• 제목/요약/키워드: High Melting Point Material

검색결과 104건 처리시간 0.031초

“Aluminium Nitride Technology-a review of problems and potential"

  • Dryburgh, Peter M.
    • 한국결정성장학회:학술대회논문집
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    • 한국결정성장학회 1996년도 The 9th KACG Technical Annual Meeting and the 3rd Korea-Japan EMGS (Electronic Materials Growth Symposium)
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    • pp.75-87
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    • 1996
  • This review is presented under the following headings: 1.Introduction 1.1 Brief review of the properties of AlN 1.2 Historical survey of work on ceramic and single crystal AlN 2.Thermochemical background 3.Crystal growth 4.Doping 5.Potential applications and future work The known properties of AlN which make it of interest for various are discussed briefly. The properties include chemical stability, crystal structure and lattice constants, refractive indices and other optical properties, dielectric constant, surface acoustic wave velocity and thermal conductivity. The history of work in single crystals, thin films and ceramics are outlined and the thermochemistry of AlN reviewed together with some of the relevant properties of aluminium and nitrogen; the problems encountered in growing crystals of AlN are shown to arise directly from these thermochemical relationships. Methods have been reported in the literature for growing AlN crystals from melts, solution and vapour and these methods are compared critically. It is proposed that the only practicable approach to the growth of AlN is by vapour phase methods. All vapour based procedures share the share the same problems: $.$the difficulty of preventing contamination by oxygen & carbon $.$the high bond energy of molecular nitrogen $.$the refractory nature of AlN (melting point~3073K at 100ats.) $.$the high reactivity of Al at high temperatures It is shown that the growth of epitactic layers and polycrystalline layers present additional problems: $.$chemical incompatibility of substrates $.$crystallographic mismatch of substrates $.$thermal mismatch of substrates The result of all these problems is that there is no good substrate material for the growth of AlN layers. Organometallic precursors which contain an Al-N bond have been used recently to deposit AlN layers but organometallic precursors gave the disadvantage of giving significant carbon contamination. Organometallic precursors which contain an Al-N bound have been used recently to deposit AlN layers but organometallic precursors have the disadvantage of giving significant carbon contamination. It is conclude that progress in the application of AlN to optical and electronic devices will be made only if considerable effort is devoted to the growth of larges, pure (and particularly, oxygen-free) crystals. Progress in applications of epi-layers and ceramic AlN would almost certainly be assisted also by the availability of more reliable data on the pure material. The essential features of any stategy for the growth of AlN from the vapour are outlined and discussed.

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EFFECT OF ADDED Si ON DENSIFICATION OF Ni-AI INTERMETALLIC COATING ON SPHEROIDAL GRAPHITE CAST IRON SUBSTRATES

  • Kim, Tetsuro ata;Keisuke Uenishi;Akira Ikenaga;Kojiro F. Kobayashi
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2002년도 Proceedings of the International Welding/Joining Conference-Korea
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    • pp.726-731
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    • 2002
  • Reaction synthesis is a process to form ceramics, intermetallics and their composites from elemental powder mixture. Application of this process to a surface modification techniques has a possibilities to enable the process at a lower temperature or for a shorter time, although synthesized materials are likely to include voids and unreacted elements. This paper intend to examine the effect of Si addition to the mixture of Al and Ni on the densification of synthesized Ni-Al intermetallic compounds and to evaluate the surface properties of obtained coatings. By the Si addition, exothermic reaction temperature to form Ni-Al intermetallic was lowered to be below the melting point of Al. Si soluted $Al_3$Ni$_2$, $Al_3$Ni and $Al_{6}$Ni$_3$Si were mainly formed in the coating layer when powder mixture was heated to 973K for 300s. Besides, densification was enhanced by increasing hot press pressure, Si additions and heating rate. When the composition of eutectic Al-Si reaches 78%, void ratio of sintered compact reduced to 0.4%. It is caused by higher flowability of Al-Si liquid phase generated and its infiltration into the void. Since the hardness of NiAl(Si) compound (about 600HV) formed in the coating layer is higher than that of Ni-Al compound (about 400HV), coating layer with high density and superior wear property is obtained by hot press using reaction synthesis from Al-Ni-Si powder mixture.

