• 제목/요약/키워드: Al alloy powder

검색결과 392건 처리시간 0.026초

Fe-Cr-AI-Y합금에서 브레이징 접합부의 고온산화거동 (High Temperature Oxidation Behavior of the Brazed Joint in Fe-Cr-Al-Y Alloy)

  • 문병기;최철진;박원욱
    • 연구논문집
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    • 통권27호
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    • pp.201-208
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    • 1997
  • 본 연구에서는 배기 가스 촉매정화용 금속담체 지지체의 접합특성을 향상시키기 위하여, 브레이징 접합부의 고온내산화성에 미치는 브레이징 합금원소의 영향을 고찰하였다. 브레이징은 Ni계 합금인 BNi-5 분말(Ni-Cr-Si계합금)과 MBF-50 foil(Ni-Cr-Si-B계 합금)을 사용하여 $1200^\circC$의 진공중에서 행하였다. 약 1-1.5 wt%의 B을 함유한 MBF-50으로 브레이징된 시편이 BNi-5로 브레이징된 시편에 비해 내산화성이 떨어지는 것으로 나타났으며. 이것은 합금/브레이징 계변을 따라 형성된 Kirkendall void를 통한 산소의 빠른 침투로 인한 것으로 생각된다.

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유한요소해석을 이용한 알루미늄분말단조 피스톤 성형해석에 관한 연구 (A Study of the FEM Forming Analysis of the Al Power Forging Piston)

  • 김호윤;박철우;김현일;박경서;김영호;조호성
    • 대한기계학회논문집A
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    • 제34권10호
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    • pp.1543-1548
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    • 2010
  • 분말단조 공정은 정형의 자동차부품을 제작하는데 널리 이용되고 있다. 분말야금이란 금속 원료 분말을 사용하여 원하는 제품의 형태로 성형을 한 다음 적정온도에서 소결하여 필요한 금속 제품을 제조하는 기술을 말한다. 본 연구에서는 자동차 엔진의 경량화를 위한 피스톤 제작에 관한 것이다. 분말단조로 제작 되어진 엔진 피스톤의 특성을 유한요소해석을 통해서 알아보겠다. 유한요소해석은 DEFORM/3D 를 이용해서 성형성을 평가하도록 하겠다. 성형온도, 구배각도, 마찰계수의 변화에 따른 피스톤의 성형성을 알아보겠다.

일방향응고 Ni기 초내열합금 천이액상화산접합부의 미세조직에 미치는 모재와 삽입금속 분말 혼합비의 영향 (The Mixing Ratio Effect of Insert Metal Powder and Insert Brazing Powder on Microstructure of the Region Brazed on DS Ni Base Super Alloy)

  • 예창호;이봉근;송우영;오인석;강정윤
    • Journal of Welding and Joining
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    • 제23권6호
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    • pp.99-105
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    • 2005
  • The mixing ratio effect of the GTD-111(base metal) powder and the GNI-3 (Ni-l4Cr-9.5Co-3.5Al-2.5B) powder on TLP(Transient Liquid Phase) bonding phenomena and mechanism was investigated. At the mixing ratio of the base metal powder under $50wt\%$, the base metal powders fully melted at the initial time and a large amount of the base metal near the bonded interlayer was dissolved by liquid inter metal. Liquid insert metal was eliminated by isothermal solidification which was controlled by the diffusion of B into the base metal. The solid phases in the bonded interlayer grew epitaxially from the base metal near the bonded interlayer inward the insert metal during the isothermal solidification. The number of grain boundaries farmed at the bonded interlayer corresponded with those of base metal. At the mixing ratio above $60wt\%$, the base metal powder melted only at the surface of the powder and the amount of the base metal dissolution was also less at the initial time. Nuclear of solids firmed not only from the base metal near the bonded interlayer but also from the remained base metal powder in the bonded interlayer. Finally, the polycrystal in the bonded interlayer was formed when the isothermal solidification finished. When the isothermal solidification was finished, the contents of the elements in the boned interlayer were approximately equal to those of the base metal. Cr-W borides and Cr-W-Ta-Ti borides formed in the base metal near the bonded interlayer. And these borides decreased with the increasing of holding time.

