• 제목/요약/키워드: Fe-Si-Cr powder

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Fe기 MA956 산화물분산강화합금의 천이액상확산접합에 관한 연구 (Transient-Liquid-Phase Bonding of Fe-Base MA956 ODS Alloy)

  • 강지훈
    • 한국분말재료학회지
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    • 제2권1호
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    • pp.53-62
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    • 1995
  • TLP(Transient-Liquid-Phase) bonding of Fe-base MA956 ODS alloy was performed. As insert metal a commercially available Ni-base alloy(MBF50) and an MA956 alloy with additive elements of 7wt% Si and 1wt% B were used. To confirm the idea that a concurrent use of MA956 powder with Insert metals can enhance the homogenization of constituent elements and thereby reduce the thickness of joint interface, MA956 powder was also inserted In a form of sheet. SEM observation and EDS analysis revealed that Cr-rich phase was formed in the bonded interface in initial stage of isothermal solidification during the bonding process, irrespective of kind of insert metals. Measurement of hardeness in the region of bonded interface and EDS analysis showed that a complete homogenization of composition could not be obtained especially in case of MBF50. Joints using either BSi insert metals only or BSi insert together with MA956 powder interlayer showed, however, a remarkable improvement in a compositional homogenization, even though a rapid grain growth in the bonded interface could not be hindered.

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가스분무 Fe계 비정질 분말과 유체 내 전기선 폭발에 의한 나노 Cu 분말의 복합화와 방전플라즈마 소결 (Composite and Spark Plasma Sintering of the Atomized Fe Amorphous Powders and Wire-exploded Cu Nanopowder in Liquid)

  • 김진천;구왕회;유주식
    • 한국분말재료학회지
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    • 제15권4호
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    • pp.285-291
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    • 2008
  • Fe based ($Fe_{68.2}C_{5.9}Si_{3.5}B_{6.7}P_{9.6}Cr_{2.1}Mo_{2.0}Al_{2.0}$) amorphous powder were produced by a gas atomization process, and then ductile Cu powder fabricated by the electric explosion of wire(EEW) were mixed in the liquid (methanol) consecutively. The Fe-based amorphous - nanometallic Cu composite powders were compacted by a spark plasma sintering (SPS) processes. The nano-sized Cu powders of ${\sim}\;nm$200 produced by EEW in the methanol were mixed and well coated with the atomized Fe amorphous powders through the simple drying process on the hot plate. The relative density of the compacts obtained by the SPS showed over 98% and its hardness was also found to reach over 1100 Hv.

가스분무법에 의한 Fe계 비정질 분말의 제조와 볼밀링공정에 의한 연질 Cu분말과의 복합화 및 SPS 거동 (II) - II. 복합분말의 SPS와 특성 - (Production of Fe Amorphous Powders by Gas-Atomization Process and Subsequent Spark Plasma Sintering of Fe amorphous-ductile Cu Composite Powder Produced by Ball-milling Process (II) - II. SPS Behaviors of Composite Powders and their Characteristics -)

  • 김진천;김지순;김휘준;김정곤
    • 한국분말재료학회지
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    • 제16권5호
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    • pp.326-335
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    • 2009
  • Fe based (Fe$_{68.2}$C$_{5.9}$Si$_{3.5}$B$_{6.7}$P$_{9.6}$Cr$_{2.1}$Mo$_{2.0}$Al$_{2.0}$) amorphous powder, which is a composition of iron blast cast slag, were produced by a gas atomization process, and sequently mixed with ductile Cu powder by a mechanical ball milling process. The Fe-based amorphous powders and the Fe-Cu composite powders were compacted by a spark plasma sintering (SPS) process. Densification of the Fe amorphous-Cu composited powders by spark plasma sintering of was occurred through a plastic deformation of the each amorphous powder and Cu phase. The SPS samples milled by AGO-2 under 500 rpm had the best homogeneity of Cu phase and showed the smallest Cu pool size. Micro-Vickers hardness of the as-SPSed specimens was changed with the milling processes.

