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    • 제5권4호
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    • pp.120-123
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    • 2000
  • Co-Ni-Fe-N thin films were fabricated by a $N_2$ reactive rf magnetron sputtering method. The nitrogen partial pressure ($P_{N2}$) was varied in the range 0~10% . As$P_{N2}$ increases in this range, the saturation magnetization $B_s$ linearly decreases from 19.8 kG to 14 kG and the electrical resistivity ($\rho$) increases from 27 to 155 $\mu\Omegacm$. The coercivity $H_c$ exhibits the minimum value at 4% $P_{N2}$. The magnetic anisotropy fields ($H_k$) are in the range of 20$\sim$50 Oe. High frequency characteristics of $(Co_{22.2}Ni_{27.6}Fe_{50.2})_{100-x}N_x$ films are excellent in the range of 3$\sim$5% of $P_{N2}$. In particular, the effective permeability of the film fabricated at 4% $P_{N2}$ is 800, which is maintained up to 600 MHz. This film also shows Bs of 17.5 kG, $H_c$/ of 1.4 Oe, resistivity of 98$\mu\Omegacm$ and $H_k$ of about 25 Oe. Also, the corrosion resistance of $(Co_{22.2}Ni_{27.6}Fe_{50.2})_{100-x}N_x$ films was imp roved with increasing N concentration.

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Synthesis and M$\ddot{o}$ssabuer Spectroscopy Studies of $Nd_{1-x}Bi_xY_2Fe_5O_{12}$ Nano-Particles

  • Uhm, Young Rang;Lee, Jae-Gwang;Kim, Chul Sung
    • Journal of Magnetics
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    • 제5권1호
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    • pp.16-18
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    • 2000
  • The garnets $Nd_{1-x}Bi_xY_2Fe_5O_{12}$ ($\chi$=0.0, 0.25, 0.5, 0.75 and 1.0) have been studied by x-rays, electron microscopy, ferromagnetic resonance, vibrating sample magnetometer and Mossbauer spectroscopy, Ultra-fine polycrystalline cubic samples have been prepared by a melt-salt routed sol-gel method. The Mossbauer spectra consist of two sets of six-line patterns corresponding to $Fe^{3+}$ at the tetrahedral 24(d) and octahedral 16(a) sites. Magnetic hyperfine fields of $Nd_{0.5}Bi_{0.5}Y_2Fe_5O_{12}$ at 12 K are found to be 548 kOe (octahedral site) and 475 kOe (tetrahedral site), respectively, It is found that Debye temperatures for the tetrahedral and octahedral sites of $Nd_{0.75}Bi_{0.25}Y_2Fe_5O_{12}$ are $\theta_{tet}=436$ K and $\theta_{oct}=285$ K, respectively, The iron ions at both sites are highly covalent ferric. The Nel temperature decreases linearly with Bi concentration, from 630 K fur $\chi$=0.0 to 600 K for $\chi$=1.0, suggesting that the superexchange interaction for the Nd-O-Fe link is stronger than that for the Bi-O-Fe link. As a consequence, the coercivity of $Nd_{1-x}Bi_xY_2Fe_5O_{12}$ drastically decreases and the magnetization remains almost constant as x increases.

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Fabrication and magnetic properties of hexagonal BaFe12O19 ferrite obtained by magnetic-field-assisted hydrothermal process

  • Zhang, Min;Dai, Jianming;Liu, Qiangchun;Li, Qiang;Zi, Zhenfa
    • Current Applied Physics
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    • 제18권11호
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    • pp.1426-1430
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    • 2018
  • High magnetic field effects on the microstructure and magnetic properties of $BaFe_{12}O_{19}$ hexaferrites synthesized hydrothermal method have been investigated. The obtained results indicate that the lattice constant decreases gradually as the magnetic field strength increases, which may be attributed to the lattice distortion resulted from the high magnetic field. Polycrystalline $BaFe_{12}O_{19}$ samples prepared under magnetic field strength at zero and 5 T are single phase. It is found that application of external magnetic field during synthesis can induce orientated growth of the hexaferrite crystals along the easy magnetic axis. The magnetic properties can be effectively regulated by an application of high magnetic fields. It is observed that the $BaFe_{12}O_{19}$ prepared under a 5 T magnetic field exhibits a higher room-temperature saturation magnetization (66.3 emu/g) than that of the sample (43.6 emu/g) obtained without magnetic field. The results can be explained as the enhanced crystalline, improvement of $Fe^{3+}$ ions occupancy and the oriented growth induced by the external magnetic field. The growing orientation of particles gives rise to increased coercivity due to the enhancement in shape anisotropy. It is expected that an application of magnetic field during the formation of magnetic nanoparticles could be a promising technique to modify magnetic properties with excellent performance.

