• 제목/요약/키워드: Si-based alloy

검색결과 216건 처리시간 0.021초

기지내 반응법에 의한 WC 복합재료의 제조에 관한 연구(1);주조접합된 주철/텅스텐 와이어의 계면반응층 생성기구와 조직특성 (A Study on the Manufacture of WC MMCs by In-situ Reaction Process(1);The Formation Mechanism of Interfacial Reaction Layer in Cast-bonded Cast iron/W wire and Its Structure)

  • 박흥일;김창업;허보영;이성렬;김창규
    • 한국주조공학회지
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    • 제15권3호
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    • pp.272-282
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    • 1995
  • Iron-based metal matrix composites have been recently investigated for the use of inexpensive abrasion resistance material. This paper carried out to investigate the in-situ reaction effects on the microstructural characteristics and the formation mechanism of tungsten carbides in a white cast iron matrix. The specimens of Fe-3.2%C-2.8%Si alloy cast-bonded with tungsten wire were cast in the metal mold and isothermally heat treated at $950^{\circ}C$ up to 48 hours. The typical microstructure of heat treated specimens showed the reaction layer of WC at the interface of tungsten wire and the carbon depletion zone between the WC layer and the matrix. During the formation of WC layer, if the carbon supply is insufficient due to the decarburization of matrix or the isolation of matrix by cast-bonded W wires, the reaction layer develops coarse hexagonal crystalline WC. From the microstructural investigation, it was found that the volume of WC layer and the carbon depletion zone increased linearly with the isothermal heat treating time. This results supported that the formation rate of WC in the white cast iron matrix is controlled by the interfacial reaction with a constant reaction rate.

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Aluminum Powder Metallurgy Current Status, Recent Research and Future Directions

  • Schaffer, Graham
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2001년도 추계학술강연 및 발표대회
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    • pp.7-7
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    • 2001
  • The increasing interest in light weight materials coupled to the need for cost -effective processing have combined to create a significant opportunity for aluminum P/M. particularly in the automotive industry in order to reduce fuel emissions and improve fuel economy at affordable prices. Additional potential markets for Al PIM parts include hand tools. Where moving parts against gravity represents a challenge; and office machinery, where reciprocating forces are important. Aluminum PIM adds light weight, high compressibility. low sintering temperatures. easy machinability and good corrosion resistance to all advantages of conventional iron bm;ed P/rv1. Current commercial alloys are pre-mixed of either the AI-Si-Mg or AL-Cu-Mg-Si type and contain 1.5% ethylene bis-stearamide as an internal lubricant. The powder is compacted in closed dies at pressure of 200-500Mpa and sintered in nitrogen at temperatures between $580~630^{\circ}C$ in continuous muffle furnace. For some applications no further processing is required. although most applications require one or more secondary operations such as sizing and finishing. These sccondary operations improve the dimension. properties or appearance of the finished part. Aluminum is often considered difficult to sinter because of the presence of a stable surface oxide film. Removal of the oxide in iron and copper based is usually achieved through the use of reducing atmospheres. such as hydrogen or dissociated ammonia. In aluminum. this occurs in the solid st,lte through the partial reduction of the aluminum by magncsium to form spinel. This exposcs the underlying metal and facilitates sintering. It has recently been shown that < 0.2% Mg is all that is required. It is noteworthy that most aluminum pre-mixes contain at least 0.5% Mg. The sintering of aluminum alloys can be further enhanced by selective microalloying. Just 100ppm pf tin chnnges the liquid phase sintering kinetics of the 2xxx alloys to produce a tensile strength of 375Mpa. an increilse of nearly 20% over the unmodified alloy. The ductility is unnffected. A similar but different effect occurs by the addition of 100 ppm of Pb to 7xxx alloys. The lend changes the wetting characteristics of the sintering liquid which serves to increase the tensile strength to 440 Mpa. a 40% increase over unmodified aIloys. Current research is predominantly aimed at the development of metal matrix composites. which have a high specific modulus. good wear resistance and a tailorable coefficient of thermal expnnsion. By controlling particle clustering and by engineering the ceramic/matrix interface in order to enhance sintering. very attractive properties can be achicved in the ns-sintered state. I\t an ils-sintered density ilpproaching 99%. these new experimental alloys hnve a modulus of 130 Gpa and an ultimate tensile strength of 212 Mpa in the T4 temper. In contest. unreinforcecl aluminum has a modulus of just 70 Gpa.