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스퍼터링법으로 합성한 BCN 박막의 내식성 (Corrosion Behavior of Boron-Carbon-Nitride Films Synthesized by Magnet Sputtering)

  • 변응선;손명숙;이구현;권식철
    • 한국표면공학회지
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    • 제36권3호
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    • pp.229-233
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    • 2003
  • Boron-Carbon-Nitrogen (B-C-N) system is an attractive ternary material since it has not only an extremely high hardness but also a number of other prominent characteristics such as chemical inertness, elevated melting point, and low thermal expansion. In this paper, the corrosion behavior of B-C-N thin films in aqueous solution was investigated B-C-N films with different composition were deposited on a platinum plate by magnetron sputtering in the thickness range of 150-280 nm. In order to understand effect of pH of solutions, $BC_{2.\;4}N$ samples were immerged in 1M HCl, 1M NaCl, and 1M NaOH solution at 298k, respectively. BCN samples with different carbon contents were exposed to 1M NaOH solutions to investigate effect of chemical composition on corrosion resistance. Corrosion rates of samples were measured by ellipsometry, From results, optical constant of $BC_{2,\;4}N$ films was found to be $N_2=2.110-0.295i$. The corrosion rates of $Bi_{1.\;0}C_{2.\;4}N_{1.\;0}$ films were NaOH>NaCl>HCl in orders. With increasing carbon content in B-C-N films, the corrosion resistance of B-C-N films was enhanced. The lowest corrosion rate was obtained for $B_{1.\;0}C_{4.\;4}N_{1.\;9}$ film.

방사선 환경에 강인한 CMOS카메라에 관한 연구 (A Study on the CMOS Camera robust to radiation environments)

  • 백동현;김배훈
    • 한국정보전자통신기술학회논문지
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    • 제13권1호
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    • pp.27-34
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    • 2020
  • 방사선원을 이용하는 곳에는 사람의 접근이 제한되나 관측장비는 노출됨으로 방사선에 강하여야 한다. 이에따라 카메라차폐 구조설계에 필요한 물질로 비중과 용융점이 가장 높은 텅스텐과 가장 낮은 납을 선정하여 코발트 60 방사선 소스에 대한 선량을 1/8까지 감소시킬 경우 Tu는 체적 432.6cm3, 두께 2.4cm이었고, Pb는 체적 961cm3, 두께 3.6cm이었다. 이를 적용하여 CMOS Image센서를 적용한 카메라모듈 및 내방사선 차폐구조의 하우징과 방사선에 강한 CMOS카메라를 제작하였다. 최적화된 차폐두께의 선정을 위한 실험에서 생존한 헤드분리형2M AHD형 카메라(①번)를 적용한 결과 카메라 및 아답터등 연관설비에 대한 차폐가 이루어지면 1.88×106rad 이상의 선량에서도 잘 동작함을 확인하였다. 따라서 고방사선에 적용할 수 있는 카메라 기술력확보와 사업성을 기대할 수 있다.

HVPE(Hydride Vapor Phase Epitaxy) 법을 적용한 N2 양의 변화에 따른 AlN 단결정의 성장 거동에 관한 연구 (A study on the growth behavior of AlN single crystal according to the change of N2 in HVPE propcess)

  • 인경필;강승민
    • 한국결정성장학회지
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    • 제34권2호
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    • pp.61-65
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    • 2024
  • HVPE(Hydride vapor phase epitaxy) 공법은 기체상의 원료를 사용하여 박막 또는 단결정을 제조하는 공법이다. 화학적 기상증착법의 원리를 적용하여 난용융성 또는 고융점의 물질의 단결정을 성장할 수 있는 공법으로서, 질화갈륨(GaN) 단결정을 얻을 수 있는 공법 중 하나이다. 최근 동 공법을 이용하여 질화알루미늄(AlN) 단결정을 성장하고자 하는 연구가 많이 수행되어져 왔으나, 아직은 좋은 결과를 얻지 못하고 있다. 본 연구에서는 AlN 단결정을 HVPE 공법으로 성장하고자 하였다. 성장 공정에서 질소를 운송가스(Carrior gas)로 사용하였으며, 질소(N2)의 양의 변화에 따른 성장 결과를 고찰하여 보았다. 질소의 양이 증가함에 따른 성장 결정의 변화 양상을 확인할 수 있었다. 성장된 AlN 단결정의 형상을 광학 현미경을 사용하여 관찰하였고, 이중결정 X선 회절 분석(DCXRD, Double crystal X-ray diffractometry)을 이용하여, AlN 결정의 생성을 확인함과 동시에 성장된 단결정의 결정성도 알아보았다.

