• 제목/요약/키워드: surface-alloying treatment

검색결과 57건 처리시간 0.023초

Cr-Mo鋼 熔接熱影響部 의 破壞靭性 에 미치는 熔接後 熱處理 의 影響 II (The Effect of PWHT on Fracture Toughness in HAZ of Cr-Mo Steel(II))

  • 임재규;정세희
    • 대한기계학회논문집
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    • 제9권1호
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    • pp.40-46
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    • 1985
  • 본 연구에서는 제 1보에 밝힌 바 있는 용접 HAZ조직의 파괴인성에 영향을 주 는 PWHT 유지시간과 가열속도에 이어, 용접 HAZ의 불안정포성파괴에 미치는 용접잔유 응력의 영향을 상세히 밝히기 위하여 일층 용접을 실시하고, 이 용접재의 용접HAZ에 단축상태의 일정한 응력을 작용시켜 주면서 소정의 열처리를 실시함으로써 용접후 열 처리시 용접HAZ에 작용된 응력의 크기가 파괴인성에 어떠한 영향을 미치는지를 COD파 괴인성시험, 미소경도시험, 파면관찰을 통하여 고찰하고자 한다.

Fine Structure Effect of PdCo electrocatalyst for Oxygen Reduction Reaction Activity: Based on X-ray Absorption Spectroscopy Studies with Synchrotron Beam

  • Kim, Dae-Suk;Kim, Tae-Jun;Kim, Jun-Hyuk;Zeid, E. F. Abo;Kim, Yong-Tae
    • Journal of Electrochemical Science and Technology
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    • 제1권1호
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    • pp.31-38
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    • 2010
  • In this study, we have demonstrated the fine structure effect of PdCo electrocatalyst on oxygen reduction reaction activity with different alloy composition and heat-treatment time. In order to identify the intrinsic factors for the electrocatalytic activity, various X-ray analyses were used, including inductively coupled plasma-atomic emission spectrometer, transmission electron microscopy, X-ray diffractometer, and X-ray Absorption Spectroscopy technique. In particular, extended X-ray absorption fine structure was employed to extract the structural parameters required for understanding the atomic distribution and alloying extent, and to identify the corresponding simulated structures by using FEFF8 code and IFEFFIT software. The electrocatalytic activity of PdCo alloy nanoparticles for the oxygen reduction reaction was evaluated by using rotating disk electrode technique and correlated to the change in structural parameters. We have found that Pd-rich surface was formed on the Co core with increasing heating time over 5 hours. Such core shell structure of PdCo/C showed that a superior oxygen reduction reaction activity than pure Pd/C or alloy phase of PdCo/C electrocatalysts, because the adsorption energy of adsorbates was apparently reduced by lowering the dband center of the Pd skin due to a combination of the compressive strain effect and ligand effect.

영남지역 출토 금제 귀걸이의 성분 조성에 따른 유형 분류와 금속 재료 특성 (Type Classification and Material Properties by the Composition of Components in Gold Earrings Excavated from the Yeongnam Region)

  • 전익환;강정무;이재성
    • 헤리티지:역사와 과학
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    • 제52권1호
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    • pp.4-21
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    • 2019
  • 영남지역에서 출토된 6~7세기 신라 금제 귀걸이 23점에 대한 성분 분석을 실시하고, 금판에 포함된 은(Ag) 함량을 기준으로 세 가지 유형으로 분류하였다. I 유형(20~50wt%), II 유형(10~20wt%), III 유형(10wt% 이하)으로 구분하였는데, I II 유형의 귀걸이 금판은 금(Au) 함량이 상대적으로 높은 부분에서 미세한 기공이 집중적으로 분포되는 현상이 관찰되었다. 금판 표면의 성분 차이 발생 원인을 네 가지로 구분하여 1) 표면 처리, 2) 제작 과정에서 열 확산, 3) 사금의 성분 차이, 4) 금의 정련 방법 측면에서 검토하였다. 금판 표면의 금 함량이 상대적으로 높은 부분에서는 미세한 기공이 집중적으로 관찰되며, 이와 관련하여 금 합금 표면에 의도적으로 금을 제외한 금속 성분을 제거하면서 금 함량을 높이는 고갈 도금(depletion gilding) 가능성을 제시하였다. 의도적인 표면 처리와 더불어 제작 과정에서 금판과 금속 봉 사이에 열 확산이 일어나 금판의 구리 함량이 높아진 사례를 세환이식의 분석 결과로 확인되었다. 금판의 재료적인 측면에서 살펴보면 금판에 포함된 은(Ag)이 자연금에 포함된 것인지, 합금에 의해 추가된 것인지를 국내에서 채취된 사금 분석을 통해 살펴보았다. 분석 결과 평균적으로 13wt% 정도의 은이 포함된 것으로 미루어 보아 II 유형은 자연금의 범주에 포함되고, III 유형은 정련 과정을 거친 금, I 유형은 자연금에 은이 합금된 것으로 보인다. 여기에서 III 유형의 경우 정련 과정을 거쳐 순수한 금을 만든 뒤 은을 합금했을 가능성에 대해 국내외 고대 문헌에 소개된 금 정련 방법을 조사하였다. 고대 정련 방법은 자연금에 포함된 은이 염화물 또는 황화물과 반응하여 결합됨으로써 제거되는 방법이었는데, 이러한 방법을 통해 순수한 금을 얻기 위해서는 장시간의 노력과 기술이 요구된다는 것이 밝혀졌다. 따라서 정련 과정을 통해 순금을 만든 후에 강도를 높이기 위해 소량의 은을 첨가했을 가능성은 낮아 보인다.

