• Title/Summary/Keyword: 가스압

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Fabrication and Mechanical Properties of $SiC/Si_3N_4$ Nano Composite Materials ($SiC/Si_3N_4$ 나노 복합체의 제조 및 기계적 특성)

  • Gang, Jong-Bong;Jo, Beom-Rae;Lee, Su-Yeong
    • Korean Journal of Materials Research
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    • v.6 no.4
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    • pp.421-427
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    • 1996
  • 초미립 SiC 분말을 2차상으로 Si3N4에 첨가하여 SiC/Si3N4 나노 복합체를 핫프레스법과 가스압소결고 제조하였다. 2차상으로 첨가한 SiC의 입자 크기가 $\beta$-Si3N4 나노 복합체를 제조할 수 있었다. 사온에서 80$0^{\circ}C$까지는 강도의 100$0^{\circ}C$이상에서는 강도는 급격한 감소를 보였으며 이는 소결조제로 첨가한 AI2O3, Y2O3와 SiO2가 $\beta$-Si3N4의 입계에 유리상을 형성하였기 때문에 해석된다.

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Microfabrication of Thin Film Sensor with Metal Oxide Nanostructure and Their Gas Sensing Properties (금속 산화물 나노구조형 마이크로 박막 센서의 제작 및 가스 응답 특성)

  • Kang Bong-Hwi;Lee Sang-Rok;Song Kap-Duk;Joo Byung-Su;Lee Duk-Dong
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.43 no.8 s.350
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    • pp.13-18
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    • 2006
  • [ $SnO_2$ ] and ZnO nanostructures were grown on the surface of thin film by heat treatment of metal Sn, Zn under Ar gas flow and $O_2$ at atmospheric pressure, respectively. The sensitivity of the $SnO_2$ thin film device on which grown nanowires to CO gas(5,000 ppm) was 50 % at the operating temperature of $200^{\circ}C$. In case of using Pt as catalysts, the sensitivity was enhanced and operating temperature was reduced(73 % at $150^{\circ}C$ ). The sensitivity of the ZnO nanorods device using Cu as catalysts to NOx gas was 90 % at the operating temperature of $200^{\circ}C$. It was found that the sensitivity to CO and NOx gases for the device on which grown nanostructures was much higher than those for general thin film device.

X-ray properties measurement of Flat panel Digital X-ray gas detector (평판형 디지털 엑스레이 가스 검출기의 엑스선 특성 측정기술에 관한 연구)

  • Yoon, Min-Seok;Cho, Sung-Ho;Oh, Kyung-Min;Jung, Suk-Hee;Nam, Sang-Hee;Park, Ji-Goon
    • Journal of the Korean Society of Radiology
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    • v.3 no.1
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    • pp.17-21
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    • 2009
  • The Recently, large area matrix-addressed image detectors are investigated for X-ray imaging with medical diagnostic and other applications. In this paper, a new flat panel gas detector for diagnostic X-ray imaging is proposed, and its characteristics are investigated. The research of flat panel gas detector is not exist at all. Because of difficulty to inject gas against to atmospheric pressure. So almost gas detector made by chamber shape. We made flat panel sample by display technique. (ex: PDP, Fed, etc.) The experimental measurements, the transparent electrodes, dielectric layer, and the MgO protection layer were formed in front glass. And, the X-ray phosphor layer and address electrodes are formed in the rare glass. The dark current, the x-ray sensitivity and linearity as a function of electric field were measured to investigate the electrical properties. From the results, the stabilized dark current density and the significant x-ray sensitivity were obtained. And the good linearity as a function of exposure dose was showed in wide diagnostic energy range. These results means that the passive matrix-addressed flat panel gas detector can be used for digital x-ray imaging.