폐 인코넬계(Inconel 713C)내열합금 모의 침출액으로부터 액-액 추출법에 의한 Mo의 회수 및 Mo 화합물 제조 (Recovery of Mo by liquid-liquid extraction from synthetic leaching solution of spent Inconel 713C super alloy and preparation of Mo compounds)

  • 안종관;김다영;인용현
    • 한국산학기술학회논문지
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    • 제19권8호
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    • pp.403-409
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    • 2018
  • 고온 부품 소재로 사용하는 니켈계 내열합금인 Inconel 713C에는 Ni 70 %, Cr 12 %, Al 6 % 및 Mo 4% 등의 유가금속을 함유되어 있다. 이중 유가금속에서 경제적 가치를 가지는 원소는 Mo이므로 회수하여 재활용하여야 한다. 본 연구는 폐 인코넬계(Inconel 713C) 모의 내열합금 침출액으로부터 액-액 추출법(용매추출법 및 역추출법)을 이용하여 Mo을 분리 회수하였다. 회수된 수상을 증발 건조 및 열처리법을 이용하여 Mo 화합물을 제조하였다. 수상은 $NaMoO_4$ $2H_2O$을 증류수에 용해하여 사용하였으며, 추출제로는 음이온추출제인 Alamine 336과 양이온추출제인 Cyanex 272, 희석제로는 등유(Kerosene) 사용하였고, 음이온추출제인 Alamine 336 1 %이상에서 99 % 이상의 추출률을 확인하였다. 역추출제로는 황산, 염산 및 질산을 사용하였고, 각각 농도가 증가할수록 탈거율이 증가하였으며, 질산의 경우 4 M에서 96 %의 탈거율을 나타냈었다. 용매추출과 역추출에서 얻은 Mo 함유 수상을 증발 건조하여 순도 97.5 %의 $MoO_3$를 제조하였다. 본 연구를 통해 Mo이 함유된 순환자원으로부터 Mo을 효율적으로 회수하면 국내의 자원효율성과 자원수요의 공급경쟁력을 향상시킬 수 있다.

Friction, Wear and Adhesion of HVOF Coating of Co-alloy Powder

  • Cho, Tong-Yul;Yoon, Jae-Hong;Song, Ki-Oh;Joo, Yun-Kon;Fang, Wei;Zhang, Shihong;Youn, Suk-Jo;Chun, Hui-Gon;Hwang, Soon-Young
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2007년도 추계학술대회 논문집
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    • pp.61-62
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    • 2007
  • HVOF thermal spray coating of micron size Co-alloy powder has been studied for the durability improvement of high velocity spindle (HVS). Optimal coating process of this system for the best surface properties is hydrogen flow rate 75 FMR, oxygen flow rate 38-42 FMR, feed rate 30 g/min at spray distance 5 inch. Friction coefficient (FC) and wear trace (WT) decrease increasing coating surface temperature from 25$^{\circ}$C to 538$^{\circ}$C due to the higher lubricant effects of the oxides at the higher temperature. At the study of adhesion of T800 coating on a light metal alloy Ti-6Al-4V (Ti64) tensile bond strength (TBS) and tensile fracture location (TFL) of Ti64/T800 are 8,740 psi and near middle of T800 coating respectively. This shows that adhesion of Ti64/T800 is higher than the cohesion strength (8,740 psi) of T800 coating. Therefore T800 coating is strongly advisable for the surface coating on HVS such as high speed air-bearing spindle.

