• 제목/요약/키워드: $\varepsilon$-FeSi

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β-FeSi2의 열전변환특성에 미치는 분말산화의 영향 (The Effect of Powder Oxidation on the Thermoelectric Properties of β-FeSi2)

  • 배철훈
    • 한국세라믹학회지
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    • 제40권11호
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    • pp.1106-1112
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    • 2003
  • $\beta$-FeSi$_2$의 열전물성에 있어서 산소의 역할을 규명하기 위해서, 고온상 ($\alpha$+$\varepsilon$)과 저온상 ($\beta$)-FeSi$_2$ 시료에 대해 산화처리에 따른 열전물성 측정 및 분석실험을 행하였다. 산화에 의해 소결밀도가 감소하였으며, 반도체상으로의 전이도 방해되었다. 모든 시료에서 도전율과 열전도율은 산화처리시간과 함께 감소하였다. 순수한 FeSi$_2$ 및 고온상 ($\alpha$+$\varepsilon$)을 산화처리한 시료 Seebeck 계수는 작은 양의 값을 나타낸 반면에, 저온상 ($\beta$)을 산화처리한 FeSi$_2$ 는 음의 값을 나타내었으며 약 500K 부근에서 최대값을 나타내었다. 또 산화시간과 함께 최대값도 증가하였다.

P형 Fe(Mn)Si2 열전재료 분말의 성형 및 미세조직 (Consolidation of p-type Fe(Mn)Si2 Thermoelectric Powder and Microstructure)

  • 심재식;홍순직;천병선
    • 한국분말재료학회지
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    • 제15권5호
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    • pp.345-351
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    • 2008
  • The effects of the dopant (Mn) ratio on the microstructure and thermoelectric properties of $FeSi_2$ alloy were studied in this research. The alloy was fabricated by a combination process of ball milling and high pressure pressing. Structural behavior of the sintered bulks were systematically investigated by XRD, SEM, and optical microscopy. With increasing dopan (Mn) ratio, the density and ${\varepsilon}-FeSi$ phase of the sintered bulks increased and maximum density of 94% was obtained in the 0.07% Mn-doped alloy. The sintered bulks showed fine microstructure of ${\alpha}-Fe_{2}Si_{5}$, ${\varepsilon}-FeSi$ and ${\beta}-FeSi_2$ phase. The semiconducting phase of ${\beta}-FeSi_2$ was transformed from ${\alpha}-Fe_{2}Si_{5}+{\varepsilon}-FeSi$ phase by annealing.

MA/SPS 공정에 의한 β-FeSi2 열전재료의 제조(I) -β-FeSi2상의 형성- (Preparation of β-FeSi2 Thermoelectric Materials by MA/SPS Process -Formation ofβ-FeSi2Phase-)

  • 김환태;권영순;이충효
    • 한국재료학회지
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    • 제12권3호
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    • pp.176-181
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    • 2002
  • Fabrication of ${\beta}-FeSi_2$ was attempted by making use of the combined process of mechanical alloying (MA) and spark plasma sintering (SPS). MA was performed under the Ar gas atmosphere using mixed powders of pure iron and silicon having the mole fraction of 1:2. SPS process was performed at 800-85$0^{\circ}C$ with the applied pressure of 50MPa and the holding time was ranging from 0 to 30min. The mechanically alloyed powder by cyclic operation of rotor for 15hrs consisted of $\varepsilon$-FeSi and Si phases. When this mechanically alloyed powder was sintered by SPS process above 85$0^{\circ}C$, $\varepsilon$-FeSi and ${\alpha}-Fe_2Si_5$ phase were formed. Bulk product sintered at 82$0^{\circ}C$ for 30min consisted of ${beta}-FeSi_2$ phase with a small fraction of $\varepsilon$-FeSi and the density of sintered specimen was 75.3% theoretical density. It was considered that the MA/SPS combined process was effective for the preparation of ${\beta}-FeSi_2$ without heat treatment process after sintering.

기계적 합금화로 제조한 N형 β의 상변화 및 열전 특성 (Phase Transformation and Thermoelectric Properties of N-tyre β Processed by Mechanical Alloying)

  • 어순철
    • 한국재료학회지
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    • 제12권5호
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    • pp.375-381
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    • 2002
  • N-type ${\beta}-FeSi_2$ with a nominal composition of $Fe_{0.98}Co_{0.02}Si_2$ powders has been produced by mechanical alloying process and consolidated by vacuum hot pressing. As-milled powders were of metastable state and fully transformed to ${\beta}-FeSi_2$ phase by subsequent isothermal annealing. However, as-consolidated $Fe_{0.98}Co_{0.02}Si_2$ consisted of untransformed mixture of ${\alpha}-Fe_2Si_ 5$ and $\varepsilon$-FeSi phases. Isothermal annealing has been carried out to induce the transformation to a thermoelectric semiconducting ${\beta}-FeSi_2$ phase. The transformation behavior of ${\beta}-FeSi_2$ was investigated by utilizing DTA, a modified TGA under magnetic field, SEM, and XRD analyses. Isothermal annealing at $830^{\circ}C$ in vacuum led to the thermoelectric semiconducting ${\beta}-FeSi_2$ phase transformation, but some residual metallic $\alpha$ and $\varepsilon$ phases were unavoidable even after prolonged annealing. Thermoelectric properties were remarkably improved by isothermal annealing due to the transformation from metallic $\alpha$ and $\varepsilon$ phases to semiconducting phases.