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Electrical and Optical Characteristic Analysis of Silicon Nitride Film Deposited by $N_2$ Ambient (질소 가스 분위기에서 증착된 실리콘 질화막의 전기적, 광학적 특성 분석)

  • Gong, Dae-Yeong;Jung, Woo-Won;Yang, Doo-Hwan;Kim, Sun-Yong;Lee, Yong-Woo;Ko, Ji-Soo;Choi, Byoung-Deok;Yi, Jun-Sin
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.11a
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    • pp.384-384
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    • 2009
  • 최근 태양전지 개발이 본격화 되면서 태양전지 웨이퍼 표면에서의 재결합에 의한 손실을 줄이고 반사도를 감소시키기 위한 ARC 개발이 활발히 진행되고 있다. 이를 위해 널리 사용하는 ARC 물질로 수소화된 실리콘 질화막이 있다. 수소화된 실리콘 질화막은 PECVD 법으로 저온에서 실리콘 기판 위에 증착 가능한 장점이 있다. 또한 실리콘 질화막의 광학적, 전기적인 특성은 화학적 조성비에 의해 결정되며 증착온도 가변에 따라 균일도 및 굴절률 조절을 가능케 하여 태양전지의 효율을 향상 시킬 수 있다. 따라서 본 연구에서는 수소화된 실리콘 질화막을 태양전지에 적용하기 위해 질소 가스 분위기에서 PECVD를 이용하여 증착하고 그 특성을 분석하였다. 박막은 0.8 Torr의 압력에서 $150^{\circ}C{\sim}450^{\circ}C$의 기판 온도로 증착되었으며 이때의 RF power은 100W ~ 300W로 가변 하였다. 증착된 박막은 1.94 에서 2.23의 폭넓은 굴절률 값을 가지고 있었다. $SiH_4/NH_3$ 가스 비의 증가에 따라 박막 두께와 굴절률이 감소함을 확인 할 수 있었다. 이는 $NH_3$ 가스의 상대적인 증가에 따라 Si 생성을 선행하는 $SiH_4$ 가스의 부분압이 제한되기 때문이고, 이러한 결과로 박막내에 질소 원자가 증가함에 따라 N-H 결합이 증가하여 n-rich인 박막 상태가 되기 때문으로 분석된다. 증착된 실리콘 질화막의 소수반송자 수명 측정 결과 굴절률 2.23인 박막의 경우 약 87 us의 수명을 나타냈으며, 굴절률이 1.94로 줄어듦에 따라 소수반송자 수명 역시 79 us로 감소하였다. 수소화된 실리콘 질화막은 n-rich 보다 Si-rich 인 경우 effective 반송자 수명을 증가시켜 표면 재결합 속도를 줄이는데 유용함을 확인하였다. 또한 증착온도가 증가할수록, RF power가 증가 할수록 소수반송자 수명 역시 증가하였다. 반사도의 경우 $SiH_4$의 비율이 증가할수록 반사도가 감소함을 확인 하였으며, 증착온도 증가에 따라, RF power 증가에 따라 반사도가 감소하였다. 결과적으로 $450^{\circ}C$의 기판온도와 300W의 RF power에서 증착된 실리콘 질화막의 경우 가장 우수한 전기적, 광학적 특성을 보여주었다.

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Influence of Punch Velocity on Gas Hydrogen Embrittlement Behaviors in SA372 Steel (압력용기용 강의 가스수소 취화 거동에 미치는 펀치속도의 영향)

  • Bae, Kyung-Oh;Shin, Hyung-Seop;Baek, Un-Bong;Nahm, Seung-Hoon;Park, Jong-Seo;Lee, Hae-Moo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.12
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    • pp.1497-1502
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    • 2013
  • When using hydrogen gas as an ecofriendly energy sources, it is necessary to conduct a safety assessment and ensure thereliability of the hydrogen pressure vessel against hydrogen embrittlement expected in the steel materials. In this study, by applying the in-situ SP test method, the gas hydrogen embrittlement behaviors in SA372 steel, which is commonly used as a pressurized hydrogen gas storage container, were evaluated. To investigate the hydrogen embrittlement behavior, SP tests at different punch velocities were conducted for specimens with differently fabricated surfaces at atmospheric pressure and under high-pressure hydrogen gas conditions. As a result, the SA372 steel showed significant hydrogen embrittlement under pressurized hydrogen gas conditions. The effect of punch velocity on the hydrogen embrittlement appeared clearly; the lower punch velocity case indicated significant hydrogen embrittlement resulting in lower SP energy. The fractographic morphologies observed after SP test also revealed the hydrogen embrittlement behavior corresponding to the punch velocity adopted. Under this pressurized gas hydrogen test condition, the influence of specimen surface condition on the extent of hydrogen embrittlement could not be determined clearly.

