• 제목/요약/키워드: Ag alloying

검색결과 51건 처리시간 0.023초

도재 소부용 팔라디움계 합금의 도재 결합양상에 관한 연구 (A STUDY ON THE BONDING BEHAVIOR OF PALLADIUM-BASED ALLOYS FOR CERAMO-MENTAL RESTORATION)

  • 장훈;임호남;최부병
    • 대한치과보철학회지
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    • 제27권1호
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    • pp.143-179
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    • 1989
  • To observe the bonding behavior of palladium-based alloys to porcelain; 1. Pd-Co binary alloy with the higher cobalt content, 2. Pd-Co binary alloy with the lower cobalt content, 3. Pd-Ag-Sn ternary alloy, 4. Pd-Ag binary alloy, 5. Pd-Cu-Au ternary alloy and 6. Pd-Cu binary alloy were made as 6 groups of experimental alloys. Each group of alloy was divided into 4 sub-groups such as one sub-group that was not degassed and three sub-groups that degassed for 5 minutes, 10 minutes and 15 minutes. On each specimen, weight changes after degassing, morphological changes of oxide layer by changing the degassing time, compositional changes at metal-ceramic interface and bond strength of metal-ceramic measured with planar shear test were observed and compared. The results of the present study allow the following conclusions to be drawn: 1. The alloy showing the greatest bond strength was Pd-Cu alloy without gold and bond strength was decreased by alloying gold to them. 2. Although Pd-Co alloy showed the most prominent oxidation behavior, bond strength of them to porcelain was not greatly high by the formation of porosities at metal-ceramic interfaces. 3. Likewise tin, cobalt formed the peaks on line profiles at metal-ceramic interface, however copper did not exhibit such peaks on line profiles. 4. Mainly, oxide layer on Pd-Co alloy was composed with cobalt, and for Pd-Co alloy with higher cobalt content the rise of bond strength was not significant by increased degassing time. 5. On Pd-Ag alloy not containing tin, during degassing for 15 minutes silver content was increased at metal-ceramic interface. 6. As an oxidized element, tin formed the oxide layers that widen their area by increasing the degassing time, while cobalt and copper showed the morphological changes of particle or crystal on oxide layer.

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Microstructural Characterization of Gas Atomized Copper-Iron Alloys with Composition and Powder Size

  • Abbas, Sardar Farhat;Kim, Taek-Soo
    • 한국분말재료학회지
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    • 제25권1호
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    • pp.19-24
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    • 2018
  • Cu-Fe alloys (CFAs) are much anticipated for use in electrical contacts, magnetic recorders, and sensors. The low cost of Fe has inspired the investigation of these alloys as possible replacements for high-cost Cu-Nb and Cu-Ag alloys. Here, alloys of Cu and Fe having compositions of $Cu_{100-x}Fe_x$ (x = 10, 30, and 50 wt.%) are prepared by gas atomization and characterized microstructurally and structurally based on composition and powder size with scanning electron microscopy (SEM) and X-ray diffraction (XRD). Grain sizes and Fe-rich particle sizes are measured and relationships among composition, powder size, and grain size are established. Same-sized powders of different compositions yield different microstructures, as do differently sized powders of equal composition. No atomic-level alloying is observed in the CFAs under the experimental conditions.

Intermediate Valence State of Cerium in Intermetallics

  • Suski, Wojciech
    • Journal of Magnetics
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    • 제4권3호
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    • pp.102-106
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    • 1999
  • Ce exhibits the intermediate valence (IV) state both as an element and in its compounds. In the present review characteristic behavior of the materials showing the IV state are described. Then the methods of producing this state : the application of the external pressure, temperature and magnetic field as well as the alloying are being discussed. An identification of the IV state is frequently not a simple goal and the best results can be obtained using a combination of various independent methods. Particular attention is paid to the X-ray spectroscopy, lattice parameters and the magnetic properties. As the examples of the IV state in the Ce compounds the properties of following materials are reported : CeRhSb, $CeCu_5In_7, CeAg_6In_6, Sc_{1-x}Ce_xFe_4Al_8 $and for comparison Sc1-xYbxFe4Al8.

