• Title/Summary/Keyword: Fe-Ni-C alloy

검색결과 183건 처리시간 0.025초

Precipitation Behavior of ${\gamma}"$ in Severely Plastic Deformed Ni-base Alloys

  • Kim, Il-Ho;Kwun, S.I.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.962-963
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    • 2006
  • The precipitation behaviors of ${\gamma}"(Ni_3Nb)$ in four Ni-base alloys were investigated. The four alloys were forged Ni20Cr20Fe5Nb alloy, mechanically alloyed Ni20Cr20Fe5Nb alloy, IN 718 alloy and ECAPed(equal channel angular pressing) IN 718 alloy. Aging treatment was employed at either $600^{\circ}C$ or $720^{\circ}C$ for 20 hrs. The TEM observation and hardness test were performed to identify the formation of ${\gamma}"$. The precipitation of ${\gamma}"$ was noticed after aging at $600^{\circ}C$ for 20 hrs in the mechanically alloyed Ni20Cr20Fe5Nb alloy and ECAPed IN 718 alloy, while it was observed after aging at $720^{\circ}C$ for 20 hrs in the forged Ni20Cr20Fe5Nb alloy and IN 718 alloy before ECAP. The lower aging temperature for ${\gamma}"$ precipitation in the mechanically alloyed Ni20Cr20Fe5Nb alloy and ECAPed IN 718 alloy than in the forged Ni20Cr20Fe5Nb alloy and IN 718 alloy before ECAP appeared to be due to the severe plastic deformation which occurred during mechanical alloying or ECAP.

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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.

Microstructural Evolution in CuCrFeNi, CuCrFeNiMn, and CuCrFeNiMnAl High Entropy Alloys

  • Hyun, Jae Ik;Kong, Kyeong Ho;Kim, Kang Cheol;Kim, Won Tae;Kim, Do Hyang
    • Applied Microscopy
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    • 제45권1호
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    • pp.9-15
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    • 2015
  • In the present study, microstructural evolution in CuCrFeNi, CuCrFeNiMn, and CuCrFeNiMnAl alloys has been investigated. The as-cast CuCrFeNi alloy consists of a single fcc phase with the lattice parameter of 0.358 nm, while the as-cast CuCrFeNiMn alloy consists of (bcc+fcc1+fcc2) phases with lattice parameters of 0.287 nm, 0.366 nm, and 0.361 nm. The heat treatment of the cast CuCrFeNiMn alloy results in the different type of microstructure depending on the heat treatment temperature. At $900^{\circ}C$ a new thermodynamically stable phase appears instead of the bcc solid solution phase, while at $1,000^{\circ}C$, the heat treated microstructure is almost same as that in the as-cast state. The addition of Al in CuCrFeNiMn alloy changes the constituent phases from (fcc1+fcc2+bcc) to (bcc1+bcc2).

93W-6.3Ni-0.7Fe 중합금에서 열처리온도에 따른 기계적 성질변화 (The Effects of Heat Treatment Temperature on Mechanical Property of 93W-6.3Ni-0.7Fe Heavy Alloy)

  • 김은표
    • 한국분말재료학회지
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    • 제5권1호
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    • pp.42-49
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    • 1998
  • A study on the improvement of the impact energy in 93W heavy alloy with a Ni/Fe ratio of 9/1 has been carried out as a function of heat treatment temperature. The obtained results were compared to that of the traditional alloy system in which the Ni/Fe ratio is 7/3 or 8/2. With increasing heat treatment temperature from 1150 to 125$0^{\circ}C$, the impact energy of the alloy with the Ni/Fe ratio of 9/1 is remarkably increased from 42 to 72 J, which is higher than that of traditional alloy, up to 118$0^{\circ}C$ and then saturated. Fracture mode was also changed from brittle W/W boundary failure to W cleavage. The temperature showing the dramatic shrinkage by dilatometric anaysis of the heavy alloy with Ni/Fe ratio of 9/1 was found to be 1483 $^{\circ}C$, which is higher than that (146$0^{\circ}C$) of the heavy alloy with Ni/Fe ratio of 7/3. Auger Electron Spectroscopy showed that the segregation of impurities, such as S, P, and C in W/W grain boundary was considerably decreased with increasing heat treatment temperature from 1150 to l18$0^{\circ}C$. From the above results, it was found that the impurity segregation in W/W grain boundary played an important role on the decrease of impact properties, and the heat treatment temperature should be appropriately chosen, as considering the Ni/Fe ratio of the alloy, in order to get good impact properties.