Nature of the Interfacial Regions in the Antiferromagnetically-coupled Fe/Si Multilayered Films

  • Moon, J.C.;Y.V. Kudryavtsev;J.Y.Rhee;Kim, K.W.;Lee, Y.P.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2000년도 제18회 학술발표회 논문개요집
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    • pp.174-174
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    • 2000
  • A strong antiferromagnetic coupling in Fe/Si multilayered films (MLF) had been recently discovered and much consideration has been given to whether the coupling in the Fe/Si MLF system has the same origin as the metal/metal MLF. Nevertheless, the nature of the interfacial ron silicide is still controversial. On one hand, a metal/ semiconductor structure was suggested with a narrow band-gap semiconducting $\varepsilon$-FeSi spacer that mediates the coupling. However, some features show that the nature of coupling can be well understood in terms of the conventional metal/metal multilayered system. It is well known that both magneto-optical (MO) and optical properties of a metal depend strongly on their electronic structure that is also correlated with the atomic and chemical ordering. In this study, the nature of the interfacial regions is the Fe/Si multilayers has been investigated by the experimental and computer-simulated MO and optical spectroscopies. The Fe/Si MLF were prepared by rf-sputtering onto glass substrates at room temperature with the number of repetition N=50. The thickness of Fe sublayer was fixed at 3.0nm while the Si sublayer thickness was varied from 1.0 to 2.0 nm. The topmost layer of all the Fe/Si MLF is Fe. In order to carry out the computer simulations, the information on the MO and optical parameters of the materials that may constitute a real multilayered structure should be known in advance. For this purpose, we also prepared Fe, Si, FeSi2 and FeSi samples. The structural characterization of Fe/Si MLF was performed by low- and high -angle x-ray diffraction with a Cu-K$\alpha$ radiation and by transmission electron microscopy. A bulk $\varepsilon$-FeSi was also investigated. The MO and optical properties were measured at room temperature in the 1.0-4.7 eV energy range. The theoretical simulations of MO and optical properties for the Fe/Si MLF were performed by solving exactly a multireflection problem using the scattering matrix approach assuming various stoichiometries of a nonmagnetic spacer separating the antiferromagnetically coupled Fe layers. The simulated spectra of a model structure of FeSi2 or $\varepsilon$-FeSi as the spacer turned out to fail in explaining the experimental spectra of the Fe/Si MLF in both intensity and shape. Thus, the decisive disagreement between experimental and simulated MO and optical properties ruled out the hypothesis of FeSi2 and $\varepsilon$-FeSi as the nonmagnetic spacer. By supposing the spontaneous formation of a metallic ζ-FeSi, a reasonable agreement between experimental and simulated MO and optical spectra was obtained.

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방전플라즈마 소결법으로 제작한 β-FeSi2 소결체의 고온 내산화성 (Oxidation Resistance of SPS (Spark Plasma Sintering) Sintered β-FeSi2Bodies at High Temperature)

  • 장세훈;홍지민;오익현
    • 한국재료학회지
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    • 제17권3호
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    • pp.132-136
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    • 2007
  • Oxidation resistance of sintered ${\beta}-FeSi_{2}$ was investigated at intermediate temperature range in air atmosphere. Fully dense and porous bodies of ${\beta}-FeSi_{2}$ samples were fabricated by using the Spark Plasma Sintering (SPS). They were annealed at $900^{\circ}C$ for 5days to obtain ${\beta}-FeSi_{2}$ phase. The bulk samples were oxidized at $800,\;900\;and\;950^{\circ}C$ in air atmosphere. The high temperature oxidation tests reveal that amorphous $SiO_{2}$ layer, similar to Si was formed and grew parabolically on ${\beta}-FeSi_{2}$. Accelerated oxidation is not observed as well as cracks and grain boundary oxidation. Granular ${\varepsilon}-FeSi$ was developed below the oxide layer as a result of oxidation of ${\beta}-FeSi_{2}$. Oxidation resistance of sintered ${\beta}-FeSi_{2}$ was excellent for high-temperature thermoelectric application.