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전기화학적 환원 분석을 통한 무연 솔더 합금의 산화에 대한 연구 (The Oxidation Study of Lead-Free Solder Alloys Using Electrochemical Reduction Analysis)

  • 조성일;유진;강성권
    • 마이크로전자및패키징학회지
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    • 제12권1호
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    • pp.35-40
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    • 2005
  • 전자 부품에 인체에 유해한 납을 사용하지 않기 위해서 Sn을 주 원소로 한 무연 솔더 합금의 개발이 활발히 진행되고 있다. 무연 솔더 합금의 열역학적, 기계적 특성은 많이 연구되었으나 산화 거동에 대해서는 거의 연구가 되어있지 않다. 따라서 본 연구에서는 Sn 및 Sn-0.7Cu, Sn-3.5Ag, Sn-lZn, Sn-9Zn 합금에 대해 $150^{\circ}C$ 산화 거동을 연구하였다. 전기화학적 환원 분석을 통해 표면에 형성된 산화물의 종류와 양을 분석하여 합금 원소에 따른 산화 거동을 비교하였고 XPS 표면분석을 통하여 환원 실험 결과를 뒷받침하였다. 또한 합금 원소에 따른 산화물 성장 속도를 비교하였다. Sn-0.7Cu 와 Sn-3.5Ag의 경우 Sn의 산화와 비슷한 거동을 보였다. 산화 초기에는 SnO가 형성되고 산화가 진행됨에 따라 SnO 와 $SnO_2$가 같이 존재하되 $SnO_2$가 우세하게 성장하였다. Zn를 포함한 Sn 합금의 경우 ZnO와 $SnO_2$가 형성되었다. Zn의 첨가로 인해 $SnO_2$의 형성이 촉진되었고 SnO는 억제하는 것을 발견하였다.

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치과용(齒科用) 은(銀)-파라디움합금(合金)의 합금원소(合金元素)가 제성질(諸性質)에 미치는 영향(影響)에 관(關)한 연구(硏究) (EFFECTS OF ALLOYING ELEMENTS ON VARIOUS PROPERTIES OF DENTAL SILVER-PALLADIUM ALLOYS)

  • 김춘진;박남수
    • 대한치과보철학회지
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    • 제22권1호
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    • pp.95-108
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    • 1984
  • Even though the tarnishing and corrosion problems characteristic with dental silver-palladium alloy are not yet fully solved, it is recently widely used because of its low cost. However the effects of major alloying elements on the various properties of this system are not fully understood. The object of this research is to clarify the effects of In and Zn additives on the corrosion and tarnishing resistances and precipitation hardening behavior of this sytem, using electrodynamic polarization, immersion, and Vicker's microhardness test and X-ray diffraction and electron probe micro analysis methods. The obtained results were as follows: I. As indium content is increased, both the corrosion resistance in Cl-solution and microhardness are also increased while the tarnishing resistance is decreased. 2. As Zinc content is increased, the corrosion resistance is decreased, but tarnishing resistance is increased 3. At 70Ag-25Pd-2.5Zn-2.5In composition, the precipitation harding behavior was mot significant. The optimum aging temperature was $450^{\circ}C$ and the time was 2 hrs. The resulting specimen of this work carried 180VHN. 4. Under the heat treatment, the changes in the mechanical property are due to the changes in the shape and composition of dendrite matrix, namely, it is because of the precipitation hardening behavior which has been proved by electron probe micro analysis and optical microscopic finding.