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전착법으로 제조한 나노결정질 저Ni 퍼멀로이의 미세 조직과 자기적 특성 (Microstructure and Mgnetic Properties of Electrodeposited Nanocrystalline Low-Nickel Permalloy)

  • 허영두;이흥렬;황태진;임태홍
    • 한국표면공학회지
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    • 제36권6호
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    • pp.455-460
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    • 2003
  • Microstructural and magnetic properties of nanocrystalline Fe-46 wt%Ni and Fe-36 wt%Ni alloys were investigated. Alloys were prepared by the electrodeposition process. The electrolytes were iron sulfate/nickel chloride-based and iron chloride/nickel sulfamate-based solutions. Fe-46 wt%Ni alloy was FCC structure with grain size of 10 nm, but FCC and BCC phases were found in Fe-36 wt%Ni alloy and its grain size was smaller. Effective permeability of Fe-36 wt%Ni alloy was higher than that of Fe-46 wt%Ni alloy in the high frequency range because of large electrical resistivity and small eddy current loss resulted from grain size decrease. Up to $300^{\circ}C$ of annealing temperature, grain growth of Fe-Ni alloys slowly occured. Conversely, annealing above $450^{\circ}C$ led to a drastic grain growth. In that case, effective permeability was decreased at the temperature lower than $300^{\circ}C$ but at $300^{\circ}C$ or higher effective permeability was increased. At the high frequency of 1 MHz, electrodeposited Fe-Ni alloys had higher effective permeability with an decrease in the grain size.

Fe-Ni-C합금과 저융점 순금속의 상변태에 미치는 압력의 영향 (The Effect of Pressure on the Phase Transformation in Fe-Ni-C Alloy and Pure Metals)

  • 안행근;김학신
    • 한국재료학회지
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    • 제10권6호
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    • pp.392-397
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    • 2000
  • Fe-30Ni-0.35C 합금과 몇가지 저융점 순금속의 상변태에 미치는 압력의 영향에 대하여 PDSC를 이용하여 조사하였다. Fe-30Ni-0.35C 합금의 오스폼트 마르텐사이트 및 마르폼드 마르텐사이트 오스테나이트로 역변태시 압력이 1 기압에서 60기압으로 증가하에 따라. $A_s$점이 약 $2~4^{\circ}C$ 저하하며, 이것은 상전이시의 체적변화가 음의 값이 되기 때문이다. 또한 $A_f$ 점은 압력이 증가함에 따라 변함없이 일정하거나 매우 미소한 상승을 나타내는데, 이것은 압력이 증가할수록 탄화물의 석출이 촉진되기 때문이다. Fe-30Ni-0.35C 합금의 오스폼드 마르텐사이트의 역변태시 엔탈피변화는 압력이 1 기압에서 60기압으로 상승함에 따라 10~14J/g 증가한다. 순금속 Se, Sn, Pb, Zn, Te 등의 용융점은 압력이 1기압에서 60기압으로 증가함에 따라 매우 완만하게 상승하며, 용융시의 엔탈피변화는 압력의 증가에 따라 거의 변화가 없거나 미소 증가를 나타낸다.

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Ni-Fe-Co 박막도금층의 조성, 우선배향 및 자기적 성질 (Composition, preferred orientation and magnetic properties of Ni-Fe-Co alloy electrodeposits)

  • 예길촌;김선윤;문근호;김용웅
    • 한국표면공학회지
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    • 제28권6호
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    • pp.352-360
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    • 1995
  • The effect of electrolysis conditions on the composition, the magnetic properties and the preferred orientation of Ni-Fe-Co alloy deposits was investigated using the sulfate-chloride bath paddle agitated. Cathode current efficiency increases with the current density, showing the different tendency of the variation from that of the Ni-Fe electrodeposits. The Co content of the deposits decreases with increasing current density, while the content of Ni and Fe is shown to be minimum or maximum at 3A/$dm^2$ respectively. The Ni/Fe ratio of the alloy deposits is lower than that of Ni-Fe deposits. The coercive force($H_c$) of the deposits increases with the Co content in deposit, showing the relatively low value in the range of 1.8~5.0Wt.% Co. The anisotropy field ($H_k$) of the deposits is higher than that of Ni-Fe alloy deposits, The preferred orientation of the deposits is generally (200), but the orientation factor(R) changes with both the increase of current density and the magnetic field applied during deposition.