GSMBE 방법으로 Si(110) 기판 위에 성장된 GaN 박막의 미세구조 연구

  • Lee, Jong-Hun;Kim, Yeong-Heon;An, Sang-Jeong;No, Yeong-Gyun;O, Jae-Eung
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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    • pp.193.1-193.1
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    • 2015
  • 실리콘 (Si) 기판 위에 고품질의 갈륨질화물 (GaN) 박막을 성장시키기 위한 노력이 계속되고 있다. 실리콘 기판은 사파이어 기판 보다 경제적인 측면에서 유리하고, 실리콘 직접화 공정에 GaN 소자를 쉽게 접목 가능하다는 장점이 있다. GaN 박막은 2차원 전자 가스형성을 통한 고속소자, 직접 천이형 밴드갭을 이용한 발광소자 및 고전압 소자로써 활용 가능한 물질이다. 종래에는 Si(100) 및 Si(111) 기판 위에 GaN 박막 성장에 대한 연구가 주로 진행되었다. 하지만 대칭성과 격자 불일치도 등 결정학적 특성을 고려할 때 Si(100) 기판 위에 고품질의 GaN 박막을 성장시키는 것은 쉽지 않다. Si(111) 기판은 실리콘 소자 직접화 공정에 적합하지 못한 단점을 가지고 있다. 반면, 최근 Si(110) 기판 위에서 비등방적 변형 제어를 통한 고품질 GaN 박막 성장이 보고 되어 실리콘 집적 소자와 결합한 고전압 소자 및 고속소자 구현에 관한 연구가 진행되고 있다. 본 연구에서는 투과전자현미경 연구를 바탕으로 Si(110) 기판 위에 성장된 GaN의 미세구조에 관한 연구를 소개한다. 열팽창계수의 차이에 의한 GaN 박막 내 결함 생성을 줄이기 위하여 AlN 완충층이 사용되었다. GaN 박막을 암모니아 ($NH_3$) 유량이 다른 조건에서 성장시킴으로써 GaN 박막 미세구조의 암모니아 유량 의존성에 관한 연구를 진행하였다. GaN 박막에서 투과전자현미경 연구와 X-ray 회절 연구를 통하여 결함 거동 및 결정성을 확인하였다. $NH_3$ 유랑이 증가함에 따라 GaN의 성장 거동이 3차원에서 2차원으로 변화됨을 관찰하였다. 또한, 전위밀도의 증가도 확인되었다. $NH_3$ 유량이 낮은 경우 GaN 전위는 AlN와 GaN 경계에 주로 위치하고 GaN 표면 근처에는 전위밀도가 감소하였으나, $NH_3$ 유량이 높을 경우 GaN 박막 표면까지 전위가 관통됨을 확인하였다.

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Improment of Diesel Combustion using multiple injection under Cold Start Condition (냉시동 조건에서 디젤 연소 특성 및 연소 개선에 대한 연구)

  • Lee, Haeng-Soo;Lee, Jin-Woo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.4
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    • pp.711-717
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    • 2017
  • Startability and harmful emissions are the main issues in diesel engine development under cold conditions. The characteristics of combustion with multiple injection were investigated under cold start conditions. For quantitative analysis, the in-chamber pressure profile was measured and combustion visualization using direct imaging was accomplished. With multiple injection, the peak in-chamber pressure and heat release rate were increased compared to single injection. In addition, the period of flame luminosity detection was shortened using multiple injection. Combustion by main injection was improved with an increase in heat released by pilot combustion when the pilot injection quantity was increased. Finally, an increase in injection pressure also showed the possibility of combustion improvement. On the other hand, an increase of in the pilot injection quantity and injection pressure can cause an increase in harmful emissions, such as HC and CO due to wall wetting. Therefore, more sensitive calibration will be needed when applying a multiple injection strategy under cold start conditions.