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Effect of Plasma Pretreatment on Superconformal Cu Alloy Gap-Filling of Nano-scale Trenches

  • 문학기;이정훈;이수진;윤재홍;김형준;이내응
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.53-53
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    • 2011
  • As the dimension of Cu interconnects has continued to reduce, its resistivity is expected to increase at the nanoscale due to increased surface and grain boundary scattering of electrons. To suppress increase of the resistivity in nanoscale interconnects, alloying Cu with other metal elements such as Al, Mn, and Ag is being considered to increase the mean free path of the drifting electrons. The formation of Al alloy with a slight amount of Cu broadly studied in the past. The study of Cu alloy including a very small Al fraction, by contrast, recently began. The formation of Cu-Al alloy is limited in wet chemical bath and was mainly conducted for fundamental studies by sputtering or evaporation system. However, these deposition methods have a limitation in production environment due to poor step coverage in nanoscale Cu metallization. In this work, gap-filling of Cu-Al alloy was conducted by cyclic MOCVD (metal organic chemical vapor deposition), followed by thermal annealing for alloying, which prevented an unwanted chemical reaction between Cu and Al precursors. To achieve filling the Cu-Al alloy into sub-100nm trench without overhang and void formation, furthermore, hydrogen plasma pretreatment of the trench pattern with Ru barrier layer was conducted in order to suppress of Cu nucleation and growth near the entrance area of the nano-scale trench by minimizing adsorption of metal precursors. As a result, superconformal gap-fill of Cu-Al alloy could be achieved successfully in the high aspect ration nanoscale trenches. Examined morphology, microstructure, chemical composition, and electrical properties of superfilled Cu-Al alloy will be discussed in detail.

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Fe3O4 Nanoparticles on MWCNTs Backbone for Lithium Ion Batteries

  • Lee, Kangsoo;Shin, Seo Yoon;Yoon, Young Soo
    • 한국세라믹학회지
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    • 제53권3호
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    • pp.376-380
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    • 2016
  • A composite electrode made of iron oxide nanoparticles/multi-wall carbon nanotube (iNPs/M) delivers high specific capacity and cycle durability. At a rate of $200mAg^{-1}$, the electrode shows a high discharge capacity of ${\sim}664mAhg^{-1}$ after 100 cycles, which is ~ 70% of the theoretical capacity of $Fe_3O_4$. Carbon black, carbon nanotube, and graphene as anode materials have been explored to improve the electrical conductivity and cycle stability in Li ion batteries. Herein, iron oxide nanoparticles on acid treated MWCNTs as a conductive platform are combined to enhance the drawbacks of $Fe_3O_4$ such as low electrical conductivity and volume expansion during the alloying/dealloying process. Enhanced performance was achieved due to a synergistic effect between electrically 3D networks of conductive MWCNTs and the high Li ion storage ability of $Fe_3O_4$ nanoparticles (iNPs).

Hydrogen Evolution Ability of Selected Pure Metals and Galvanic Corrosion Behavior between the Metals and Magnesium

  • Luo, Zhen;Song, Kaili;Li, Guijuan;Yang, Lei
    • Journal of Electrochemical Science and Technology
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    • 제11권4호
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    • pp.323-329
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    • 2020
  • The cathodic hydrogen evolution ability of different pure metals and their long term galvanic corrosion behavior with pure Mg were investigated. The hydrogen evolution ability of pure Ti, Al, Sn and Zr is weak, while that of Fe, W, Cr, and Co is very strong. Initial polarization test could not completely reveal the cathodic behavior of the tested metals during long term corrosion. The cathodic hydrogen evolution ability may vary significantly in the long term galvanic tests for different metals, especially for Al whose cathodic current density reduced to 1/50 of the initial value. The anodic polarization shows that Al and Sn as alloying elements are supposed to provide relatively good passive effect for Mg alloy, while Ag can provide a slight passive effect and Zn has little passive effect.

