• 제목/요약/키워드: Fe-Ni Invar alloy

검색결과 30건 처리시간 0.028초

Effect of Carbon on the Coefficient of Thermal Expansion of As-Cast Fe-3 0 wt.%Ni-12.5wt.% Co-xC Invar Alloys

  • 김봉서;유경재;김병걸;이희웅
    • 소성∙가공
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    • 제8권3호
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    • pp.247-247
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    • 1999
  • The segregation (distribution) of nickel and the composition of its constituents influence the low thermal expansion characteristics (Invar effect) in Fe-30 wt.% Ni-12.5 wt.% Co-xC Invar alloy. The change of coefficient of the thermal expansion and magnetic properties were studied as an aspect of carbon addition causing the segregation of Ni in primary austenite of as-cast Fe-30 wt.% Ni-12.5 wt.% Co Invar alloy. The coefficient of thermal expansion of Fe-30 wt.% Ni-12.5 wt.% Co-xC Invar alloy showed its lowest value at 0.08 wt.% carbon, increased with increasing carbon content in the range of 0.08-1.0 wt.%C, kept constant at 1.0-2.0 wt.%C and decreased at carbon higher than 2.0 wt.%. The effective distribution of the coefficient of nickel in as-cast Fe-30 wt.% Ni-12.5 wt.% Co-xC Invar alloy increased with increasing carbon content. The volume fraction of they phase of Fe-30 wt.% Ni-12.5 wt.% Co-xC alloy increased with increasing carbon content. The microstructure of Fe-30 wt.% Ni-12.5 wt.% Co-xC alloy changed with the carbon content was independent of the coefficient of thermal expansion. The Curie temperature changed linearly with the carbon content and was similar to the change of the coefficient of thermal expansion. Moreover, the coefficient of thermal expansion decreased when the ratio of saturation magnetization to Curie temperature ($\sigma_s/T_c$) increased, decreasing the Curie temperature and showed a specific relationship with the magnetic properties of the Fe-30 wt.% Ni-12.5 wt.% Co-xCInvar alloy.

A Study on AK Shadow Mask with Fe-Ni Alloy Coating for Flat CPTs

  • Kim, Sang-Mun
    • Journal of Information Display
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    • 제5권4호
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    • pp.27-30
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    • 2004
  • This paper investigates the effects of coating such as Invar (Fe-36% Ni), Fe-Ni Alloys and $WO_3$ on the doming property of aluminum killed (AK) shadow masks, which may be used for flat CPTs. Invar and Fe-Ni Alloys are deposited on AK shadow mask in plasma atmosphere and annealed. $WO_3$ is screen-printed on the deposited layer. The coating is observed to cause a decrease in the doming property of the shadow masks due to their lower thermal expansion coefficients and anti-doming properties.

Fe-Ni Invar 합금에서 나노 결정립 성장이 열팽창계수에 미치는 영향 (Effect of Nano Grain Growth on Coefficient of Thermal Expansion in Electroplated Fe-Ni Invar Alloy)

  • 임태홍;최병학;정효태
    • 한국재료학회지
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    • 제24권10호
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    • pp.515-519
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    • 2014
  • The aim of this paper is to consider the effect of annealing on the coefficient of thermal expansion (CTE) of electroplated Invar Fe-Ni alloy. The CTE of the as-electroplated alloy is lower than those of alloys annealed at $400^{\circ}C$ and $800^{\circ}C$. XRD peaks become sharper as the as-electroplated alloy is annealed, which means the grain growth. The average grain sizes of as-electroplated and as-annealed alloys at $400^{\circ}C$ and $800^{\circ}C$ are 10 nm, 70 nm, and $2{\mu}m$, respectively, as determined by TEM and EBSD analyses. The CTE variation for the various grain sizes after annealing may come from the magnetostriction effect, which generates strain due to changes in the magnetization state of the alloys. The thermal expansion coefficient is considered to be affected by nano grain size in electroplated Fe-Ni Invar alloys. As grain size decreases, ferromagnetic forces might change to paramagnetic forces. The effect of lattice vibration damping of nano grain boundaries could lead to the decrease of CTE.