THE MAGNETIC PROPERTIES OF Co-Ni-Fe-N SOFT MAGNETIC THIN FILMS

  • Kim, Y. M.;Park, D.;Kim, K. H.;Kim, J.;S. H. Han;Kim, H. J.
    • 한국자기학회:학술대회 개요집
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    • 한국자기학회 2000년도 International Symposium on Magnetics The 2000 Fall Conference
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    • pp.492-499
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    • 2000
  • Co-Ni-Fe-N thin films were fabricated by a N$\sub$2/ reactive rf magnetron sputtering method. The nitrogen partial pressure (P$\sub$N2/) was varied in the range of 0∼10%. As P$\sub$N2/ increases in this range, the saturation magnetization (B$\sub$s/) linearly decreases from 19.8 kG to 14 kG and the electrical resistivity ($\rho$) increased from 27 to 155 ${\mu}$$\Omega$cm. The coercivity (H$\sub$c/) exhibits the minimum value at 4% of P$\sub$N2/. The magnetic anisotropy (H$\sub$k/) are in the range of 20∼50 Oe. High frequency characteristics of (Co$\sub$22.2/Ni$\sub$27.6/Fe$\sub$50.2/)$\sub$100-x/N$\sub$x/ films are excellent in the range of 3∼5% of P$\sub$N2/. Especially the effective permeability of the film fabricated at 4% of P$\sub$N2/ is 800, which is maintained up to 600 MHz. This film also shows Bs of 17.5 kG, H$\sub$c/ of 1.4 Oe, resistivity of 98 $\Omega$cm and H$\sub$k/ of about 25 Oe. Also, the corrosion resistance of (Co$\sub$22.2/Ni$\sub$27.6/Fe$\sub$50.2/)$\sub$100-x/N$\sub$x/ were improved with the increase in N concentration.

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A Study on the Magnetic Properties of Ion Irradiated Cu/Co Multilayer System

  • Kim, T.Y.;Chang, G.S.;Son, J.H.;Kim, S.H.;Shin, S.W.;Chae, K.H.;Sung, M.C.;Lee, J.;Jeong, K.;Lee, Y.P.;;Whang, C.N
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2000년도 제18회 학술발표회 논문개요집
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    • pp.163-163
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    • 2000
  • In this research, we used the ion irradiation technique which has an advantae in improving intentionally the properties of surface and interface in a non-equilibrium, instead of the conventional annealing method which has been known to improve the material properties in the equilibrium stat. Cu/Co multilayered films were prepared on SiN4/SiO2/Si substrates by the electron-beam evaporation for the Co layers and the thermal evaporation for the Cu layers in a high vacuum. The ion irradiation with a 80keV Ar+ was carried out at various ion doses in a high vacuum. Hysteresis loops of the films were investigated by magneto-optical polar Kerr spectroscopy at various experimental conditions. The change of atomic structure of the films before and after the ion irradiation was studied by glancing angle x-ray diffraction, and the intermixing between Co and Cu sublayers was confirmed by Rutherford backscattering spectroscopy. The surface roughness and magneto-resistance were measured by atomic force microscopy and with a four-point probe system, respectively. During the magneto-resistance measurement, we changed temperature and the direction of magnetization. From the results of experiments, we found that the change at the interfaces of the Cu/Co multilayered film induced by ion irradiation cause the change of magnetic properties. According to the change in hysteresis loop, the surface inplane component of magnetic easy axis was isotropic before the ion irradiation, but became anisotropic upon irradiation. It was confirmed that this change influences the axial behavior of magneto-resistance. Especially, the magneto-resistance varied in accordance with an external magnetic field and the direction of current, which means that magneto-resistance also shows the uniaxial behavior.