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Mechanical Properties of Bulk Amorphous Ti50Cu20Ni20Al10 Fabricated by High-energy Ball Milling and Spark-plasma Sintering

  • Nguyen, H.V.;Kim, J.C.;Kim, J.S.;Kwon, Y.J.;Kwon, Y.S.
    • 한국분말재료학회지
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    • 제16권5호
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    • pp.358-362
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    • 2009
  • Ti$_{50}$Cu$_{20}$Ni$_{20}$Al$_{10}$ quaternary amorphous alloy was prepared by high-energy ball milling process. A complete amorphization was confirmed for the composition of Ti$_{50}$Cu$_{20}$Ni$_{20}$Al$_{10}$ after milling for 30hrs. Differential scanning calorimetry showed a large super-cooled liquid region ($\Delta$T$_x$ = T$_x$ T$_g$, T$_g$ and T$_x$: glass transition and crystallization onset temperatures, respectively) of 80 K. Prepared amorphous powders of Ti$_{50}$Cu$_{20}$Ni$_{20}$Al$_{10}$ were consolidated by spark-plasma sintering. Densification behavior and microstructure changes were investigated. Samples sintered at higher temperature of 713 K had a nearly full density. With increasing the sintering temperature, the compressive strength increased to fracture strength of 756 MPa in the case of sintering at 733 K, which showed a 'transparticle' fracture. The samples sintered at above 693 K showed the elongation maximum above 2%.

반응성 스프레이방법으로 제작한 티타늄 알루미나이드/탄화물 복합박막의 미세조직과 경도 (Microstructure and Hardness of Titanium Aluminide/Carbide Composite Coatings Prepared by Reactive Spray Method)

  • 한창석;진성윤
    • 한국재료학회지
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    • 제30권7호
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    • pp.350-358
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    • 2020
  • A variety of composite powders having different aluminum and carbon contents are prepared using various organic solvents having different amounts of carbon atoms in unit volume as ball milling agents for titanium and aluminum ball milling. The effects of substrate temperature and post-heat treatment on the texture and hardness of the coating are investigated by spraying with this reduced pressure plasma spray. The aluminum part of the composite powder evaporates during spraying, so that the film aluminum content is 30.9 mass%~37.4 mass% and the carbon content is 0.64 mass%~1.69 mass%. The main constituent phase of the coating formed on the water-cooled substrate is a non-planar α2 phase, obtained by supersaturated carbon regardless of the alloy composition. When these films are heat-treated at 1123 K, the main constituent phase becomes γ phase, and fine Ti2AlC precipitates to increase the film hardness. However, when heat treatment is performed at a higher temperature, the hardness is lowered. The main constitutional phase of the coating formed on the preheated substrate is an equilibrium gamma phase, and fine Ti2AlC precipitates. The hardness of this coating is much higher than the hardness of the coating in the sprayed state formed on the water-cooled substrate. When hot pressing is applied to the coating, the porosity decreases but hardness also decreases because Ti2AlC grows. The amount of Ti2AlC in the hot-pressed film is 4.9 vol% to 15.3 vol%, depending on the carbon content of the film.

극저온 기계화학적 밀링(Mechano-Chemical Milling)에 의해 제조된 ODS Fe 합금의 기계적 특성 (Mechanical Properties of ODS Fe Alloys Produced by Mechano-Chemical Cryogenic Milling)

  • 한성인;홍영환;황승준
    • 열처리공학회지
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    • 제25권3호
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    • pp.138-145
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    • 2012
  • An ${\alpha}$-Ferrite (Fe) powder dispersed with 4 vol.% of $Al_2O_3$ was successfully produced by a simple miling at 210 K with a mixture of $Fe_2O_3$, Fe and Al ingredient powders, followed by 2 step high temperature consolidation: Hot Pressing (HP) at 1323 K and then Hot Isostatic Pressing at 1423 K. The microstructure of the consolidated material was characterized by standard metallographic techniques such as XRD (X-ray Diffraction), TEM and STEM-EDS. The results of STEM-EDS analysis showed that the HIPed materials comprised a mixture of pure Fe matrix with a grain size of ~20 nm and $Al_2O_3$ with a bimodal size distribution of extremely fine (~5 nm) and medium size dispersoids (~20 nm). The mechanical properties of the consolidated materials were characterized by compressive test and micro Vickers hardness test at room temperature. The results showed that the yield strength of the ODS (Oxide Dispersion Strengthened) Fe alloy are as much as $674{\pm}39$ MPa and the improvement of the yield strength is attributed to the presence of the fine $Al_2O_3$ dispersoid.

