• 제목/요약/키워드: double coating

검색결과 189건 처리시간 0.027초

고온 전자빔 증착에 의한 Ethylene Terephthalate상의 SiOx 박막의 특성 평가 (Characteristics of Defects in SiOx Thin films on Ethylene Terephthalate by High-temperature E-beam Deposition)

  • 한진우;김영환;김종환;서대식;문대규
    • 한국전기전자재료학회논문지
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    • 제19권1호
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    • pp.71-74
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    • 2006
  • In this paper, we investigated the characterization of silicon oxide(SiOx) thin film on Ethylene Terephthalate(PET) substrates by e-beam deposition for transparent barrier application. The temperature of chamber increases from $30^{\circ}C$ to $110^{\circ}C$, the roughness increase while the Water vapor transmission rate (WVTR) decreases. Under these conditions, the WVTR for PET can be reduced from a level of $0.57 g/m^2/day$ (bare subtrate) to $0.05 g/m^2/day$ after application of a 200-nm-thick $SiO_2$ coating at 110 C. A more efficient way to improve permeation of PET was carried out by using a double side coating of a 5-${\mu}m$-thick parylene film. It was found that the WVTR can be reduced to a level of $-0.2 g/m^2/day$. The double side parylene coating on PET could contribute to the lower stress of oxide film, which greatly improves the WVTR data. These results indicates that the $SiO_2$ /Parylene/PET barrier coatings have high potential for flexible organic light-emitting diode(OLED) applications.

더블로이유리 적용 창호의 구성요소에 따른 단열성능 비교 실험 (A Comparison of Thermal Performance of Double Low-E Glazing Window according to Various Material)

  • 장철용;안병립;김치훈;김준섭;이성재
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2011년도 춘계학술발표대회 논문집
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    • pp.133-137
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    • 2011
  • Low-e glazing is classified as soft low-e glazing and hard low-e glazing. Hard low-e glazing can be temperable and its handling is comfortable because its coating film is a oxide film generated at high temperatures. But there is a fatal weakness that its insulation performance and shielding performance are lower compared to soft low-e glazing by low electrical conductivity of coating film. Soft low-e glazing is excellent because its coating film consists of Ag that is excellent electrical conductivity and it has strength that can supply various product consumers want. But soft low-e glazing has weaknesses that temperable and handling are difficult because Ag is oxidized easily. Therefore this study analyzes thermal performance of glazing by changing filling gas according to applying low-e glazing through simulation to judge performance before making sample. After this process, a comparative experimental study was done through TVS by making temperable low-e glazing.

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고온용 태양 선택흡수막의 제작 (Deposition of Solar Selective Coatings for High Temperature Applications)

  • 이길동
    • 한국태양에너지학회 논문집
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    • 제28권1호
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    • pp.33-42
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    • 2008
  • Zr-O ($Zr-ZrO_2$) cermets solar selective coatings with a double cermets layer film structure were prepared using a DC (direct current) magnetron sputtering method. The typical film structure from surface to bottom substrate were an $Al_2O_3$ anti-reflection layer on a double Zr-O cermets layer on an Al metal infrared reflection layer. Optical properties of optimized Zr-O cermets solar selective coating had an absorptance of ${\alpha}\;=\;0.95$ and thermal omittance of ${\epsilon}\;=\;0.10\;(100^{\circ}C)$. The absorbing layer of Zr-O cermets coatings on glass and silicon substrate was identified as being amorphous by using XRD. AFM showed that ZF-O cermets layers were very smooth and their surface roughness were approximately $0.1{\sim}0.2 nm$. The chemical analysis of the cermets coatings were determined by using XPS. Chemical shift of photoelectron binding energy was occurred due to the change of Zr-O cermets coating structure deposited with increase in oxygen flow rate. The result of thermal stability test showed that the Zr-O cermets solar selective coating was stable for use at temperature below $350^{\circ}C$.

코팅제를 적용한 추진제의 온도둔감 특성 연구 (1) (Study on the Temperature Independent Property of the Surface Coated Double Base Propellant)

  • 주현혜;주형욱;권태수;정준창;권순길
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2012년도 제38회 춘계학술대회논문집
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    • pp.529-531
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    • 2012
  • 화포 추진제는 표면을 코팅함으로서 온도 둔감 특성을 얻을 수 있다. 이들 추진제의 연소 속도는 추진제 온도에는 크게 의존 하지 않고, 강내 최대 평균 압력을 이용함으로서 탄 속도 증가에 크게 기여할 수 있다. 본 연구에서는 표면 코팅 추진제의 온도둔감 특성을 Closed Bomb Test(CBT) 및 40미리 고중량탄을 적용한 Simulator Gun 시험을 통하여 확인하였으며, 온도둔감 특성을 가지는 코팅 추진제 제조에 대한 가능성을 확인하였다.