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타이타늄의 표면개질에 따른 도재 결합 특성 (THE BOND CHARACTERISTICS OF PORCELAIN FUSED BY TITANIUM SURFACE MODIFICATION)

  • 최택휴;박상원;방몽숙;양홍서;박하옥;임현필;오계정;김현승;이광민;이경구
    • 대한치과보철학회지
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    • 제45권2호
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    • pp.169-181
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    • 2007
  • Statement of problem: Titanium is well known as a proper metal for the dental restorations, because it has an excellent biocompatibility, resistance to corrosion, and mechanical property. However, adhesion between titanium and dental porcelains is related to the diffusion of oxygen to the reaction layers formed on cast-titanium surfaces during porcelain firing and those oxidized layers make the adhesion difficult to be formed. Many studies using mechanical, chemical and physical methods to enhance the titanium-ceramic adhesion have been actively performed. Purpose: This study meant to comparatively analyse the adhesion characteristics depending on different titanium surface coatings after coating the casts and wrought titanium surfaces with Au and TiN. Material and method: In this study, the titanium specimens (CP-Ti, Grade 2, Kobe still Co. Japan) were categorized into cast and wrought titanium. The wrought titanium was cast by using the MgO-based investment(Selevest CB, Selec). The cast and wrought titanium were treated with Au coating($ParaOne^{(R)}$., Gold Ion Sputter, Model PS-1200) and TiN coating(ATEC system, Korea) and the ultra low fusing dental porcelain was fused and fired onto the samples. Biaxial flection test was done on the fired samples and the porcelain was separated. The adhesion characteristics of porcelain and titanium after firing and the specimen surfaces before and after the porcelain fracture test were observed with SEM. The atomic percent of Si on all sample surfaces was comparatively analysed by EDS. In addition, the constituents of specimen surface layers after the porcelain fracture and the formed compound were evaluated by X-ray diffraction diagnosis. Result: The results of this study were obtained as follows : 1. The surface characteristics of cast and wrought titanium after surface treatment(Au, TiN, $Al_2O_3$ sandblasting) were similar and each cast and wrought titanium showed similar bonding characteristics. 2. Before and after the biaxial flection test, the highest atomic weight change of Si component was found in $Al_2O_3$ sandblasted wrought titanium(28.6at.% $\rightarrow$ 8.3at.%). On the other hand, the least change was seen in Au-Pd-In alloy(24.5at.% $\rightarrow$ 9.1at.%). 3. Much amount of Si components was uniformly distributed in Au and TiN coated titanium, but less amount of Si's was unevenly dispersed on Al2O3 sandblasting surfaces. 4. In X-ray diffraction diagnosis after porcelain debonding, we could see $Au_2Ti$ compound and TiN coating layers on Au and TiN coated surfaces and $TiO_2$, typical oxide of titanium, on all titanium surfaces. 5. Debonding of porcelain on cast and wrought titanium surface after the biaxial flection is considered as a result of adhesion deterioration between coating layers and titanium surfaces. We found that there are both adhesive failure and cohesive failure at the same time. Conclusion: These results showed that the titanium-ceramic adhesion could be improved by coating cast and wrought titanium surfaces with Au and TiN when making porcelain fused to metal crowns. In order to use porcelain fused to titanium clinically, it is considered that coating technique to enhance the bonding strength between coating kKlayers and titanium surfaces should be developed first.

부여 쌍북리유적 출토 백제 도가니 내부 유리 및 청동 용융물질의 정량분석과 고고과학적 해석 (Quantitative Analysis and Archaeometric Interpretation for Molten Glass and Bronze Materials within Baekje Crucibles from the Ssangbukri Site in Buyeo, Korea)

  • 이찬희;박진영;김지영
    • 보존과학회지
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    • 제26권2호
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    • pp.157-169
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    • 2010
  • 이 연구는 부여 쌍북리유적에서 출토된 도가니 내부 유리 및 청동용융물질과 금동보살입상의 재료학적 특성 및 고고과학적 상관관계를 규명한 것이다. 도가니 내부의 유리질 용융물질은 주로 황록색과 적갈색을 띠는 PbO-$SiO_2$계의 납유리로서 바륨과 안정제의 함량이 낮은 특징이 있다. 금속용융물질은 Cu, Sn, Pb의 합금으로 이루어진 청동으로 밝혀졌으며, 낮은 불순물 함량으로 미루어 고순도로 정련된 구리를 이용하여 제작되었음을 알 수 있다. 주석의 원광석으로는 석석이 이용된 것으로 판단된다. 금동보살입상의 청동소지도 구리의 함량이 높고 불순물의 함량이 낮아 고도로 정련된 원료를 사용하였으며, 쌍북리 유적의 공방에서 숙련된 기술을 바탕으로 제작되었을 가능성이 충분하다. 또한 표면에는 고순도의 금을 아말감기법으로 도금한 것으로 밝혀졌다. 한편 도가니 내 납유리와 청동물질 및 금동보살입상의 납동위원소비는 일관된 결과를 보여주지 않는 것으로 보아 납광석의 원산지 해석에는 무리가 있는 것으로 판단된다.