증용량 송전선 강심용 저열팽창 Fe-Ni-Co 합금에 있어서 용체화처리 영향 (Effect of Heat-treatment in Low Thermal Expansion Coefficient Fe-Ni-Co alloy for Core Material of Increased Capacity Transmission Line)

  • 김봉서;유경재;김병걸;이희웅
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 하계학술대회 논문집
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    • pp.950-952
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    • 2000
  • Considering the effective distribution coefficient of Ni in Fe-Ni-Co invar alloy containing a little amount of carbon, we investigated on the thermal expansion coefficient(${\alpha}$). Fe-Ni-Co invar alloy had a large thermal expansion coefficient in as-casted compared with solution treated. The thermal expansion coefficient of Fe-Ni-Co alloy increased with the carbon content in both state of as-casted and solution treated. The effective distribution coefficient(Ke$\^$Ni/) of Ni was smaller than unity in alloy of not containing carbon, but is way larger than unity in alloy of containing carbon. It was considered that the homogeneity of Ni in primary austenite affected thermal expansion coefficient.

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Fe-Ni 인바(Invar) 합금 박판의 가공성 향상을 위한 방향성 조직 제어 (Relationship Between Texture and Deformability in Fe-Ni Invar Alloy Strips)

  • 박성용;남궁정;김문철;김상선;이상석;박찬경
    • 소성∙가공
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    • 제15권8호
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    • pp.586-590
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    • 2006
  • 42Ni-Fe Invar alloy strips were fabricated using conventional ingot casting and melt drag casting followed by rolling. Mechanical properties such as tensile strength, elongation and blanking deformability of the strips were evaluated. The properties were strongly depended on fabrication methods. Tensile strength and elongation of all strips were in the range of $40-60kg/mm^{2}$ and 26-35%, respectively, which are enough values for the manufacture of the final products. In some of the strips, however, burrs occurred at deformed surface. The properties of strips were explained in terms of microstructure such as grain size and texture formation during rolling. Additionally, strips by melt drag casting method were compared to those by conventional ingot casting.

스퍼터링 방법에 의한 Fe-Ni 합금 박막의 집합조직 (Textures of Fe-Ni Alloy Thin Films Fabricated by Sputtering Method)

  • 박용범;임태흥
    • 한국진공학회지
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    • 제10권2호
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    • pp.201-206
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    • 2001
  • 본 연구에서는 RF 마그네트론 스퍼터링 방법을 이용하여 저탄소강 기판에 증착시킨 Fe-Ni계 합금 박막의 집합조직 발달을 조사하였다. Fe-Ni 합금 조성은 산업적 응용을 고려하여 인바합금(Invar alloy, Fe-36.5 wt%Ni)과 퍼멀로이(Permalloy, Fe-81 wt%Ni) 두 종류로 선택하였고, 증착시간을 변수로 제작하였다. 이들 합금 박막의 집합조직은 박막에서 전형적으로 나타나는 섬유집합조직(fibre texture)의 형태로 발달하였다. 인바합금 박막에서는 증착 초기에 <110>//ND 섬유집합조직이 발달하지만 증착시간이 증가함에따라 <210>//ND 섬유집합조직으로 변화하였다. 퍼멀로이 박막은 증착초기에 <221>//ND+<311>//ND의 혼합 집합조직을 나타내며 증착시간의 증가와 함께 <210>//ND 섬유집합조직으로 변화하였다. 이러한 집합조직의 변화를 박막의 미세조직의 진화와의 연관성이란 측면에서 고찰하였다.

