• 제목/요약/키워드: Fe powder

검색결과 1,551건 처리시간 0.028초

산화물 분산 강화 강 분말이 첨가된 자동차 부품용 철계 복합 소재의 미세조직 및 마모 특성 (Microstructure and Wear Properties of Oxide Dispersion Strengthened Steel Powder Added Steel-Based Composite Material for Automotive Part)

  • 김영균;박종관;이기안
    • 한국분말재료학회지
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    • 제25권1호
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    • pp.36-42
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    • 2018
  • In order to expand the application of oxide dispersion-strengthened (ODS) steel, a composite material is manufactured by adding mechanically alloyed ODS steel powder to conventional steel and investigated in terms of microstructure and wear properties. For comparison, a commercial automobile part material is also tested. Initial microstructural observations confirm that the composite material with added ODS steel contains i) a pearlitic Fe matrix area and ii) an area with Cr-based carbides and ODS steel particles in the form of a $Fe-Fe_3C$ structure. In the commercial material, various hard Co-, Fe-Mo-, and Cr-based particles are present in a pearlitic Fe matrix. Wear testing using the VSR engine simulation wear test confirms that the seatface widths of the composite material with added ODS steel and the commercial material are increased by 24% and 47%, respectively, with wear depths of 0.05 mm and 0.1 mm, respectively. The ODS steel-added composite material shows better wear resistance. Post-wear-testing surface and cross-sectional observations show that particles in the commercial material easily fall off, while the ODS steel-added material has an even, smooth wear surface.

FeSiCr 박편/폴리머 복합시트의 전자파 흡수 특성에 미치는 자성분말 두께의 영향 (Effects of Magnetic Powder Thickness on Electromagnetic Wave Absorption Characteristics in FeSiCr Flakes/Polymer Composite Sheets)

  • 김주범;노태환
    • 대한금속재료학회지
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    • 제47권12호
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    • pp.866-872
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    • 2009
  • The effects of magnetic powder thickness on electromagnetic wave absorption characteristics in Fe-6.5Si-0.9Cr (wt%) alloy flakes/polymer composite sheets available for quasi-microwave band have been investigated. The atomized FeSiCr powders were milled by using attritor for 12, 24, and 36 h, powder thickness changed from $40{\mu}m$ to $3{\mu}m$ upon 36 h milling. The composite sheet, including thinned magnetic flakes, exhibited higher power loss in the GHz frequency range as compared with the sheets having thick flakes. Moreover, both the complex permeability and the loss factor increased with the decrease in thickness of the alloy flakes. Therefore, the enhanced power loss property of the sheets containing thin alloy flakes was attributed to the flakes of high complex permeability, especially their imaginary part. Additionally, the complex permittivity was also increased with the reduction of flake thickness, and this behavior was considered to be helpful for improvement of the electromagnetic wave absorption characteristics in the composite sheets, including thin alloy flakes.

Fe93.5Si6.5 자성분말/에폭시 복합재 필름의 고주파 특성 (High Frequency Properties of Fe93.5Si6.5 Magnetic Powder/Epoxy Composite Film)

  • 홍성민;김철기
    • 한국자기학회지
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    • 제18권5호
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    • pp.195-199
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    • 2008
  • $Fe_{93.5}Si_{6.5}$ 분말/에폭시 복합재 필름은 열경화과정을 이용하여 준비되었다. 자성분말/에폭시 복합재의 구조와 전자기적 특성 및 전자파 흡수특성을 분석하기 위하여 주사전자현미경(scanning electron microscpoe, SEM), 시료진동형 자력계(vibrating sample magnetometer, VSM), 네트워크 어날라이져(network analyzer) 등을 이용하였다. 분석결과, 포화자속밀도는 복합재 내의 $Fe_{93.5}Si_{6.5}$ 분말이 차지하는 양에 의존하며, 이는 초기투자율에 영향을 미친다. 결과적으로 1 GHz 이상의 주파수에서는 와전류 손실(eddy current loss)이 주요한 인자이며, 자성분말/에폭시 복합재의 공명주파수(resonance frequency)는 복합재 내의 $Fe_{93.5}Si_{6.5}$ 분말의 양이 증가함에 따라 감소한다. 반사손실(reflection loss)은 자성분말/에폭시 복합재의 투자율(permeability)과 유전율(permittivity)로부터 계산에 의해 구해진다. 50 wt% $Fe_{93.5}Si_{6.5}$ 분말의 양과 5 mm 두께를 가진 자성분말/에폭시 복합재는 3.66 GHz와 4.16 GHz 사이에서 -20 dB 이하의 값을 보인다. 따라서 Fe-Si/에폭시 박형 복합재는 마이크로파 흡수체로서 좋은 후보물질이 될 수 있을 것으로 판단된다.