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압입접촉하중이 작용하는 섬유강화 복합재료의 응력해석 (Stress Analysis for Fiber Reinforced Composites under Indentation Contact Loading)

  • 장경순;김태우;김철;우상국;이기성
    • 한국세라믹학회지
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    • 제45권4호
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    • pp.238-244
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    • 2008
  • Modeling and FEM analysis on Boron Nitride and/or Pyrolytic Carbon coating layers on SiC fibers under indentation contact loadings are investigated. Especially this study attempts to model the mechanical behavior of the SiC fibers with and without coatings. Tyranno S grade and Tyranno LoxM grade of SiC are selected for fiber and Boron Nitride and/or Pyrolytic Carbon as coating material. The modeling is performed by SiC fiber without coating layer, which includs single(BN or PyC) and double(BN-PyC or PyC-BN) coating layer. And then the analysis is performed by changing a type of coating layer, a type of fiber and coating sequence. In this study, the concepts of modeling and analysis techniques for optimum design of BN and PyC coating process on SiC fiber are shown. Results show that stresses are reduced when indentation contact loading applies on the material having lower elastic modulus.

플라스틱용 자외선경화형 도료의 물성연구 (Physical Properties of UV curable coating on plastic)

  • 김일재;문명준
    • 한국인쇄학회지
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    • 제16권3호
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    • pp.61-80
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    • 1998
  • To investigate in influence of photosensitizer used with benzophenone(BP) in the curing rate and physical properties of UV curable hard coating on plastic, we prepared UV curable clear and pigmented coatings with DEA, DMA, NPM and TEA as photosensitizer, respectively. The curing rate calculated from the decrease of the absorbance of acrylic double bond measured by FT-IR spectroscopy increased s follows; DEA>DMA>NPM>TEA. this order could be explained by the reactivity of diethylamino group of DEA and the ease of formation of activated complex between BP and photosensitizer during the curing process. In UV curable pigmented coatings, the order of curing rate increased as follows; DEA>DMA>TEA>NPM. It was found that the curing rate of the pigmented coating can be increased by light scattering of TiO$_2$. The hardness of coating film cured by photosensitization of DEA and DMA is higher than other photosensitizers due to the crosslinking reaction of DEA and DMA radical bound to polymer backbone.

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열처리 시간에 따른 Ni-P/Cr 이중 도금 층의 계면 거동에 관한 연구 (Effect of Heat Treatment on Interface Behavior in Ni-P/Cr Double Layer)

  • 최명희;박영배;이병호;변응선;이규환
    • 한국표면공학회지
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    • 제48권6호
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    • pp.260-268
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    • 2015
  • The thermal barrier coating (TBC) for inner wall of liquid-fuel rocket combustor consists of NiCrAlY as bonding layer and $ZrO_2$ as a top layer. In most case, the plasma spray coating is used for TBC process and this process has inherent possibility of cracking due to large difference in thermal expansion coefficients among bonding layer, top layer and metal substrate. In this paper, we suggest crack-free TBC process by using a precise electrodeposition technique. Electrodeposited Ni-P/Cr double layer has similar thermal expansion coefficient to the Cu alloy substrate resulting in superior thermal barrier performance and high temperature oxidation resistance. We studied the effects of phosphorous concentrations (2.12 wt%, 6.97 wt%, and 10.53 wt%) on the annealing behavior ($750^{\circ}C$) of Ni-P samples and Cr double layered electrodeposits. Annealing temperature was simulated by combustion test condition. Also, we conducted SEM/EDS and XRD analysis for Ni-P/Cr samples. The results showed that the band layers between Ni-P and Cr are Ni and Cr, and has no formed with heat treatment. These band layers were solid solution of Cr and Ni which is formed by interdiffusion of both alloy elements. In addition, the P was not found in it. The thickness of band layer was increased with increasing annealing time. We expected that the band layer can improve the adhesion between Cr and Ni-P.