• 제목/요약/키워드: $Mo_2FeB_2$

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$Fe_{76-x} Cu_1Mo_xSi_14B_9(x=2, 3)$ 초미세 결정합금의 자기적 특성 (Magnetic Properties of Nanocrystalline $Fe_{76-x}Cu_1Mo_xSi_{14}B_9$(x=2,3) Alloys)

  • 피우갑;노태환;김희중;강일구
    • 한국자기학회지
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    • 제1권1호
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    • pp.12-16
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    • 1991
  • F $e_{76-x}$ C $u_{1}$M $o_{x}$S $i_{14}$ $B_{9}$(x=2, 3)비정질합금의 열처리에 따른 자기적특성과 미세구조의 변화에 대해 조사하였다. 이들합금을 500 .deg. C에서 1시간 열처리한 경우, 결정화에 의해 약 20mm의 입경을 갖는 .alpha. -Fe의 초미세결정립 조직으로 변태하였으며, 이때 얻어진 합금의 실효투자율은 8~9*$10^{3}$, 보자력은 3~4A/m정도이었다. 초미세결정합금의 연자기특성을 크게 좌우하는 요소중의 하나가 입경의 크기이며, 우수 한 자성특성을 얻기위해서는 결정립의 미세화가 요구되는 것으로 알려져 있다. 이에 따라 Fe-Cu-Mo-Si-B계 합금의 경우보다 우수한 연자기특성을 얻기 위하여 2단 열처리를 행하였다. 즉, 400 .deg. C에서 1~3시간 저온 열처리 후 500 .deg. C에서 1시간 고온열처리를 하면 입경이 10nm이하로 감소하였으며, 이때 얻어진 합금의 실효투자율은 1.2~ 1.7*$10^{4}$이고 보자력은 ~2A/m이었다. 이와 같은 연자기특성의 향상은 .alpha. -Fe(Si)결정립의 미세화에 따른 평균결정자기이방성 의 감소에 기인하는 것으로 믿어진다.

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Preparation of gas-atomized Fe-based alloy powders and HVOF sprayed coatings

  • Chau, Joseph Lik Hang;Pan, Alfred I-Tsung;Yang, Chih-Chao
    • Advances in materials Research
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    • 제6권4호
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    • pp.343-348
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    • 2017
  • High-pressure gas atomization was employed to prepare the Fe-based $Fe_{50}Cr_{24}Mo_{21}Si_2B_3$ alloy powder. The effect of flow rate of atomizing gas on the median powder diameter was studied. The results show that the powder size decreased with increasing the flow rate of atomizing gas. Fe-based alloy coatings with amorphous phase fraction was then prepared by high velocity oxygen fuel spraying (HVOF) of gas atomized $Fe_{50}Cr_{24}Mo_{21}Si_2B_3$ powder. Microstructural studies show that the coatings present dense layered structure and low porosity of 0.17% in about $200{\mu}m$ thickness. The Fe-based alloy coating exhibits an average hardness of about 1230 HV. Our results show that the HVOF process results in dense and well-bonded coatings, making it attractive for protective coatings applications.

$A_{2-x}La_xFeMoO_6$(A=Ca and Ba)의 자기적 특성

  • 양현모;한혁;이우영;이보화
    • 한국자기학회:학술대회 개요집
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    • 한국자기학회 2002년도 동계연구발표회 논문개요집
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    • pp.86-87
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    • 2002
  • Fe과 Mo이 교대로 정렬해 있는 이중 페로브스카이트 구조를 갖는 $A_{2-x}$FeMo $O_{6}$(A=Ca, Sr, Ba) 화합물들은 망간 산화물들에 비해 높은 $T_{c}$ (310-420K)의 준강자성 상태를 갖는다.$^{1.3}$ 이 화합물들은 F $e^{3+}$ (S=5/2) 와 M $o^{5+}$(S=1/2) 스핀들 사이의 커다란 반강자성 상호작용으로 이론적으로 4$\mu$$_{B}$/f.u.의 $M_{s}$ 값을 갖는다. A-site의 평균 이온 반경( $r_{A}$)이 증가함에 따라 이 화합물들의 결정구조는 Monoclinic(A=Ca)에서 Tetragonal(Sr)과 Cubic(Ba)으로 점진적으로 변화한다.$^3$(중략)(중략)략)략)