SM 45C강의 레이저 표면경화처리에 관한 연구 (A study on the laser surface hardening of SM 45C steel)

  • 나석주;김성도;이건이;김태균
    • 대한기계학회논문집
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    • 제11권1호
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    • pp.53-62
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    • 1987
  • 본 논문에서는 1 KW CW CO$_{2}$레이저 발생자장치를 사용하여 표면경화 처리 를 행할때 공정과 관련된 변수들이 용접부 및 표면경화층에 미치는 영향들을 이론과 실험을 통해서 규명하고, 이 결과들을 실제공정에 사용할 수 있는 기초자료로서 제시 하고자 한다. 이를 위해서 해석에 사용될 수 있는 유한요소법(Finite Element Meth- od)에 근거한 2차원 열유동 해석용 프로그램 및 데이타 처리 프로그램을 개발하고, 중 탄소강에 레이저 표면처리를 수행하여 실험 및 이론해석의 결과를 비교 검토하였다. 비교 검토하여 그 설정기준을 고찰하였다.

항공기용 터어보팬 엔진의 재료선정용 DATA BASE를 이용한 재료평가에 관한 연구 (A Study on the Evaluation of Materials for Aircraft Turbofan Engine Using Data Base.)

  • 김광배;부준홍;김학봉;임경호;유상신
    • 한국재료학회지
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    • 제1권3호
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    • pp.156-167
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    • 1991
  • 본 연구의 목적은 항공기용 터어보팬 엔진의 재료선정을 위한 데이타 베이스를 구축하는 것이다. 터어보팬 엔진은 고성능이면서도 연료소모율이 적어 경제적인 운용이 가능하므로 최근 여러 용도로 사용되고 있는 엔진이다. 현재 서로 다른 특성을 가진 수백종의 초내열재료들이 개발되어 있는데, 한 엔진설계자가 어떤 엔진요소에 사용할 재료를 선택한다는 것은 매우 어려운 작업이다. 따라서 수 많은 재료에 대한 정보를 관리할 수 있는 데이타 베이스가 절실히 요구되고 있으나, 국내에서는 아직 이 방면의 기초연구가 이루어져 있지 않은 실정이다. 본 연구에서는 재료공학적 관점에서 초내열재료의 대표적 성질로서 고온강도, 내식성, 내산화성, 항복강도, 열팽창계수, 융정등을 고려해서 후보재료를 선정할 수 있도록 하였다. 이외에도 성 형성이나 제조단가등도 고려해야할 변수가 된다. 본 연구에 의해 사용자의 편의를 고려한 전산프로그램이 개발되었으며, 이를 이용하여 새로운 재료정보의 입력, 요구 재료선정 및 선정결과의 출력등이 가능하다. 끝으로 선정된 재료에 대한 성능검토도 실시하였다.

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다공질 SiC 반도체와 Ag계 합금의 접합 (Junction of Porous SiC Semiconductor and Ag Alloy)

  • 배철훈
    • 한국산학기술학회논문지
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    • 제19권3호
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    • pp.576-583
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    • 2018
  • 탄화규소는 실리콘과 비교시 큰 에너지 밴드 갭을 갖고, 불순물 도핑에 의해 p형 및 n형 전도의 제어가 용이해서 고온용 전자부품 소재로 활용이 가능한 재료이다. 특히 ${\beta}$-SiC 분말로부터 제조한 다공질 n형 SiC 세라믹스의 경우, $800{\sim}1000^{\circ}C$에서 높은 열전 변환 효율을 나타내었다. SiC 열전 변환 반도체를 응용하기 위해서는 변환 성능지수도 중요하지만 $800^{\circ}C$ 이상에서 사용할 수 있는 고온용 금속전극 또한 필수적이다. 일반적으로 세라믹스는 대부분의 보편적인 용접용 금속과는 우수한 젖음을 갖지 못 하지만, 활성 첨가물을 고용시킨 합금의 경우, 계면 화학종들의 변화가 가능해서 젖음과 결합의 정도를 증진시킬 수 있다. 액체가 고체 표면을 적시면 액체-고체간 접합면의 에너지는 고체의 표면에너지 보다 작아지고 그 결과 액체가 고체 표면에서 넓게 퍼지면서 모세 틈새로 침투할 수 있는 구동력을 갖게 된다. 따라서 본 연구에서는 비교적 낮은 융점을 갖는 Ag를 이용해서 다공질 SiC 반도체 / Ag 및 Ag 합금 / SiC 및 알루미나 기판간의 접합에 대해 연구하였고, Ag-20Ti-20Cu 필러 메탈의 경우 SiC 반도체의 고온용 전극으로 적용 가능할 것으로 나타났다.

