• 제목/요약/키워드: Coating Channel

검색결과 86건 처리시간 0.027초

초소형 연소기를 위한 촉매 합성, 담지방법 및 담지체 (Catalyst preparations, coating methods, and supports for micro combustor)

  • 진정근;김충기;권세진
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2006년도 제33회 KOSCO SYMPOSIUM 논문집
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    • pp.235-241
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    • 2006
  • Catalytic combustion is one of the suitable methods for micro power source due to high energy density and no flame quenching. Catalyst loading in the micro structured combustion chamber is one of the most important issues in the development of micro catalytic combustors. In this research, to coat catalyst on the chamber wall, two methods were investigated. First, $Al_2O_3$ was selected as a support of Pt and $Pt/Al_2O_3$ was synthesized through the alumina sol-gel procedure. To improve the coating thickness and adhesion between catalyst and substrate, heat resistant and water solvable organic-inorganic hybrid binder was used. Porous silicon was also investigated as a catalyst support for platinum. Through the parametric studies of current density and etching time, fabrication process of $1{\sim}2{\mu}m$ of diameter and about $25{\mu}m$ depth pores was confirmed. Coated substrates were test in the micro channel combustor which was fabricated by the wet etching and machining of SUS 304. Using $Pt/Al_2O_3$ coated substrate and Pt coated porous silicon substrate, conversion rate of fuel was over 95% for $H_2$/Air premixed gas.

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FLOW BOILING HEAT TRANSFER FROM PLAIN AND MICROPOROUS COATED SURFACES IN SUBCOOLED FC-72

  • ;;유승문
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집D
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    • pp.181-188
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    • 2001
  • The present research is an experimental study of subcooled flow boiling behavior using flat, microporousenhanced square heater surfaces in pure FC-72. Two $1-cm^{2}$ copper surfaces, one highly polished (plain) and one microporous coated, were flush-mounted into a 12.7 mm square, horizontal flow channel. Testing was performed for fluid velocities ranging from 0.5 to 4 m/s (Reynolds numbers from 18,700 to 174,500) and pure subcooling levels from 4 to 20 K. Results showed both surfaces' nucleate flow boiling curves collapsed to one line showing insensitivity to fluid velocity and subcooling. The log-log slope of the microporous surface nucleate boiling curves was lower than the plain surface due to the conductive thermal resistance of the microporous coating layer. Both, increased fluid velocity and subcooling, increase the CHF values for both surfaces, however, the already enhanced boiling characteristics of the microporous coating appear dominant and require higher fluid velocities to provide additional enhancement of CHF to the microporous surface.

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자동차 구동용 PEMFC 금속계 분리판 개발 (Development of Metallic Bipolar Plate for Automotive PEMFC)

  • 전유택;정경우;나상묵
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.321-325
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    • 2005
  • Bipolar plate is the main part with MEA in automotive PEMFC. It must have a good electrical conductivity and excellent corrosion resistance, be cost effective. Therefore, stainless steels have been studied by many researchers because of its corrosion resistance and cost benefits. But their properties are not sufficient for the application to bipolar plate for automotive PEMFC. In this work, we have performed stamping using various commercial stainless steels to select candidate material for biploar plate and to derive design parameters for stamping simulation. The results showed that a small curvature at the corner of flow field is more favorable due to easier a plastic deformation. Stamping process was simulated by changing surface condition, and the size and angle of channel. The optimum shape and spring back phenomena were evaluated. Surface coating was applied to increase the corrosion resistance and electrical conductivity of stainless steel. The electrical interfacial resistance was 10 to $15m{\Omega}cm^2$ under clamping force of 150psi. But corrosion resistance of coating on the stainless steel was not good due to the unstableness of microstructure.

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CRITICAL HEAT FLUX FOR DOWNWARD-FACING BOILING ON A COATED HEMISPHERICAL VESSEL SURROUNDED BY AN INSULATION STRUCTURE

  • Yang, J.;Cheung, F.B.;Rempe, J.L.;Suh, K.Y.;Kim, S.B.
    • Nuclear Engineering and Technology
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    • 제38권2호
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    • pp.139-146
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    • 2006
  • An experimental study was performed to evaluate the effects of surface coating and an enhanced insulation structure on the downward facing boiling process and the critical heat flux on the outer surface of a hemispherical vessel. Steady-state boiling tests were conducted in the Subscale Boundary Layer Boiling (SBLB) facility using an enhanced vessel/insulation design for the cases with and without vessel coatings. Based on the boiling data, CHF correlations were obtained for both plain and coated vessels. It was found that the nucleate boiling rates and the local CHF limits for the case with micro-porous layer coating were consistently higher than those values for a plain vessel at the same angular location. The enhancement in the local CHF limits and nucleate boiling rates was mainly due to the micro-porous layer coating that increased the local liquid supply rate toward the vaporization sites on the vessel surface. For the case with thermal insulation, the local CHF limit tended to increase from the bottom center at first, then decrease toward the minimum gap location, and finally increase toward the equator. This non-monotonic behavior, which differed significantly from the case without thermal insulation, was evidently due to the local variation of the two-phase motions in the annular channel between the test vessel and the insulation structure.