Fe-17%Mn 합금의 진동감쇠능과 기계적 성질에 미치는 합금원소(C, Si) 및 열간압연의 영향 (Effects of Alloying Elements(C, Si) and Hot-Rolling on Damping Capacity and Mechanical Properties of Fe-17%Mn Alloys)

  • 김정철;한동운;백진현;김태훈;백승한;이영국
    • 열처리공학회지
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    • 제18권2호
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    • pp.99-104
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    • 2005
  • In this study, the effects of C and Si on damping capacity and mechanical properties of as-cast and as-rolled Fe-17%Mn alloys were investigated as a basic study for the purpose of the commercialization of the alloy. The $M_s$ temperature of ${\gamma}{\rightarrow}{\varepsilon}$ martensitic transformation in Fe-17%Mn alloy was decreased with increasing C and Si contents, resulting in the less volume fraction of ${\varepsilon}$ martensite. The damping capacity was also decreased with increasing alloying content because of less ${\varepsilon}$ amount and the reduction in mobility of the damping sources such as the stacking fault boundaries and ${\gamma}/{\varepsilon}$ interfaces due to the pinning effect by alloying elements. The mechanical properties of as-rolled alloys were superior to those of as-cast alloys probably because of finer ${\gamma}$ grains, larger amount of ${\varepsilon}$ martensite, and chemical homogeneity.

Fe-Mn 계 합금에서 비부피 차를 이용한 ${\varepsilon}$ 마르텐사이트의 부피분율 측정 (Measurement of Volume Fraction of ${\varepsilon}$ Martensite using Specific Volume Difference in Fe-Mn Based Alloys)

  • 지광구;한준현;장우양
    • 열처리공학회지
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    • 제16권4호
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    • pp.211-215
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    • 2003
  • In this work, a new way of measuring the volume fraction of e martensite in Fe-based alloys has been proposed. Since the specific volume of ${\varepsilon}$ martensite, depending on alloy composition, is smaller than that of austenite i.e ${\gamma}$ phase, volume expansion takes place during ${\varepsilon}{\rightarrow}{\gamma}$ reverse transformation. As the amount of the volume expansion is proportional to the product of specific volume difference times the volume fraction of ${\varepsilon}$ martensite, the volume fraction of ${\varepsilon}$ martensite can be calculated by measuring the volume expansion and the specific volume difference. Such a relationship was confirmed in Fe-21Mn and Fe-32Mn-6Si alloys which undergo ${\gamma}{\rightarrow}{\varepsilon}$ martensitic transformation on cooling and by cold rolling, respectively. It was also found that the former has isotropic ${\varepsilon}$ martensite while the latter has anisotropic ${\varepsilon}$ martensite.

Si 분산 조직의 p형 $\beta-FeSi_2$ 열전재의 제조 및 특성(l)-제조 조건에 따른 미세조직의 변화- (Preparation and Characterization of P-Type Thermoelectric $\beta-FeSi_2$ Containing Dispersed Si Phase(l)-Microstructural Evolution with Processing Conditions-)

  • 민병규;김일호;이동희
    • 한국재료학회지
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    • 제8권7호
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    • pp.584-590
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    • 1998
  • $(Fe_{0.98}Mn_{0.02})_xSi_2(x{\leq$}1) 조성으로, 용융법으로 제조한 $\alpha$-$Fe_2Si_5$상의 잉곳을 730~85$0^{\circ}C$에서 4~20시간 열처리하거나, 기계적 합금화로 제조한 $\varepsilon$-FeSi과 Si상으로 구성된 분말을 760~85$0^{\circ}C$에서 10분간 가압통전소결하므로써 $\beta$-$FeSi_2$기지상에 Si이 분산된 미세조직을 얻을 수 있었다. 조성, 열처리 온도와 소결 온도에 따라 Si 분상의 크기와 간격이 각기 0.05~0.27$\mu\textrm{m}$와 0.2~0.6$\mu\textrm{m}$ 범위에서 변화하였다. 이와 같은 Si 분산상에 의해 $\beta$-$FeSi_2$의 격자 열전도도가 감소되어 성능지수가 향상될 수 있을 것으로 기대된다.

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기계적 합금화에 의한 Iron-Silicide의 제조 및 특성 (Processing and Properties of Mechanically Alloyed Iron-Silicide)

  • 어순철;김일호
    • 한국재료학회지
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    • 제11권2호
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    • pp.132-136
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    • 2001
  • 기계적 합금화 공정을 이용하여 열전재료$FeSi_2$분말을 제조하여 열간압축법을 사용하여 성형하였다. 열간압축 성형된 $FeSi_2$는 열전특성을 나타내는 $\beta$-$FeSi_2$ 상 및 상변태가 완료되지 않은 $\alpha$-$Fe_2$$Si_{5}$$\varepsilon$-FeSi의 혼합상으로 이루어져 있음이 확인되었다. 열전재료로의 $\beta$-$FeSi_2$ 상변태 유도를 위해 항온열처리를 행하여 상변태 조건을 조사하였다. SEM, TEM, XRD, DTA 등을 이용하여 상변태 거동을 분석한 결과, $830^{\circ}C$에서 24시간 진공 항온열처리 후 단상의 $\beta$-FeSi$_2$ 상을 얻을 수 있었다. 항온열처리 전의 열간압축 성형체와 상변태가 완료된 $\beta$-FeSi$_2$의 기계적 성질과 열전 특성을 측정하여 비교 분석하였다.

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