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송전선 강심용 Fe-Ni-Co-C 합금의 열팽창계수에 미치는 자기적 특석의 영향 (Effects of Magnetic Characteristics on Coefficient of Thermal Expansion in Fe-Ni-Co-C Invar Alloy for Transmission Line)

  • 김봉서;김병걸;이희웅
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 C
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    • pp.1346-1348
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    • 2001
  • Generally, Invar alloy shows very low thermal expansion characteristics, lower than $2{\times}10^{-6}$/K approximately. To apply Fe-Ni-Co-C Invar alloy as a core material for large ampacity transmission line we studied the effects of magnetic properties on coefficient of thermal expansion. The coefficient of thermal expansion(CTE) suddenly decreases with addition of a little carbon(0.08%), increases with the increasing carbon and has a constant value at the composition over than 1.0%C. The trend of Curie temperature change with carbon is similar with that of CTE. Therefore, the CTE has a linear relationship with Curie temperature. However, the CTE linearly decreases with the ratio of saturation magnetization and Curie temperature(${\sigma}_s/T_c$).

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고강도 인바합금의 석출거동과 기계적 특성 연구 (Study on Precipitation and Mechanical Properties of High Strength Invar Alloy)

  • 정재용;이규동;하태권;정효태
    • 소성∙가공
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    • 제17권7호
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    • pp.507-510
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    • 2008
  • Effect of V addition on the precipitation behavior and strength of Fe-36Ni based high strength Invar alloy for power transmission wire was investigated. Fe-36Ni Invar alloy plates were fabricated using conventional ingot casting followed by hot rolling. High strength can be obtained through precipitation hardening and strain hardening by cold rolling. Simulation using FactSage$^{(R)}$ revealed that equilibrium phases which can be formed are two kinds of MC-type precipitates, $Mo_{2}C$ and $M_{23}C_6$ carbide. The latter stoichiometric carbide was expected to be formed at relatively lower temperature of $800^{\circ}C$.

고강도 저열팽창 인바합금에 있어서 CO 첨가의 영향 (Effects of Co Addition in High Strength and Low Thermal Expansion Invar Alloy)

  • 김봉서;조영암;유경재;권해웅;이희웅;김병걸
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 D
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    • pp.1901-1903
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    • 1999
  • To investigate invar alloy as a core material for increased capacity over-head transmission line which have high strength and low thermal expansion coefficient, hardness and thermal expansion coefficient of Fe-Ni-Co alloy have been studied. It is necessary that invar alloy have low thermal expansion coefficient and high strength for increased capacity over-head transmission line. In this paper. we tried to find out the effect of Ni and Co which has ferromagnetic properties and high saturation magnetization. It was found that Ni decrease thermal expansion coefficient and hardness, Co decrease thermal expansion coefficient but increase hardness in Fe-xNi-Co system. In Fe-(29-x)Ni-Co system, the material has no low thermal expansion properties substituting Co instead of Ni in concentration range of $1\sim7$%Co.

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고강도 인바합금의 강도에 미치는 미세구조와 시효처리 조건의 영향 (Effect Of The Microstructure And Aging Treatment Conditions On Strength Of High Strength Invar Alloy)

  • 정재용;이규동;하태권;정효태
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2007년도 추계학술대회 논문집
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    • pp.322-325
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    • 2007
  • Precipitation characteristics of the Fe-36Ni based high strength Invar alloy for power transmission wire was investigated in this study. High strength can be obtained in this alloy through solution hardening, precipitation hardening and strain hardening by cold working. In the present study, ingots of Fe-36Ni based Invar alloys with the contents of C, Mo and V varied. Microstructure observations by OM, SEM, and TEM were carried out to validate the simulation results. BCC phase and $FeNi_3$ phase are also expected at lower temperatures below $500^{\circ}C$. Aging treatments were carried out at temperatures ranging from 400 to $900^{\circ}C$ for time intervals from 3 min to 100hrs. Peak aging condition was obtained as $400^{\circ}C$ and 1 hr. With temperature increased, peak strength was decreased abruptly. Microstructure observation was conducted by optical microscopy, scanning electron microscopy, and transmission electron microscopy.

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