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La1-xSrxMO3(M = Fe, Co, Mn) 물질을 이용한 포름알데히드 가스센서의 제조와 특성 (Fabrication and characteristics of La1-xSrxMO3(M = Fe, Co, Mn) formaldehyde gas sensors)

  • 김한지;최정범;김신도;유광수
    • 센서학회지
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    • 제17권3호
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    • pp.203-209
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    • 2008
  • Thick film formaldehyde (HCHO) gas sensors were fabricated by using $La_1_{-x}Sr_xMO_3$ (M= Fe, Co, Mn) ceramics. The powders of $La_1_{-x}Sr_xMO_3$ (M=Fe, Co, Mn) were synthesized by conventional solid-state reaction method. By using the $La_1_{-x}Sr_xMO_3$ (M=Fe, Co, Mn) paste, the thick-film formaldehyde sensors were prepared on the alumina substrate by silkscreen printing method. The experimental results revealed that $La_1_{-x}Sr_xMO_3$ (M= Fe, Co, Mn) ceramic powder has a perovskite structure and the thick-film sensor shows excellent gas-sensing characteristics to formaldehyde gas (sensitivity of $La_{0.8}Sr_{0.2}FeO_3$, S= 14.7 at operating temperature of $150^{\circ}C$ in 50 ppm HCHO ambient).

붕규산 소다 유리의 분상 및 화학적 내구성에 대한 첨가제의 영향 (Effects of Additives on the Phase Sepration and the Chemical Durability of Sodium Borosilicate Glasses)

  • 현상훈;천광수;송원선
    • 한국세라믹학회지
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    • 제25권2호
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    • pp.173-183
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    • 1988
  • Effects of oxide additives such as MoO3, MnO2 ZrO2 and Fe2O3 on the phase separation and the chemical durability of sodium borosilicate glasses which are the host of waste glasses have been investigated as the basic study on the nuclear-waste immobilization through vitrification. MoO3 and MnO2 were found to be phase separation promotors which increased the temperature as well as catalyzed nucleation and growth for the phase separation of the 10Na2-O-3OB2O3-6OSiO2 (wt%) parent glass within the immiscibility region. The glasses had the interconnected phase-separated structure as the amount of addition increased. On the other hand, ZrO2 and Fe2O3 were inhibitors which showed the reverse effects to the above promotors. It was also found that addition of MoO3 could cause the phase separaton of the 20Na2O-10B2O3-70SiO2(wt%) glass even within the miscibility region. Addition of ZrO2 and Fe2O3 increased the chemical durability of the parent glass within the immiscibility region. Within the miscibility region, however, the addition of 1.96 wt % of MoO3 increased the chemical durability considerably, while MnO2 had little effects.

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Effect of Iron Deficiency on the Capacity for Peroxisomal and Mitochondrial $\beta$-oxidation

  • Swan Patricia B
    • Journal of Nutrition and Health
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    • 제26권7호
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    • pp.887-898
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    • 1993
  • In order to determine the effect of iron depletion and subsequent supplementation on the muscle capacity for peroxisomal (PO) and mitochondrial(MO) $\beta$-oxidation during high fat feeding, weanling rats were fed a 44% (HF) or 2.5% (LF) fat diet with (+Fe) or without (-Fe) iron for 6 or 9 weeks. After 1 week rats fed HF+Fe or HF-Fe had 50-100% more PO and MO in heart, soleus, psoas and gastrocnemius than did rats fed low fat, but after 3 weeks rats fed HF-Fe had lower muscle PO and MO. In muscles of iron depleted rats PO and MO were not increased by supplementation with iron for 3 weeks. After 6 weeks MO and PO in skeletal muscles of rats fed HF+Fe were lower than after 3 weeks. It is concluded that adequate iron is necessary for miaximum response of muscle PO and MO to high fat feeding. However, after 6 weeks both PO and MO have returned to levels similar to those of rats fed low fat diets, hence, the elevated catalase activities seen at this time do not reflect peroxisomal $\beta$-oxidation.