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전자 개폐기용 바이메탈 소재(Fe-Ni / Fe-Ni-Mo)의 부식거동 (Corrosion Behavior of Bimetal Materials (Fe-Ni / Fe-Ni-Mo) for Electromagnetic Switches)

  • 안유정;황은혜;전재열;김성진
    • Corrosion Science and Technology
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    • 제22권6호
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    • pp.478-483
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    • 2023
  • This study examined the corrosion behavior of bimetal materials composed of Fe-Ni alloy and Fe-Ni-Mo alloy, both suitable for use in electromagnetic switches. Electrochemical polarization and weight loss measurements revealed that, in contrast to Fe-Ni alloy, which exhibited pseudo-passivity behavior, Fe-Ni-Mo alloy had higher anodic current density, displaying only active dissolution and greater weight loss. This indicated a lower corrosion resistance in the Fe-Ni-Mo alloy. Equilibrium calculations for the phase fraction of precipitates suggested that the addition of 1 wt% Mo may lead to the formation of second-phase precipitates, such as Laves and M6C, in the γ matrix. These precipitates might degrade the homogeneity of the passive film formed on the surface, leading to localized attacks during the corrosion process. Therefore, considering the differences in corrosion kinetics between these bimetal materials, the early degradation caused by galvanic corrosion should be prevented by designing a new alloy, optimizing heat treatment, or implementing periodic in-service maintenance.

Alloy 600에 전기 도금한 Ni-P-Fe 및 Ni-P-B 층의 열적 안정성 연구 (Study on Thermal Stability of Ni-P-Fe and Ni-P-B Layers Electroplated on Alloy 600)

  • 김명진;김정수;김동진;김홍표
    • 한국표면공학회지
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    • 제43권2호
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    • pp.57-63
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    • 2010
  • In this study, thermal stability of the mechanical properties of Ni-P-B and Ni-P-Fe layers electroplated on Alloy 600 material was evaluated by measuring their microhardness, tensile strength, and elongation after heat treatment at $325^{\circ}C$ and $400^{\circ}C$. According to the results, there was no noticeable change in microhardness of the two electrodeposits before and after heat treatment at the temperatures for 30 days. In the case of a Ni-P-B electrodeposit, ultimate tensile strength (UTS) slightly increases with heat treatment time, while its elongation decreases, showing good thermal stability in the mechanical properties at high temperature. On the other hand, UTS and elongation of Ni-P-Fe decrease with heat treatment time, which is very unusual observation. This result was attributed to the bad microstructure of Ni-P-Fe having many defects in the deposit formed early stage of an electroplating process and their redistribution to link to become large ones during heat treatment.

Ni/MH 2차전지용 TiFe1-xNix 합금전극의 방전특성에 대한 열처리의 영향 (Effects of Heat-treatments on Discharge Characteristics of TiFe1-xNix Alloy Electrodes for Ni/MH Secondary Battery)

  • 정순돌;정상식;안효준;김기원
    • 한국수소및신에너지학회논문집
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    • 제9권4호
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    • pp.135-141
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    • 1998
  • Fe-Ti계 수소저장합금 전극의 방전특성을 개선하기 위하여 Ni을 첨가한 $TiFe_{1-x}Ni_x$ 합금을 제조하여 방전특성과 열처리 온도에 따른 변화를 조사하였다. 합금의 조성은 x = 0.1에서 0.6까지 0.1 단위씩 변화시킨 6가지 조성을 선택하여 각각에 대한 초기방전용량과 충방전사이클에 따른 용량변화를 조사하였다. 초기방전용량은 Ni의 조성이 클수록 증가하다가 x = 0.6 에서 다시 감소하였으며 Ni의 조성이 증가함에 따라 사이클특성은 전반적으로 매우 악화되었다. 열처리온도가 사이클 특성에 미치는 영향을 조사하기 위하여 초기용량이 가장 우수한 $TiFe_{0.5}Ni_{0.5}$ 합금에 대하여 $700{\sim}900^{\circ}C$ 의 온도범위에서 열처리를 시행한 후 방전특성을 조사하였다. 열처리에 의해서 초기용량은 감소되지만 사이클 특성은 현저히 개선되었다. $700{\sim}850^{\circ}C$의 온도범위에서 1시간 열처리한 전극의 경우에 사이클이 진행되면서 방전용량이 크게 회복되었으며, 열처리한 표면조직을 SEM 으로 관찰해 본 결과 이는 충분한 전극강도 및 기공율에 기인한 것으로 생각되었다. $900^{\circ}C$에서 1시간 열처리한 전극은 충분한 기공율을 갖지 못하여 방전특성이 좋지 않음을 알 수 있었다.

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