Nano-scale Inter-lamellar Structure of Metal Powder Composites for High Performance Power Inductor and Motor Applications

  • Kim, Hakkwan;An, Sung Yong
    • Journal of Magnetics
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    • 제20권2호
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    • pp.138-147
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    • 2015
  • The unique nano-scale inter-lamellar microstructure and unparalleled heat treatment process give our developed metal powder composite its outstanding magnetic property for power inductor & motor applications. Compared to the conventional polycrystalline Fe or amorphous Fe-Cr-Si-B alloys, our unique designed inter-lamellar microstructure strongly decreases the intra-particle eddy current loss at high frequencies by blocking the mutual eddy currents. The combination of optimum permeability, magnetic flux and extremely low core loss makes this powder composite suitable for high frequency applications well above 10 MHz. Moreover, it can be also possible to SMC core for high speed motor applications in order to increase the motor efficiency by decreasing the core loss.

Soft-magnetic Characteristics of Co-based Amorphous Powder Produced by Spinning Water Atomization Process (SWAP)

  • Otsuka, I.;Wada, K.;Watanabe, A.;Kadomura, T.;Yagi, M.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.784-785
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    • 2006
  • Co-based amorphous powder was produced by a new atomization process "Spinning Water Atomization Process (SWAP)", having rapid super-cooling rate. The composition of the alloys was ($(Co_{0.95}Fe_{0.05})_{1-x}Cr_x$)$_{75}Si_{15}B_{10}$ (x=0, 0.025, 0.05, 0.075). The powders became the amorphous state even if particle size was up to about $500{\mu}m$. The coercive force of powders was about 0.35 - 0.7 Oe. Furthermore, Co-based amorphous powder cores with glass binders were made by cold-pressing and sintering methods. The initial permeability of the core in the frequency range up to 100 kHz was about 110, and the core loss at 100 kHz for Bm = 0.1 T was $350kW/m^3$.

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Investigation on Microstructure and Flowability of Gas Atomized Heat-resistant KHR45A Alloy Powders for Additive Manufacturing

  • Geonwoo Baek;Mohsen Saboktakin Rizi;Yeeun Lee;SungJae Jo;Joo-Hyun Choi;Soon-Jik Hong
    • 한국분말재료학회지
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    • 제30권1호
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    • pp.13-21
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    • 2023
  • In additive manufacturing, the flowability of feedstock particles determines the quality of the parts that are affected by different parameters, including the chemistry and morphology of the powders and particle size distribution. In this study, the microstructures and flowabilities of gas-atomized heat-resistant alloys for additive manufacturing applications are investigated. A KHR45A alloy powder with a composition of Fe-30Cr-40Mn-1.8Nb (wt.%) is fabricated using gas atomization process. The microstructure and effect of powder chemistry and morphology on the flow behavior are investigated by scanning electron microscopy (SEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), and revolution powder analysis. The results reveal the formation of spherical particles composed of single-phase FCC dendritic structures after gas atomization. SEM observations show variations in the microstructures of the powder particles with different size distributions. Elemental distribution maps, line scans, and high-resolution XPS results indicate the presence of a Si-rich oxide accompanied by Fe, Cr, and Nb metal oxides in the outer layer of the powders. The flowability behavior is found to be induced by the particle size distribution, which can be attributed to the interparticle interactions and friction of particles with different sizes.

가스분무법에 의한 Fe계 비정질 분말의 제조와 볼밀링공정에 의한 연질 Cu 분말과의 복합화 및 SPS 거동 (I) - I. 가스분무 및 복합화 - (Production of Fe Amorphous Powders by Gas-atomization Process and Subsequent Spark Plasma Sintering of Fe Amorphous-ductile Cu Composite Powders Produced by Ball-milling Process (I) - I. Gas Atomization and Production of Composite Powders -)

  • 류호진;임재현;김지순;김진천;김휘준
    • 한국분말재료학회지
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    • 제16권5호
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    • pp.316-325
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    • 2009
  • Fe based (Fe$_{68.2}$C$_{5.9}$Si$_{3.5}$B$_{6.7}$P$_{9.6}$Cr$_{2.1}$Mo$_{2.0}$Al$_{2.0}$) amorphous powder, which is a composition of iron blast cast slag, were produced by a gas atomization process, and sequently mixed with ductile Cu powder by a mechanical ball milling process. The experiment results show that the as-prepared Fe amorphous powders less than 90 $\mu$m in size has a fully amorphous phase and its weight fraction was about 73.7%. The as-atomized amorphous Fe powders had a complete spherical shape with very clean surface. Differential scanning calorimetric results of the as-atomized Fe powders less than 90 $\mu$m showed that the glass transition, T$_g$, onset crystallization, T$_x$, and super-cooled liquid range $\Delta$T=T$_x$-T$_g$ were 512, 548 and 36$^{\circ}C$, respectively. Fe amorphous powders were mixed and deformed well with 10 wt.% Cu by using AGO-2 high energy ball mill under 500 rpm.