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Controlled Synthesis of Single-Walled Carbon Nanotubes

  • Park, Chong-Yun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.2-2
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    • 2011
  • Single-walled carbon nanotubes (SWNTs) have been considered as a promising candidate for nextgeneration electronics due to its extraordinary electrical properties associated with one-dimensional structure. Since diversity in electronic structure depends on geometrical features, the major concern has been focused on obtaining the diameter, chirality, and density controlled SWNTs. Despite huge efforts, the controlled synthesis of SWNTs has not been achieved. There have been various approaches to synthesize controlled SWNTs by preparation of homogeneously sized catalyst because the SWNTs diameter highly depends on catalyst nanoparticles size. In this study, geometrically controlled SWNTs were synthesized using designed catalytic layers: (a) morphologically modified Al2O3 supporting layer (Fe/Al2O3/Si), (b) Mo capping layer (Mo/Fe/Al/Si), and (c) heat-driven diffusion and subsequent evaporation process of Fe catalytic nanoparticles (Al2O3/Fe/Al2O3/Si). These results clearly revealed that (a) the grain diameter and RMS roughness of Al2O3 supporting layer play a key role as a diffusion barrier for obtaining Fe nanoparticles with a uniform and small size, (b) a density and diameter of SWNTs can be simultaneously controlled by adjusting a thickness of Mo capping layer on Fe catalytic layer, and (c) SWNTs diameter was successfully controlled within a few A scale even with its fine distribution. This precise control results in bandgap manipulation of the semiconducting SWNTs, determined by direct comparison of Raman spectra and theory of extended tight binding Kataura plot. We suggest that these results provide a simple and possible way for the direct growth of diameter, density, and bandgap controlled SWNTs by precise controlling the formation of catalytic films, which will be in demand for future electronic applications.

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고강도 인바계 합금의 열팽창 및 인장 특성에 미치는 바나듐과 탄소 원소 첨가 영향 (Effects of V and C additions on the Thermal Expansion and Tensile Properties of a High Strength Invar Base Alloy)

  • 윤애천;윤신천;하태권;송진화;이기안
    • 소성∙가공
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    • 제24권1호
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    • pp.44-51
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    • 2015
  • The current study seeks to examine the effects of V and C additions on the mechanical and low thermal expansion properties of a high strength invar base alloy. The base alloy (Fe-36%Ni-0.9%Co-2.75%Mo-0.7Cr-0.23Mn-0.17Si-0.3%C, wt.%) contains $Mo_2C$ carbides, which form as the main precipitate. In contrast, alloys with additions of 0.4%V+0.3%C (alloy A) or 0.4%V+0.45%C (alloy B) contain $Mo_2C$+[V, Mo]C carbides. The average thermal expansion coefficients of these high strength invar based alloys were measured in the range of $5.16{\sim}5.43{\mu}m/m{\cdot}^{\circ}C$ for temperatures of $15{\sim}230^{\circ}C$. Moreover, alloy B showed lower thermal expansion coefficient than the other alloys in this temperature range. For the mechanical properties, the [V, Mo]C improved hardness and strengths(Y.S. and T.S.) of the high strength invar base alloy. T.S.(tensile strength) and Y.S.(yield strength) of hot forged alloy B specimen were measured at 844.6MPa and 518.0MPa, respectively. The tensile fractography of alloy B exhibited a ductile transgranular fracture mode and voids were initiated between the [V, Mo]C particles and the matrix. Superior properties of high strength and low thermal expansion coefficient can be obtained by [V, Mo]C precipitation in alloy B with the addition of 0.4%V and 0.45%C.

Fe-28at.%Al 합금의 미세조직과 기계적 성질에 미치는 Cr, Mo 및 B의 영향 (Effects of Cr, Mo an B additions on the microstructure and mechanical properties of Fe-28at.%Al alloys)

  • 최답천;이연오;김관휴;박은식;이호종
    • 한국주조공학회지
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    • 제15권5호
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    • pp.469-476
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    • 1995
  • The effects of Cr, Mo or B additions were investigated on $B2{\leftrightarrow}DO_3$ structural transition temperature $(T_C)$ and mechanical properties of Fe-28at.%Al. The raw materials were arc-melted in vacuum and then subjected to the following heat-treatments to maximize the $DO_3$ ordered structure : $1000^{\circ}C/7days$, slowly cooled to $500^{\circ}C$ and then held for 5 days. In the effect on the grain refinment, the addition of alloying element B was the most effective. The addition of Cr or Mo had little effect. When 1at.%Mo was added, $T_c$ increase about $30^{\circ}C$, but Cr had a very little effect on $T_c$. On the contrary, when B was added, $T_c$ was apt to come down minutely. In the additional effect of alloying element on the mechanical properties, Cr was apt to decrease the microvickers hardness and yield strength, Mo and B didn't have much effect. In the case of compressure strength test, the effect of the environment on the yield strength was contrary to the result of the tensile strength test.

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