Microstructure and Magnetic Properties of $Nd_2Fe_{14}B/{\alpha}-Fe$ Nanocomposite Prepared by HDDR Combined with Mechanical Milling

  • Hu, Lianxi;Wang, Erde;Guo, Bin;Shi, Gang
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.1286-1287
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    • 2006
  • [ $Nd_2Fe_{14}B/{\alpha}-Fe$ ] nanocomposite powders with a nominal composition of $Nd_{12}Fe_{82}B_6$ were prepared by HDDR combined with mechanical milling. The microstructure was studied by Mossbauer spectrometry and TEM. The magnetic properties were investigated by VSM using bonded magnet samples. The results showed that the annealing temperature had significant influence on both the recombination kinetics and the grain size of the $Nd_2Fe_{14}B$ and ${\alpha}-Fe$ phases, and the bonded magnets presented the best magnetic properties when the nanocomposite powders were prepared by annealing at $760^{\circ}C$ for 30 min.

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$Fe_{73}Si_{16}B_7Nb_3Cu_1$ 나노결정합금 분말코아의 자기적 특성에 미치는 분말입도 및 볼밀링 시간의 영향 (Effects of Powder Size and Ball-milling Time on the Magnetic Properties of $Fe_{73}Si_{16}B_7Nb_3Cu_1$ Nanocrystalline Alloy Powder Cores)

  • 문병기;강성찬;박원욱;손근용
    • 연구논문집
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    • 통권34호
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    • pp.121-129
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    • 2004
  • The influence of powder size and ball-milling time on the magnetic properties of $Fe_{73}Si_{16}B_7Nb_3Cu_1$ nanocrystalline alloy powder was investigated. Flake-shaped powders were produced by pulverizing the ribbons annealed at $550^\circC$ for 1 hour. The powders were classified and consolidated into core shapes at a pressure of 18ton/$cm^2$. The initial permeability at 100kHz of the inductor core produced using $53-75\mum$ powders showed the highest value although its consolidated density showed the lowest one. The reason for the result is due to the cracking of the particles larger than $75\mum$ during the consolidation process. The ball-milling of powders for 2-4 hours improved the consolidation density and the initial permeability of the cores. The intrinsic coercivity of the powder decreased as well, resulting from the stress relief of the powder by a short-time milling.

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Fe2O3 첨가에 의한 폐PCB로부터 긁어낸 Cu분말의 용융 및 정제 (Melting and Refining of Cu Powder Scraped from Waste PCB with Fe2O3)

  • 허수빈;손호상
    • 자원리싸이클링
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    • 제26권4호
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    • pp.95-100
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    • 2017
  • 본 연구에서는 폐 PCB(printed circuit board) 표면을 긁어내어 회수한 구리분말을 용융하는 과정에서 용융온도 저감과 정제를 위하여 플럭스로 $Fe_2O_3$를 첨가하였으며, $Fe_2O_3$ 첨가량 및 온도에 따른 구리의 회수율과 불순물 농도에 미치는 영향을 조사하였다. 구리 회수율은 반응온도와 $Fe_2O_3$의 첨가비율이 증가할 수 록 증가하였다. 그리고 구리 중 산소, 실리콘, 철의 농도는 $Fe_2O_3$ 첨가량이 증가할수록 감소하였다. $Fe_2O_3$를 첨가하여 반응시킨 후의 슬래그를 XRD로 분석하여 fayalite($2FeO{\cdot}SiO_2$)와 철산화물을 확인하였다. 따라서 fayalite 슬래그의 생성에 의한 슬래그의 융점과 점도 감소가 구리 회수율의 증가에 크게 기여한 것으로 생각된다.

