• Title/Summary/Keyword: 화염합성법

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The Effect of Substrate surface Carbon on Synthesis of Diamond Film by Combustion Flame Method (연소 화염법에 의한 다이아몬드 합성에 미치는 기판표면탄소의 효과)

  • Kim, Seong-Yeong;Lee, Jae-Seong
    • Korean Journal of Materials Research
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    • v.6 no.2
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    • pp.153-157
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    • 1996
  • 연소화염법을 이용한 다이아몬드 박막합성은 기판의 표면상태에 크게 의존한다. 특히 탄소결합상이 기판에 조재하는 경우 다이아몬드 핵생성과 성장은 크게 영향을 받는다. 본 연구에서는 일정한 흡입가스비율(R=O2/C2H2)과 기판온도 조건의 연소화염법을 이용하여 몰리브덴 기판위에 다리아몬드박막을 합성하는 과정에서 박막의 핵생성에 미치는 기판 탄소화합물의 영향을 조사하였다. Mb 금속기판표면에 형성된 탄화물로는 Mo2C상과 soot를 택하여 박막합성 전에 Mo기판상에 형성시켰다. Mo 금속기판표면에 형성된 탄화물(Mo2C)상에는 다이아몬드 핵생성과 입자성장이 촉진되어 가장 조대한 양질의 다이아몬드 입자가 형성되었다. 이것은 탄화물상이 반응가스중의 탄소의 확산을 저지함과 동시에 핵생성의 필요한 잠복기간을 감소키켰기 때문이다. 그러나 soot를 구성하는 미세한 탄소결합상들이 다이아몬드 핵생성 장소로 작용하여 결과적으로 다이아몬드 수밀도가 가장 크게 관찰된 반면, 입자성장은 Mo2C기판에 비해 작았다.

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An Experimental Study on the Laminar Burning Velocity of the Synthetic Gas($H_2/CO$)/Air Premixed Flame with a Various Composition Ratio (다양한 조성비를 갖은 합성가스($H_2/CO$)/공기 예혼합 화염의 층류 연연구소속도에)

  • Jeong, Byeong-Gyu;Lee, Dong-Hwan;Lee, Kee-Man
    • Proceedings of the KAIS Fall Conference
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    • 2012.05b
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    • pp.587-590
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    • 2012
  • 본 연구에서는 층류 연소속도 측정을 노즐 버너로 형성된 분젠화염에서 각도법과 면적법을 이용하여 다양한 조성비를 갖는 합성가스의 층류 연소속도를 실험적으로 측정하였다. 수행된 연구의 합성가스 조성비는 $H_2:CO$ 비가 10:90%, 25:75%, 50:50%, 75:25%이며, 당량비는 이전 연구와의 비교를 위해 0.5에서 1.4까지 수행하였다. 측정된 층류 연소속도는 수행된 다양한 조성비와 당량비 범위에서 수치계산 결과와 타 연구자들의 실험 결과 값들과 잘 일치하였다. 본 연구에서도 층류 연소속도는 $H_2$ 함유량 증가와 함께 증가됨을 알 수 있었으며, 연소속도의 중요한 증가 현상은 당량비의 증가로 확인되었다.

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A Study on the Laminar Burning Velocity of Synthetic Gas of Coal Gasification(H2/CO)-Air Premixed Flames (석탄가스화 합성가스(H2/CO)-공기 예혼합화염의 층류 연소속도에 관한 연구)

  • Jeong, Byeonggyu;Lee, Keeman
    • Journal of Hydrogen and New Energy
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    • v.23 no.5
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    • pp.493-502
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    • 2012
  • Syngas laminar burning velocity measurements were carried out at atmospheric pressure and ambient temperature using the Bunsen flame configuration with nozzle burner as a fundamental study on flame stability of syngas fuel. Representative syngas mixture compositions ($H_2$:CO) such as 25:75%, 50:50% and 75:25% and equivalence ratios from 0.5 to 1.4 have been conducted. Average laminar burning velocities have been determined by the stabilized nozzle burner flames using the angle method, radical surface area method and compared with the data obtained from the other literatures. And the results of each experimental methodologies in the various composition ratios and equivalence ratios were coincided with the result of numerical simulation. Especially, it was confirmed that there was necessary to choice a more accurate measurement methodology even the same static flame method for the various composition ratios of syngas fuel including hydrogen. Also, it was reconfirmed that the laminar burning velocities gradually increased with the increasing of hydrogen content in a fuel mixture.

Particle Characteristics of Flame-Synthesized γ-Al2O3 Nanoparticles (화염법으로 제조된 감마-Al2O3 나노입자의 화염조건에 따른 입자특성 연구)

  • Lee, Gyo-Woo
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.36 no.5
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    • pp.509-515
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    • 2012
  • In this study, ${\gamma}-Al_2O_3$ nanoparticles were synthesized by using coflow hydrogen diffusion flames. The synthesis conditions were varied with using several oxygen concentrations in the oxidizing air. The particle characteristics of the flame-synthesized $Al_2O_3$ nanoparticles were determined by examining the crystalline structure, shape, and specific surface area of the nanoparticles. The measured maximum centerline temperature of the flames ranged from 1507.8 K to 1998.7 K. The morphology and crystal structure of the $Al_2O_3$ nanoparticles were determined from SEM images and XRD analyses, respectively. The particle sizes were calculated from measured BET specific surface areas and ranged from 25 nm to 52 nm. From XRD analyses, it was inferred that a large number of the synthesized nanoparticles were ${\gamma}-Al_2O_3$ nanoparticles including ${\theta}-Al_2O_3$ nanoparticles.