Oxyfluorination of Pitch-based Activated Carbon Fibers for High Power Electric Double Layer Capacitor (고출력 전기이중층 캐패시터를 위한 핏치계 활성탄소섬유의 함산소불소화 처리)

  • Jung, Min-Jung;Ko, Yoonyoung;Kim, Kyung Hoon;Lee, Young-Seak
    • Applied Chemistry for Engineering
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    • v.28 no.6
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    • pp.638-644
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    • 2017
  • Pitch based activated carbon fibers for electric double layer capacitor (EDLC) electrodes were treated by oxyfluorination via varying the ratio of fluorine and oxygen gases to improve high power property. As the partial pressure of fluorine increased, the oxyfluorinated activated carbon fibers showed an increase of linear fluorine functional groups. While the oxygen functional groups increased, no changes was observed with respect to the partial gas pressure. The specific surface area and pore volume decreased due to the etching reaction on the activated carbon fiber surface through oxyfluorination, but the mesopore volume increased about 4.5 times. In the case of activated carbon fibers treated with 50% of the fluorine gas partial pressure, the specific capacitance increased to about 29% and 61% at scan rates of 5 and 50 mV/s, respectively. The improvement of the specific capacitance was believed to be due to the introduction of oxygen and fluorine functional groups on the activated carbon fiber surface and the increase of mesopores through oxyfluorination.

Engineering Approach to Crop Production in Space (우주에서 작물 생산을 위한 공학적 접근)

  • Kim Yong-Hyeon
    • Journal of Bio-Environment Control
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    • v.14 no.3
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    • pp.218-231
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    • 2005
  • This paper reviews the engineering approach needed to support humans during their long-term missions in space. This approach includes closed plant production systems under microgravity or low pressure, mass recycling, air revitalization, water purification, waste management, elimination of trace contaminants, lighting, and nutrient delivery systems in controlled ecological life support system (CELSS). Requirements of crops f3r space use are high production, edibility, digestibility, many culinary uses, capability of automation, short stems, and high transpiration. Low pressure on Mars is considered to be a major obstacle for the design of greenhouses fer crop production. However interest in Mars inflatable greenhouse applicable to planetary surface has increased. Structure, internal pressure, material, method of lighting, and shielding are principal design parameters for the inflatable greenhouse. The inflatable greenhouse operating at low pressure can reduce the structural mass and atmosphere leakage rate. Plants growing at reduced pressure show an increasing transpiration rates and a high water loss. Vapor pressure increases as moisture is added to the air through transpiration or evaporation from leaks in the hydroponic system. Fluctuations in vapor pressure will significantly influence total pressure in a closed system. Thus hydroponic systems should be as tight as possible to reduce the quantity of water that evaporates from leaks. And the environmental control system to maintain high relative humidity at low pressure should be developed. The essence of technologies associated with CELSS can support human lift even at extremely harsh conditions such as in deserts, polar regions, and under the ocean on Earth as well as in space.

A Study on Improvement of the Physical Properties of 4 Component Working Fluid in Gas Fired Absorption Chillers (가스흡수식 냉방기용 4성분계 작동매체의 물성 향상 연구)

  • Baek, Young-Soon;Oh, Young-Sam;Lee, Yong-Won;Park, Dal-Ryung;Koo, Ki-Kap
    • Applied Chemistry for Engineering
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    • v.10 no.3
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    • pp.400-406
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    • 1999
  • In an effort to obtain high efficiency in gas fired absorption chillers, a new working fluid has been developed with thc addition of the component of $LiNO_3$, LiCl and LiI to the conventional solution of $LiBr-H_2O$. The solubility and vapor pressure of the 4 component working fluid developed in this work were measured and compared to the results of $LiBr-H_2O$ solution. It was observed that there exists an optimal mole ratio of the inorganic salts in terms of solubility. The mole ratio of LiBr, $LiNO_3$ and LiCl was found to be around 5:1:1~2 in the $LiBr-LiNO_3-LiCl-H_2O$ mixture, and in the case of $LiBr-LiO_3-Lil-H_2O$ and $LiBr-Lil-LiCl-H_2O$ mixtures, the mole ratio of LiBr, $LiNO_3$ and Lil/ LiBr, LiI and LiCl were found to be around 5:1:1 and 5:1:0.5~1 respectively. The vapor pressure of the 4 component working fluid of the optimal mole ratio was increascd with adding the component of $LiNO_3$, LiCl and LiI except for $LiBr-LiNO_3-LiCl-H_2O$ mixture. The absorption capacity of $LiBr-LiNO_3-LiCl-H_2O$ mixture was obtained higher than that of $LiBr-H_2O$ mixture.

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