AI-Li계 합금의 초소성에 관한 연구 (Study on the Superplasticity in Al-Li Alloy Systems)

  • 진영철;국진선;김양수;홍은성;이민상;이민호;유창영
    • 열처리공학회지
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    • 제5권1호
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    • pp.41-49
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    • 1992
  • The effects of alloying elements on the superplastic properties of Al-Li based alloys had been investigated. The intermediate thermo-mechanical treated (ITMT) Al-2.0wt%Li, Al-2.0wt%Li-1.0wt%Mg, Al-2.0wt%Li-0.12wt%Zr and Al-2.0wt%Li-1.2wt%Cu-1.0wt%Mg-0.12wt%Zr alloys were tested in tension at various temperature (400, 450, 500 and $550^{\circ}C$) and strain rate($6.7{\times}10^{-3}$, $1.0{\times}10^{-2}$, $1.6{\times}10^{-2}$ and $5.0{\times}10^{-2}/sec$). The results were as follows : The superplasticity in binary, ternary and pentanary alloys appeared at 500 to $550^{\circ}C$, and good strain rate for superplasticity. $1.6{\times}10^{-2}/sec{\sim}1.0{\times}10^{-2}/sec$ for a binary alloy and $1.0{\times}10^{-2}/sec{\sim}6.7{\times}10^{-3}/sec$ for ternary and pentanary alloys. A Zr-added ternary alloy had best value of elongation (730%) in four alloys at $550^{\circ}C$ of tension temperature and $1.0{\times}10^{-2}/sec$ of strain rate. The strain rate was greatly dependent on tension temperature and true strain rate was more than 1.0 at all test temperature and strain rate. In binary and Mg-added teranry alloys. the necks were slightly formed and their fracture surface had lips shape, but Zr-added ternary and pentanary alloy fractured along the grain boundary without necking. Their dislocations moved to grain boundary during superplasticity deformation and arranged perpendicular to grain boundary. Super plastic deformation was made by grain boundary slip of dislocation slip creep and model of core and mantle.

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Stellite bearings for liquid Zn-/Al-Systems with advanced chemical and physical properties by Mechanical Alloying and Standard-PM-Route

  • Zoz, H.;Benz, H.U.;Huettebraeucker, K.;Furken, L.;Ren, H.;Reichardt, R.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2000년도 춘계학술강연 및 발표대회 강연 및 발표논문 초록집
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    • pp.9-10
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    • 2000
  • An important business-field of world-wide steel-industry is the coating of thin metal-sheets with zinc, zinc-aluminum and aluminum based materials. These products mostly go into automotive industry. in particular for the car-body. into building and construction industry as well as household appliances. Due to mass-production, the processing is done in large continuously operating plants where the mostly cold-rolled metal-strip as the substrate is handled in coils up to 40 tons unwind before and rolled up again after passing the processing plant which includes cleaning, annealing, hot-dip galvanizing / aluminizing and chemical treatment. In the liquid Zn, Zn-AI, AI-Zn and AI-Si bathes a combined action of corrosion and wear under high temperature and high stress onto the transfer components (rolls) accounts for major economic losses. Most critical here are the bearing systems of these rolls operating in the liquid system. Rolls in liquid system can not be avoided as they are needed to transfer the steel-strip into and out of the crucible. Since several years, ceramic roller bearings are tested here [1.2], however, in particular due to uncontrollable Slag-impurities within the hot bath [3], slide bearings are still expected to be of a higher potential [4]. The today's state of the art is the application of slide bearings based on Stellite\ulcorneragainst Stellite which is in general a 50-60 wt% Co-matrix with incorporated Cr- and W-carbides and other composites. Indeed Stellite is used as the bearing-material as of it's chemical properties (does not go into solution), the physical properties in particular with poor lubricating properties are not satisfying at all. To increase the Sliding behavior in the bearing system, about 0.15-0.2 wt% of lead has been added into the hot-bath in the past. Due to environmental regulations. this had to be reduced dramatically_ This together with the heavily increasing production rates expressed by increased velocity of the substrate-steel-band up to 200 m/min and increased tractate power up to 10 tons in modern plants. leads to life times of the bearings of a few up to several days only. To improve this situation. the Mechanical Alloying (MA) TeChnique [5.6.7.8] is used to prOduce advanced Stellite-based bearing materials. A lubricating phase is introduced into Stellite-powder-material by MA, the composite-powder-particles are coated by High Energy Milling (HEM) in order to produce bearing-bushes of approximately 12 kg by Sintering, Liquid Phase Sintering (LPS) and Hot Isostatic Pressing (HIP). The chemical and physical behavior of samples as well as the bearing systems in the hot galvanizing / aluminizing plant are discussed. DependenCies like lubricant material and composite, LPS-binder and composite, particle shape and PM-route with respect to achievable density. (temperature--) shock-reSistibility and corrosive-wear behavior will be described. The materials are characterized by particle size analysis (laser diffraction), scanning electron microscopy and X-ray diffraction. corrosive-wear behavior is determined using a special cylinder-in-bush apparatus (CIBA) as well as field-test in real production condition. Part I of this work describes the initial testing phase where different sample materials are produced, characterized, consolidated and tested in the CIBA under a common AI-Zn-system. The results are discussed and the material-system for the large components to be produced for the field test in real production condition is decided. Outlook: Part II of this work will describe the field test in a hot-dip-galvanizing/aluminizing plant of the mechanically alloyed bearing bushes under aluminum-rich liquid metal. Alter testing, the bushes will be characterized and obtained results with respect to wear. expected lifetime, surface roughness and infiltration will be discussed. Part III of this project will describe a second initial testing phase where the won results of part 1+11 will be transferred to the AI-Si system. Part IV of this project will describe the field test in a hot-dip-aluminizing plant of the mechanically alloyed bearing bushes under aluminum liquid metal. After testing. the bushes will be characterized and obtained results with respect to wear. expected lifetime, surface roughness and infiltration will be discussed.