Studies on the Kinetics for the Formation Reaction $Ti_3AI$ by SHS (Self-propagating High-temperatuer Synthesis) Method (자체반응열 고온합성법에 의한 $Ti_3AI$ 생상반응의 동력학적 연구)

  • 전광식
    • Journal of the Korean Ceramic Society
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    • v.35 no.6
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    • pp.569-574
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    • 1998
  • The thickness of flame zone reaction rate and apparent activation energy in the formation reaction of $Ti_3AI$ intermetallic compound were investigated using SHS method which sustains the reaction spontaneously and utilizes the heat generated by thye exothermic reaction itself. In this reaction the thickness of flame zone was 1.4 mm and the reaction rate was $0.4g/\textrm{cm}^2{\cdot}sec$. Also the apparent activation energy calculated using from the experimental data obtained by controlling the realtive green density was 40kJ/mol.

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Laminar Burning Velocity Measurement of SNG/Air Flames - A Comparison of Bunsen and Spherical Flame Method - (SNG/공기 화염의 층류 연소속도 측정 - 분젠과 구형 화염법 비교 -)

  • KIM, DONGCHAN;LEE, KEEMAN
    • Journal of Hydrogen and New Energy
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    • v.27 no.6
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    • pp.737-746
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    • 2016
  • This article describes a comparison on laminar burning velocity measured by Bunsen and spherical flame methods of synthetic natural gas (SNG) with various composition of hydrogen. In this study, the laminar burning velocity measurements were employed by Bunsen burner and cylindrical constant combustor at which flame images were captured by Schlieren system. These results were also compared with numerical based on CHEMKIN package with GRI 3.0, USC-II and UC Sandiego mechanism. In case of spherical flames, the suitable flame radius range and theoretical models were verified using the well-known previous results in methane/air flames. As an experimental condition, hydrogen content of SNG was adjusted 0% to 11%. Equivalence ratios of Bunsen flames were adjusted from 0.8 to 1.6. On the other hand, those of spherical flames were adjusted from 0.6 to 1.4, relatively. From results of this study, the both laminar burning velocities measured in Bunsen and spherical flame methods were resulted in similar tendency. As the hydrogen content increased, the laminar burning velocity also increased collectively. Laminar burning velocity of measured SNG-air flames was best coincided with GRI 3.0 mechanism by comparison of reaction mechanisms.

Fully coulpled CMC modeling for three-dimensional turbulent nonpremixed syngas flame (CMC 모델을 이용한 난류 비예혼합 Syngas 화염장 해석)

  • Kim, Gun-Hong;Lee, Jung-Won;Kim, Yong-Mo;Ahn, Kook-Young
    • 한국연소학회:학술대회논문집
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    • 2006.04a
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    • pp.111-120
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    • 2006
  • The fully coupled conditional moment closure(CMC) model has been developed to realistically simulate the structure of complex turbulent nonpremixed syngas flame, in which the flame structure could be considerablyl influenced by the turbulence, transport history, and heat transfer as well. In order to correctly account for the transport effect, the CMC transport equations fully coupled with the flow and mixing fields are numerically solved. The present CMC approach has successfully demonstrated the capability to realistically predict the detailed structure and the overall combustion characteristics. The numerical results obtained in this study clearly reveal the importance of the convective and radiative heat transfer in the precise structure and NOx emission of the present confined combustor with a cooling wall.

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The Effect of Hydrocarbon Content and Temperature Distribution on The Morphology of Diamond Film Synthesized by Combustion Flame Method (연소 화염법에 의해 합성된 다이아몬드형상에 미치는 탄화수소량과 온도분포의 영향)

  • Kim, Seong-Yeong;Go, Myeong-Wan;Lee, Jae-Seong
    • Korean Journal of Materials Research
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    • v.4 no.5
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    • pp.566-573
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    • 1994
  • The diamond synthesis by combustion flame method is considerably affected by the substrate surface temperature and its distribution which are mainly controlled by the ratio of mixed gas, $O_2/C_2H_2$. In order to elucidate the role of gas ratio in the diamond synthetic process by combustion flame, under various gas ratios (R=0.87~0.98; R=ratio of flow-rate of $O_2/C_2H_2$ gas) the substrate temperature was measured by using thermal video system and the morphological change of diamond crystals was analysed by using SEM, Raman spectroscope, and X-ray diffraction method. With increasing the gas ratio, i.e., decreasing the hydrocarbon content, the nucleation rate of diamond crystal was lowerd. It was also found that the morphology of diamond crystals changed from the cubo-octahedron type consisting of (100), (111) plane to the octahedron type of (111) plane. The increase of the substrate temperature consistently resulted in the increase of the nucleation rate as well as the growth rate of diamond crystals in which the surface of diamond crystal dominantly consisting of (100) plane.

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