조선 중기 제작된 지자총통의 보존처리와 제작기법 연구 -동아대학교 석당박물관 소장 보물 지자총통을 중심으로- (Conservation Treatment and Study on Manufacturing Techniques of Jija Chongtong Gun in the Middle of Joseon Dynasty)

  • 남도현;박영환;이재성
    • 박물관보존과학
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    • 제30권
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    • pp.23-46
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    • 2023
  • 동아대학교 석당박물관 소장 지자총통은 조선 중기에 사용하던 전장유통식 중화기무기로 천자총통 다음으로 큰 화기류이다. 지자총통의 표면에는 표면 이물질들로 인해 고유의 색상이 가려져 있는 상태로, 보존처리가 필요한 상황으로 판단되었다. 안정적인 보존처리를 위해 감마선(γ선), X선 비파괴 투과조사, 내시경카메라 관찰을 실시하여 내부 구조와 보존상태를 파악하였고, p-XRF 성분분석, SEM-EDS 성분분석, XRD 분석 등을 활용하여 지자총통의 재질 성분과 표면 오염물 등에 관한 성분분석을 진행하였다. 휴대용현미경 관찰과 정밀 3D스캔으로 지자총통 표면 명문의 상태, 새김형태 등을 확인하였다. 감마선, X선 비파괴 투과조사 결과, 지자총통 내부에 다량의 기포가 관찰되었으며, 육안관찰로 확인되는 표면의 채플릿은 비파괴투과조사 결과로는 확인되지 않았다. p-XRF 성분분석 결과 지자총통은 구리(Cu), 주석(Sn), 납(Pb) 합금으로 만들어진 청동으로 확인되었으며, SEM-EDS를 활용한 표면 이물질 성분분석 결과, 백색이물질은 칼슘(Ca), 황(S), 티타늄(Ti)이 주성분으로 확인되었다. 티타늄은 백색수정액의 주성분인 이산화티타늄(TiO2)으로 추정되었으며, 적색이물질은 바륨(Ba)이 주성분으로 확인되어 페인트의 체질안료인 황산바륨(BaSO4)으로 추정되었다. 티타늄과 바륨을 주성분으로 하는 백색과 적색 오염물은 근래에 이르러 표면에 묻은 것으로 추정된다. 황색이물질은 알루미늄(Al), 규소(Si)로 확인되어 토양성분에서 유래한 것으로 추정했다. 백색이물질의 XRD 성분분석결과 황화칼슘(CaS)으로 확인되었고, SEM-EDS와 XRD 성분분석결과로 백색이물질은 석고(CaS)로 확인하였다. 성분분석의 결과를 토대로 표면 이물질 제거, 안정화처리, 강화처리를 진행하였다. 보존처리를 진행하던 중에 휴대용 현미경과 정밀 3D스캔을 통해 알려지지 않았던 명문 우(右), 병(兵), 상(上), 이(二)를 발견하였다. 또한, 명문의 새김방법과 깊이, 너비 등을 측정하였다. 우병상(右兵上)은 창원 합포성 내 위쪽이며, 이(二)는 두 번째 돈대로 파악할 수 있다.

Efficient Red-Color Emission of InGaN/GaN Double Hetero-Structure Formed on Nano-Pyramid Structure

  • 고영호;김제형;공수현;김주성;김택;조용훈
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.174-175
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    • 2012
  • (In, Ga) N-based III-nitride semiconductor materials have been viewed as the most promising materials for the applications of blue and green light emitting devices such as light-emitting diodes (LEDs) and laser diodes. Although the InGaN alloy can have wide range of visible wavelength by changing the In composition, it is very hard to grow high quality epilayers of In-rich InGaN because of the thermal instability as well as the large lattice and thermal mismatches. In order to avoid phase separation of InGaN, various kinds of structures of InGaN have been studied. If high-quality In-rich InGaN/GaN multiple quantum well (MQW) structures are available, it is expected to achieve highly efficient phosphor-free white LEDs. In this study, we proposed a novel InGaN double hetero-structure grown on GaN nano-pyramids to generate broad-band red-color emission with high quantum efficiency. In this work, we systematically studied the optical properties of the InGaN pyramid structures. The nano-sized hexagonal pyramid structures were grown on the n-type GaN template by metalorganic chemical vapor deposition. SiNx mask was formed on the n-type GaN template with uniformly patterned circle pattern by laser holography. GaN pyramid structures were selectively grown on the opening area of mask by lateral over-growth followed by growth of InGaN/GaN double hetero-structure. The bird's eye-view scanning electron microscope (SEM) image shows that uniform hexagonal pyramid structures are well arranged. We showed that the pyramid structures have high crystal quality and the thickness of InGaN is varied along the height of pyramids via transmission electron microscope. Because the InGaN/GaN double hetero-structure was grown on the nano-pyramid GaN and on the planar GaN, simultaneously, we investigated the comparative study of the optical properties. Photoluminescence (PL) spectra of nano-pyramid sample and planar sample measured at 10 K. Although the growth condition were exactly the same for two samples, the nano-pyramid sample have much lower energy emission centered at 615 nm, compared to 438 nm for planar sample. Moreover, nano-pyramid sample shows broad-band spectrum, which is originate from structural properties of nano-pyramid structure. To study thermal activation energy and potential fluctuation, we measured PL with changing temperature from 10 K to 300 K. We also measured PL with changing the excitation power from 48 ${\mu}W$ to 48 mW. We can discriminate the origin of the broad-band spectra from the defect-related yellow luminescence of GaN by carrying out PL excitation experiments. The nano-pyramid structure provided highly efficient broad-band red-color emission for the future applications of phosphor-free white LEDs.

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