Ti-Al-Si-N 박막 제작을 위한 합금 타겟 제조 및 박막의 기계적 특성 (Fabrication of Alloy Target for Formation of Ti-Al-Si-N Composite Thin Film and Their Mechanical Properties)

  • 이한찬
    • 한국전기전자재료학회논문지
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    • 제29권10호
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    • pp.665-670
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    • 2016
  • Prevailing dissemination of machine tools and cutting technology have caused drastic developments of high speed dry machining with work materials of high hardness, and demands on the high-hardness-materials with high efficiency have become increasingly important in terms of productivity, cost reduction, as well as environment-friendly issue. Addition of Si to TiAlN has been known to form nano-composite coating with higher hardness of over 30 GPa and oxidation temperature over $1,000^{\circ}C$. However, it is not easy to add Si to TiAlN by using conventional PVD technologies. Therefore, Ti-Al-Si-N have been prepared by hybrid process of PVD with multiple target sources or PVD combined with PECVD of Si source gas. In this study, a single composite target of Ti-Al-Si was prepared by powder metallurgy of MA (mechanical alloying) and SPS (spark plasma sintering). Properties of he resulting alloying targets were examined. They revealed a microstructure with micro-sized grain of about $1{\sim}5{\mu}m$, and all the elements were distributed homogeneously in the alloying target. Hardness of the Ti-Al-Si-N target was about 1,127 Hv. Thin films of Ti-Al-Si-N were prepared by unbalanced magnetron sputtering method by using the home-made Ti-Al-Si alloying target. Composition of the resulting thin film of Ti-Al-Si-N was almost the same with that of the target. The thin film of Ti-Al-Si-N showed a hardness of 35 GPa and friction coefficient of 0.66.

SHS법에 의해 제조된 $Al_2O_3$-TiC복합분말과 $Al_2O_3$단섬유를 강화재로 사용한 하이브리드 금속기 복합재료의 제조 (Manufacturing of Hybrid Metal Matrix Composites used $Al_2O_3$ Short Fiber and $Al_2O_3$-TiC Composite Powder Synthesized by SHS Process)

  • 김동현;맹덕영;이종현;원창환
    • 한국재료학회지
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    • 제9권3호
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    • pp.315-321
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    • 1999
  • 금속기지 복합물은 구조용 재료로서 매우 우수한 성질을 지니고 있어 광범위하게 연구되어져 왔다. $Al_2O_3$와 SiC는 그들의 우수한 기계적 특성 때문에 일반적인 보강재로서 사용되어져 왔다. 그러나 이들 세라믹 보강재는 비싼 재조 비용 때문에 특별한 목적을 위해서만 한정되어 사용되어져 왔다. 본 연구에서는 우리는 Al 합금기지 복합물에서 SHS법에 의해 합성된 $Al_2O_3$-SiC 분말의 보강재로서의 응용 가능성을 살펴보았다. 또한 $Al_2O_3$단섬유를 Al기지 하이브리드 복합물에 적용하기 위하여 합성된 분말과 함께 첨가하였다. 25vol% 강화재의 복합물을 제조하기 위하여 용탕단조법을 사용하였다. 미세구조와 결정구조는 SEM, OM 그리고 XRD로 관찰하였고 압축시험과 마모시험으로 기계적인 성질들을 조사하였다.

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