미생물 기원의 나선형 및 협막구조물에 형성된 침철석과 레피도크로사이트의 결정화작용 (Mineralization of Geothite and Lepidocrocite on the Twisted-stalk and Sheathed-filaments from the Microbial Origin)

  • 박천영;조상섭
    • 자원환경지질
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    • 제42권6호
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    • pp.549-559
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    • 2009
  • 연구 목적은 미생물기원으로 추측되는 나선형구조물과 협막구조물에 형성된 침철석과 레피도크로사이트의 광물화작용, 그리고 철수산화물 중에 함유된 중금속함량의 특성을 해석하고자 하였다. 오염된 지하수와 비오염된 지하수의 Cl과 Br의 함량 그리고 Cl/Br의 비율을 이용하여 본 지하수의 오염 정도를 비교해본 결과 인간 활동에 의하여 오염이 진행된 것으로 나타났다. 황갈색 철수산화물을 구성하는 주성분은 $Fe_2O_3$$SiO_2$로 나타났다. $Fe_2O_3$ 함량은 58.57wt.%에서 75.73 wt.% 범위이고, $SiO_2$ 함량은 5.8 wt.%에서 16.17 wt.% 범위로 나타났다. 황갈색 철수산화물에 고 함량으로 함유된 중금속원소는 Zn(최대 6,160 mg/kg), Pb(최대 377 mg/kg), U(최대 503 mg/kg), Cr(최대 203 mg/kg) Cu(최대 77 mg/kg), V(최대 162 mg/kg) 및 Ni(최대 105 mg/kg) 등이다. 래스상과 엽편상의 결정들 그리고 침상의 결정들이 나선형구조물과 협막구조물에 발달 돤 것이 관찰되었다. 황갈색 철수산화물에 대한 x-선 회절분석에서 침철석, 석고 및 레피도크로사이트가 관찰되었다.

연자성 합금분말을 함침시킨 필름의 자계 차폐 특성 연구 (A Study of Shielding Property of Magnetic Field for the Film Impregnated with Soft Magnetic Powder)

  • 박종현;나극환;강은균;김진우
    • 전자공학회논문지
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    • 제51권1호
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    • pp.211-218
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    • 2014
  • 본 논문에서는 NFC 나 핸드폰, 컴퓨터 등의 정보통신기기에 사용하기 위한 높은 주파수 대역의 전자파 차폐 필름을 개발하기 위하여, 주로 자계를 차폐할 수 있는 니켈 및 실리콘과 철의 합금의 연자성 특성을 연구함에 있어 최적의 합금조성으로 Fe-Si-Cr 합금과 Fe-Ni-Cr 합금의 자성특성에 대하여 연구하였고, 그 결과에 의하여 결정된 합금의 조성비에 따라 각 합금을 용융상태에서 수분산시켜 원형 편상의 연자성 합금분말을 만들었으며, 그들을 수지에 함침시키고 가열 회전 롤러를 이용한 캘린더 가공법으로 두께 0.1 mm 및 1 mm 의 필름을 만든 다음, 저주파에서부터 10GHz 마이크로파대역까지의 전자파에 대한 투자율과 차폐율에 대하여 연구하였다. 또한 본 논문에서는 합금 분말입자의 제조에 앞서, 합금의 투자율을 예측할 수 있는 식을 제안하였으며, 그 식의 합리성을 증명하기 위해 MATLAB을 이용하여 기 발표된 합금들의 투자율과 주파수 특성을 비교적 정확하게 기술하고 있음을 보였고, 그로부터 가장 이상적인 합금의 조성비를 결정하고, 분말입자가 수지에 함침된 필름의 투자율 역시 계산하였다. 전자파 차폐 수지 필름의 차폐율(Shielding Effectiveness)에 대한 시뮬레이션은 HFSS를 이용하였다.