사출성형된 Fe-50%Ni 소결체의 제조 (Fabrication of Injection Molded Fe-50%Ni Sintered Bodies)

  • 김기현;윤형철;최철진;이병택
    • 한국분말재료학회지
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    • 제11권6호
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    • pp.472-476
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    • 2004
  • The Fe-Ni compact bodies were fabricated using Fe-Ni mixed powders with 50 nm in diameter by injection molding process. The relationship between microstructure and material properties was characterized with respect to the volume ratio of powder/binder and sintering temperature with SEM and TEM. In the compact body having the volume percent ratio of 45(Fe-Ni) : 55(binder), which was sintered at $900^{\circ}C$ the values of relative density and hardness were low about 97.7% and 277.1 Hv, respectively. Using the composition of 50(Fe Ni) : 50(binder) and sintered at $900^{\circ}C$, the values of relative density and hardness were 98.5%, 294.4 Hv, respec-tively. The grain size of sintered bodies strongly depended on the sintering temperature. In both samples sintered at $600^{\circ}C$ and $900^{\circ}C$, the average grain sizes were about 150 nm and 500 nm in diameter, respectively.

플라즈마 이온질화에 의한 Fe 나노분말소결체의 표면경화 가능성 연구 (A Feasibility Study on the Surface Hardening of Sintered Iron Nanopowder by Plasma Ion Nitriding)

  • 윤준철;이재성
    • 한국분말재료학회지
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    • 제19권1호
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    • pp.13-18
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    • 2012
  • This study has been performed on the full density sintering of Fe nanopowder and the surface hardening by plasma ion nitriding. The Fe sintered part was fabricated by pressureless sintering of the Fe nanopowder at $700^{\circ}C$ in which the nanopowder agglomerates were controlled to have 0.5-5 ${\mu}m$ sized agglomerates with 150 nm Fe nanopowders. The green compact with 46% theoretical density(T.D.) showed a homogeneous microstructure with fine pores below 1 ${\mu}m$. After sintering, the powder compact underwent full densification process with above 98%T.D. and uniform nanoscale microstructure. This enhanced sintering is thought to be basically due to the homogeneous microstructure in the green compact in which the large pores are removed by wet-milling. Plasma ion nitriding of the sintered part resulted in the formation of ${\gamma}$'-$Fe_4N$ equilibrium phase with about 12 ${\mu}m$ thickness, leading to the surface hardening of the sintered Fe part. The surface hardness was remarkably increased from 176 $H_v$ for the matrix to 365 $H_v$.

Synthesis of Ultrafine Zr Based Alloy Powder by Plasma Arc Discharge Process

  • Lee, Gil-Geun;Park, Je-Shin;Kim, Won-Baek
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part 1
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    • pp.420-421
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    • 2006
  • In the present study, ultrafined Zr-V-Fe based alloy powder prepared by a plasma arc discharge process with changing process parameters. The chemical composition of synthesized powder was strongly influenced by the process parameters, especially the hydrogen volume fraction in the powder synthesis atmosphere. The synthesized powder had an average particle size of 50 nm. The synthesized Zr-V-Fe based particles had a shell-core structure composed of metal in the core and oxidse in the shell.

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나노분말이 분산된 에폭시 섬유수지의 전자파차폐 효과 (Electromagnetic Wave Shielding Effect of Nano-powder Dispersed Epoxy Resin Composite)

  • 한준영;이철희;최민규;홍순직;박중학;이동진
    • 한국분말재료학회지
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    • 제22권4호
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    • pp.234-239
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    • 2015
  • Electronic products are a major part of evolving industry and human life style; however most of them are known to emit electromagnetic waves that have severe health hazards. Therefore, different materials and fabrication techniques are understudy to control or limit transfer of such waves to human body. In this study, nanocomposite powder is dispersed into epoxy resin and shielding effects such as absorption, reflection, penetration and multiple reflections are investigated. In addition, nano size powder (Ni, $Fe_2O_3$, Fe-85Ni, C-Ni) is fabricated by pulsed wire evaporation method and dispersed manually into epoxy. Characterization techniques such as X-ray diffraction, Scanning electron microscopy and Transmission electron microscopy are used to investigate the phase analysis, size and shape as well as dispersion trend of a nano powder on epoxy matrix. Shielding effect is measured by standard test method to investigate the electromagnetic shielding effectiveness of planar materials, ASTM D4935. At lower frequency, sample consisting nano-powder of Fe-85%Wt Ni shows better electromagnetic shielding effect compared to only epoxy, only Ni, $Fe_2O_3$ and C-Ni samples.