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무전해 Co-W-P 합금 도금 층의 미세구조와 자기적 특성 (Micro-Structure and Magnetic Properties of Electroless Co-W-P Alloy Deposits Formed)

  • 윤성렬;한승희;김창욱
    • 한국재료학회지
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    • 제10권1호
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    • pp.97-106
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    • 2000
  • 본 연구에서는 NaH$_2$PO$_2$$H_2O$ (차아인산이수소나트륨)을 환원제로 사용한 무전해 도금법을 이용하여 corning glass 2948 유리기판 위에 Co-W-P 도금층을 제조할 때, pH 및 온도에 따른 석출속도, 합금조성 및 미세구조와 자기적 특성을 고찰하였다. 무전해 Co-P 도금층은 석출전위에 따라 산성에서 석출되지 않고 알칼리성에서만 환원석출반응에 의해 형성되었으며, 석출속도는 pH와 온도가 증가할수록 상승하여 pH 10, 온도 8$0^{\circ}C$일 때 가장 우수하였다. 자기적 특성은 pH 9, 온도 7$0^{\circ}C$일 때 보자력 870Oe, 각형비 0.78로 가장 우수하였으며, 이때, Co-P 도금층의 인(P)의 함량은 2.54%, 두께는 0.216$\mu\textrm{m}$였다. 결정배향은 $\beta$-Co의 fcc는 발견되지 않았고, $\alpha$-Co의 hcp(1010), (0002), (1011) 방향의 결정배향을 확인할 수 있었으며, (1010), (1011) 방향이 우선 배향한 것으로 보아 수평자기벡터를 형성함을 확인할 수 있었다. 무전해 Co-W-P 도금층의 경우는 자기적 특성에서 보자력은 500Oe, 각형비는 0.6 정도의 경향을 보였지만, 결정배향에 있어서는 $\alpha$-Co (0002) 방향으로 우선 배향하여 수직자화벡터를 형성함을 확인할 수 있었으며, 합금조성에 있어 인(P)의 함량은 0.8$\pm$0.2%로 일정하였고, W의 석출량은 $Na_2$WO$_4$의 농도가 증가할수록 증가하여 0.1mol/L일 때 20%이였다. 수소가스를 이용한 환원분위기에서 10$0^{\circ}C$간격으로 1시간씩 40$0^{\circ}C$까지 열처리에 따른 자기적 특성과 미세구조의 변화를 확인하여 본 결과 Co-W-P는 열처리에 따라 표면의 평활도는 향상되었지만, 자기적 특성과 미세구조에는 아무런 변화가 없었다.

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졸-겔 방법을 이용하여 제작된 (Mn, Cr)xCo1-xFe2O4 박막의 구조적, 자기적 특성 (Structural and Magnetic Properties of (Mn, Cr)xCo1-xFe2O4 Thin Films Prepared by Sol-gel Method)

  • 김광주;김희경;박영란;박재윤
    • 한국자기학회지
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    • 제16권1호
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    • pp.23-27
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    • 2006
  • 역스피넬 산화물 $CoFe_2O_4$에서 Co를 Mn 또는 Cr클 치환하여 얻어지는 $Mn_xCo_{1-x}Fe_2O_4$$Cr_xCo_{1-x}Fe_2P_4$ 박막시료 들을 졸-겔 방법을 이용하여 제작하고 그 구조적, 자기적 특성들을 비교분석 하였다. X-ray diffraction 측정 결과, Mn 치환의 경우는 치환량의 증가에 따라 격자상수가 증가하였지만 Cr치환의 경우는 격자상수가 거의 변화하지 않음이 관측되었다. 이와 같은 결과는 Mn 치환의 경우 팔면체 자리의 Co이온과 같은 원자가 +2를 가지게 되는 것으로 설명 가능하며 Cr치환의 경우는 +3을 가지게 되어 같은 양의 $Fe^{3+}$이온들의 $Fe^{2+}$로의 환원이 발생하는 것으로 설명되어질 수 있다. $Cr_Co_{1-x}Fe_2O_4$박막들에 대한 Mossbauer 스펙트럼 측정 결과 사면체 자리에 $Fe^{2+}$이온의 존재가 관측되었으며 이는 $Cr^{3+}$이온의 팔면체 자리 치환에 의하여 야기되는 사면체 자리의 $Fe^{3+}{\rightarrow}Fe^{2+}$ 환원에 의한 것으로 해석된다. 반면에 $Mn_xCo_{1-x}Fe_2O_4$ 박막들에 대한 Mossbauer스펙트럼 측정 결과, $Fe^{2+}$ 이온의 존재는 관측되지 않았으며 Mn 치환량이 큰 경우 (>0.47)팔면체 자리의 $Fe^{3+}$이온들의 사면체 자리로의 이동이 관측되었다. 박막들에 대한 진동시료자화(vibrating sample magnetometry)측정 결과, Mn, Cr 치환의 경우 모두 $CoFe_2O_4$와 비교하여 포화자화량이 증가함이 나타났으며 치환에 관여한 이온들 간의 스핀 자기 능률 크기의 비교를 통하여 그 정성적인 설명이 가능하다.