컴퓨터 시뮬레이션을 이용한 임플란트 상부 티타늄 구조물의 주조방안 (CONFUTER-AIDED CASTING DESIGN FOR IMPLANT TITANIUM SUPERSTRUCTURES)

  • 오세욱;이호용;이근우;심준성
    • 대한치과보철학회지
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    • 제41권4호
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    • pp.421-439
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    • 2003
  • Statement of problem : It is difficult to obtain a good titanium casting body using the traditional sprue design because of high melting point of Ti, and the low fluidity and high reactivity of molten Ti. Purpose : A new sprue design for titanium casting bodies needs more trial and error. In order to decrease the number of trial and error, computer simulation(MAGMASOFT, Magmasoft Giessereitechnologie GmbH, Achen, Germany) was used to optimize sprue design in U-shaped implant superstructures. Material and method : Five kinds of sprue were examined for the design of the sprue former for titanium casting: Sprue design A(sprue length 4 mm, rectangular shape, 4 sprues), Sprue design B(sprue length 4 mm. round shape. radius 2 mm, 7 sprues), Sprue design C (sprue length 2 mm, round shape, radius 2 mm, 7 sprues). Sprue design D (sprue length 2 mm, cone shape, large radius 3mm. small radius 2mm, 7 sprues), and Sprue design E( sprue length 2 mm. one unit channel shape). Sprue design F(sprue length 2mm, one unit channel shape) was also examined for the design of the customized sprue former in the Biotan system(Schutz Dental Gmbh, Germany). The casting bodies were taken in Sprue design A, Sprue design D, Sprue design E, and Sprue design F in the Biotan casting system. The numerically predicted defects were compared with the experimental dental castings by the radiographic and sectional view observations. Results : 1. According to the result of computer simulation, turbulence during mold filling was decreased in the sequence of Sprue design F, Sprue design E, Sprue design D, Sprue design C, Sprue design B, and Sprue design A. 2. The calculated solidification time contours indicate that hot spot was moved from the casting body to the sprue button in the sequence of Sprue design A, Sprue design B, Sprue design C, Sprue design D, and Sprue design E. The filling pattern of Sprue design F was similar to that of Sprue design E. 3 The predicted filling pattern shows that less turbulence was found in the customized sprue former than in the standard sprue former. 4. According to the results of the radiographic and cross sectional observations, casting defects less than 1mm were found at the center of a casting body with Sprue design E and Sprue design F. However, larger casting defects of 4mm were found in a casting with Sprue design A. 5. The predicted casting porosity was similar to that of the real casting. Conclusion : One unit channel-type and customized sprue former can be recommended. Further research and developement of various sprue designs using computer simulation in necessary to optimize casting design, in order to reduce the formation of casting defects in implant titanuim super-structures.

주조티타늄과 기계절삭티타늄 코핑의 변연적합성에 관한 연구 (THE STUDY ABOUT THE MARGINAL FIT OF THE CASTING TITANIUM AND MACHINE-MILLED TITANIUM COPINGS)

  • 오수연;방몽숙;양홍서;박상원;박하옥
    • 대한치과보철학회지
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    • 제44권1호
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    • pp.20-28
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    • 2006
  • Statement of problem: The titanium has advantages of a high biocompatibility, a corrosion resistence, low density, and cheep price, so it is focused as a substituted alloy But it is quite difficult to cast with the tranditional method due to the high melting point, reacivity with element at, elevated temperature. By using the CAD-CAM system for the crown construction, it is possible to reduce the errors while proceeding the wax-up, investing, and casting procedure Purpose: The purposes of this study were to measure the marginal adaptation of the casting titanium coping and machine-milled titanium coping according to the casting methods and the marginal configurations. Material and method: The marginal configurations were used chamfer shoulder, and beveled shoulder. The total 30 copings were used, and these are divided into 6 groups according to the manufacturing method and marginal configuration. The gap between margin of the model and the restoration was measured with 3-dimensional measuring microscope. Results: The following results were obtained; 1. casting gold coping demonstrated the best marginal seal, followed by casting titanium coping finally machine-milled titanium copings. 2. In casting titanium coping, chamfer demonstrated the best marginal seal, followed by shoulder and beveled shoulder. There was no significantly difference in shoulder and beveled shoulder. But all margin form has clinically acceptable 3. In machine-milled titanium copings, chamfer demonstrated the best marginal seal, followed by shoulder and beveled shoulder. Beveled shoulder show large and uneven marginal gap Conclusions: Above result revealed that marginal adaptation of the titanim coping is avail able in the clinical range, it can be used as an alternative metal and it is prefered especially in chamfer or shoulder margin during implant superstructure fabrication. But there should be more research on machine-milled titanium in order to use it in the clinics.