오동상감(烏銅象嵌)기법을 활용한 장도(粧刀)의 제작기술 및 복원연구 (Jangdo(Small Ornamental Knives) manufacturing process and restoration research using Odong Inlay application)

  • 윤용현;조남철;정영상;장추남
    • 헤리티지:역사와 과학
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    • 제49권2호
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    • pp.172-189
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    • 2016
  • 본 연구에서는 "오주서종박물고변(五洲書種博物考辯)", "천공개물(天工開物)" 등 고문헌에 기록된 오동 재료와 합금비, 주조 시설, 주조법 등을 확인하고 이를 기초자료로 활용하여 오동상감기법으로 장도를 제작하였다. 오동상감기법 장도 제작은 크게 오동 합금, 은땜 합금, 오동판과 은판 제작, 칼자루와 칼집 제작, 장도의 장석인 두겁 및 부속품 제작, 오동 상감, 조립의 순으로 진행하였다. 오동의 합금은 "오주서종박물고변"에 보이는 상품(上品)으로 전통방식의 진오동(眞烏銅) 합금비인 구리와 금을 20:1의 중량비로 하였다. 은땜의 합금은 상감된 문양에 사용한 경우 은과 황동(Cu 7 : Zn 3)을 중량비 5:1로, 단순 접합 사용한 경우에는 은과 황동을 중량비 5:2로 합금하여 은땜판을 제작하였다. 칼집과 칼자루 제작은 진오동 합금비로 만든 오동 괴를 풀림과 단조작업을 실시하여 오동판의 두께를 0.6mm로, 오동의 뒷면인 은판도 두께 0.6mm로 제작한 뒤, 오동판과 은판 접합, 풀림과 단조, 오동판에 문양 새기기, 은 상감하기, 오동판으로 칼집과 칼자루 모양잡기, 은땜으로 접합하기, 연마 및 광택내기 등의 과정을 거쳐 완성하였다. 붉은색의 오동판 표면을 검은색으로 부식시키는 '오동 살리기(발색하기)'는 오동 합금의 품위에 따라 발색 효과가 차이가 난다. 한지를 30일 정도 썩힌 인뇨(人尿)에 적셔 칼집과 칼자루 등에 감아 따뜻한 곳($25^{\circ}C$ 이상)에 두고 2~3시간이 경과하면 오동판의 겉면만 검은색으로 발색되고 은이 상감된 문양은 그대로 있어 오동상감기법을 재현할 수 있었다. 오동상감 복원에 사용했던 오동판, 은판, 은땜판의 합금성분과 오동의 표면 발색성분을 알기 위해 과학분석을 실시하였다. 오동 합금 분석(시료 2개)결과 고문헌 기록(Cu 95wt%, Au 5wt%)과 평균성분비가 유사한 Cu 95.57wt%, Au 4.16wt%과 차이가 있는 Cu 98.04wt%, Au 1.95wt%로 검출되었는데, 전자는 오동판 가공에 성공률이 높은 반면, 후자는 가공과정에서 터지는 등의 실패가 있었다. 오동판과 은판이 부착된 시료의 성분분석 결과 은판 부분은 Ag 100wt%로 검출되었고, 오동판과 은판이 접합된 부분은 Cu, Ag, Au가 모두 검출되어 접합이 잘 되었음을 확인할 수 있었다. 은과 황동을 합금한 은땜판은 분석결과 Ag 성분이 다양하게 검출되고 있어 성분비와 관계없이 매우 불균질하게 섞여있음을 관찰하였다. 오동판에 검은색으로 발색된 부분의 성분분석 결과 소지 금속에서 검출되지 않았던 S의 함량이 검출되어 S의 함량이 오동 색상에 영향을 미친 것으로 판단되었다. 향후 발색에 대한 정확한 메커니즘을 밝히기 위해서는 추가적인 화합물, 색도 및 재현 연구 등 추가연구가 필요하다. 이번 연구를 통해 시도 및 확인된 고문헌 속의 오동합금 실험 및 재현, 오동상감기법에 의한 장도제작, 오동판 검은색 발색 메커니즘의 과학 분석결과 등은 오동상감기법의 복원을 위한 중요한 기초자료로 활용될 수 있을 것이다.

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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