초소형 연소기를 위한 촉매 합성, 담지방법 및 담지체 (Catalyst Preparations, Coating Methods, and Supports for Micro Combustor)

  • 진정근;김충기;이성호;권세진
    • 한국연소학회지
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    • 제11권2호
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    • pp.7-14
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    • 2006
  • Catalytic combustion is one of the suitable methods for micro power source due to high energy density and it can be applied to micro structured chamber without consideration of quenching since it is flameless combustion. Catalyst loading in the micro structured combustion chamber is one of the most important issues in the development of micro catalytic combustors. In this research, to coat catalyst on the chamber wall, two methods were investigated. First, $Al_2O_3$ was selected as a support of Pt and $Pt/Al_2O_3$ was synthesized through the alumina sol-gel procedure. To improve the coating thickness and adhesion between catalyst and substrate, heat resistant and water solvable organic-inorganic hybrid binder was used. Porous silicon was also investigated as a catalyst support for platinum. Through the parametric studies of current density and etching time, fabrication process of $1{\sim}2{\mu}m$ of diameter and about $25{\mu}m$ depth pores was confirmed. Coated substrates were test in the micro channel combustor which was fabricated by the wet etching and machining of SUS 304. Using $Pt/Al_2O_3$ coated substrate and Pt coated porous silicon substrate, conversion rate of fuel was over 95 % for $H_2/Air$ premixed gas.

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Variational 방법으로 구한 필드 분포와 Angular Spectrum 방법을 사용한 Buried채널 도파로 소자 단면의 단층 무반사 코팅 설계 (The design of a single layer antireflection coating on the facet of buried channel waveguide devices using the angular spectrum method and field profiles obtained by the variational method)

  • 김상택;김형주;김부균
    • 한국광학회지
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    • 제13권1호
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    • pp.51-57
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    • 2002
  • Buried 채널 도파로의 필드 분포에 대한 analytic 표현식을 effective index method(EIM)와, variational method(VM) 사용하여 구한 뒤 angular spectrum방법을 적용하여 도파로 폭과 두께에 따른 최소의 반사율을 주는 코팅층의 최적 굴절율과 정규화된 최적 코팅 두께를 구하였고 이를 비교 검토하였다. 도파로 폭이 큰 영역에서는 두 방법으로 구한 코팅층의 파라메타가 비슷한 결과를 보였으나 도파로 폭이 작아질수록 VM을 사용하여 구한 코팅층의 최적 굴절율과 정규화된 최적 두께는 클래딩층만으로 구성된 물질과 공기사이에 존재하는 코팅층의 최적 굴절율과 정규화된 최적 두께로 접근한 반면에 EIM을 사용하여 구한 경우는 차이가 많이 발생하였다. Buried채널 도파로의 도파로 폭과 두께가 같을 때, 활성층과 클래딩층의 굴절율 차이의 비에 관계없이 VM을 사용하여 구한 quasi-TE모드와 quasi-TM모드의 공차지도는 거의 동일한 영역에 존재하였다. 반면에 free space radiation mode(FSRM) 방법의 경우는 활성층과 클래딩층의 굴절율 차이의 비가 10%일 때, quasi-TE 모드와 quasi-TM모드의 공차지도는 서로 다른 영역에 존재하였다. 따라서 VM과 angular spectrum방법을 사용하여 구한 공차지도가 FSRM 방법을 사용하여 구한 공차지도보다 정확함을 알 수 있었다.

마이크로 혼합기와 반응기로 구성된 DNA 결찰용 바이오칩에 관한 연구 (A Study About Biochip Combined with Micro Mixer and Reactor for DNA Ligation)

  • 강도형;안유민;황승용
    • 대한기계학회논문집A
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    • 제32권8호
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    • pp.624-632
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    • 2008
  • In this research, we developed new PDMS-glass based microbiochip consisted of the micromixer and microreactor for DNA ligation. The micromixer was composed of a straight channel integrated with nozzles and pillars, and the microreactor was composed of a serpentine channel. We coated the PDMS chip surface with the 0.25wt.% PVP solution to prevent the bubble generation which was caused by the hydrophobicity of the PDMS. The new micomixer was passive type and the mixing was enhanced by a convective diffusion using the nozzle and pillar. The 10.33mm long micromixer showed the good mixing efficiency of 87.7% at 500 l/min flow rate. We could perform the DNA ligation successfully in the microbiochip, and the ligation time was shortened from 4 hours in conventional laboratory method to 5 min in the microbiochip.

Insulator룰 후속처리한 a-IGZO TFT의 전기적특성 분석

  • 나관영;노용한
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.58-58
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    • 2009
  • gate로 ITO가 150nm의 두께로 coating된 Glass위에 절연막인 SiNx를 각각 $150^{\circ}C$$200^{\circ}C$로 RTA한 후 channel layer 로 IGZO를 sputtering 하였다. 그 후 전극으로 Al을 evaporation 하였고 이렇게 만든 소자의 I-V 특성과 Transfer 분석을 통해 mobility, Threshold voltage등의 변화를 관찰하여 Insulator의 열처리가 IGZO TFT의 특성에 어떠한 효과를 주는지 분석하였다.

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The improvement of contrast on LCOS system

  • Chen, Hun-Wei;Wu, Shih-Min;Mo, Chi-Neng
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.I
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    • pp.740-743
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    • 2005
  • The discussion of this study is that we proposed a new construction to improve the potency of LCOS projection monitor. We suggest a new construction that uses special optics coating to reduce the green channel and obtains a purer white field. Compared with the voltage method to adjust on the monitor, we can get higher contrast gradient.

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Low-Loss Multimode Waveguides Using Organic-Inorganic Hybrid Materials

  • Yoon, Keun-Byoung
    • Macromolecular Research
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    • 제12권3호
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    • pp.290-292
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    • 2004
  • Multimode channel waveguides were fabricated using a direct UV patterning technology from thick films deposited by the one-step dip-coating of an organic/inorganic hybrid material (ORMOCER(equation omitted). The core size of the covered ridge waveguide was 43${\times}$51 $\mu\textrm{m}$$^2$; the waveguides can be readily prepared for multimode applications by direct UV patterning. The waveguides exhibited smooth surface profiles and a low optical loss of 0.07 ㏈/cm at the most important wavelength (850nm) used for optical interconnects.