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연료전지 촉매의 입자크기가 내구성에 미치는 영향 (Effect of Pt Particle Size on the Durability of PEMFC)

  • 민경원;김현종;한명근;류태우;김목순;주영환
    • 전기화학회지
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    • 제11권4호
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    • pp.313-318
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    • 2008
  • 본 연구에서는 백금의 입자크기가 내구성과 활성에 미치는 영향을 고찰하였다. 상용 Pt/C의 열처리를 통해 백금 입자 크기를 $3.5{\sim}9\;nm$로 조절하였고, XRD와 TEM을 통해 이를 확인하였다. 촉매의 내구성 분석을 위해 가속 실험을 실시하였고, 촉매 활성 측정을 위해 산소환원반응 실험을 하였다. 백금의 입자크기를 증가시킬수록 내구성은 향상되었으나 촉매의 활성이 저하되었다. 즉 촉매의 내구성과 활성은 반비례관계가 성립된다는 것을 확인하였다. 그리고 저하된 촉매 활성과 내구성을 향상시키기 위해, 합금 촉매를 사용하였다.상용 Pt/C의 최대 전력 밀도는 약 $507.6\;mV/cm^2$ 이고, PtCo/C 합금촉매는 $585.8\;mV/cm^2$이었다. 전기화학적 표면적은 상용 Pt/C는 약 60%정도 감소하였고, PtCo/C 합금촉매는 약 24%정도의 감소율을 나타냈다. 따라서 백금의 입자 크기 조절과 합금화를 통해 백금의 내구성과 활성을 동시에 높일 수 있었다.

기계적 합금화 공정으로 제조된 Fe-14Cr Ferritic 산화물 분산 강화(ODS) 합금 강의 고온 산화 거동 (High Temperature Oxidation Behavior of Fe-14Cr Ferritic Oxide Dispersion Strengthened Steels Manufactured by Mechanical Alloying Process)

  • 김영균;박종관;김휘준;공만식;이기안
    • 한국분말재료학회지
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    • 제24권2호
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    • pp.133-140
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    • 2017
  • This study investigates the oxidation properties of Fe-14Cr ferritic oxide-dispersion-strengthened (ODS) steel at various high temperatures (900, 1000, and $1100^{\circ}C$ for 24 h). The initial microstructure shows that no clear structural change occurs even under high-temperature heat treatment, and the average measured grain size is 0.4 and $1.1{\mu}m$ for the as-fabricated and heat-treated specimens, respectively. Y-Ti-O nanoclusters 10-50 nm in size are observed. High-temperature oxidation results show that the weight increases by 0.27 and $0.29mg/cm^2$ for the as-fabricated and heat-treated ($900^{\circ}C$) specimens, and by 0.47 and $0.50mg/cm^2$ for the as-fabricated and heat-treated ($1000^{\circ}C$) specimens, respectively. Further, after 24 h oxidation tests, the weight increases by 56.50 and $100.60mg/cm^2$ for the as-fabricated and heat-treated ($1100^{\circ}C$) specimens, respectively; the latter increase is approximately 100 times higher than that at $1000^{\circ}C$. Observation of the surface after the oxidation test shows that $Cr_2O_3$ is the main oxide on a specimen tested at $1000^{\circ}C$, whereas $Fe_2O_3$ and $Fe_3O_4$ phases also form on a specimen tested at $1100^{\circ}C$, where the weight increases rapidly. The high-temperature oxidation behavior of Fe-14Cr ODS steel is confirmed to be dominated by changes in the $Cr_2O_3$ layer and generation of Fe-based oxides through evaporation.