• Title/Summary/Keyword: water-film

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금속분말 연소기의 slag 제거기법 개념 설계 및 Water Film 형성 조건 기초실험 (Conceptual Design of the Slag Removal Method in the Metal Powder Combustor and Condition Tests for the Water Film Formation)

  • 김광연;;고현;이성웅;조용호
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2011년도 제37회 추계학술대회논문집
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    • pp.554-557
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    • 2011
  • 금속분말을 연료로 하는 연소기 개발에 있어 발생하는 문제점 중에 하나는 알루미나 slag 처리이다. 연소기 내부에 Water film을 형성시킴으로써 금속분말 연소기의 문제점을 해결할 수 있을 것으로 기대한다. 이를 위한 선행연구로 water film의 형성 조건에 대한 실험을 수행하였다. 실험 모델에 대하여 물 분사 속도가 증가할수록 원형 모델에 대한 water fim 각도가 작아져, 약 10 m/s이상에서 완전한 water film이 형성되는 것을 알 수 있었다.

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고온용 플라스틱 필름 수위 센서 개발 (Development of Plastic Film Type Water Level Sensor for High Temperature)

  • 이영태
    • 반도체디스플레이기술학회지
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    • 제18권4호
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    • pp.124-128
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    • 2019
  • In this paper, a high temperature plastic film type water level sensor was developed. The high temperature film type water level sensor was manufactured by attaching a copper film to a polyimide film which can be used for a long time at 250℃, by laminating process and patterning the electrode by etching process. For the performance evaluation of the developed film type water level sensor, the temperature dependence of the capacitance was measured, and the deformation was examined after standing for 8 hours in 150℃ air. The developed film type water level sensor can be used at up to 150℃, and can be applied to electric ports and steam devices.

물 분자막의 두께와 윤활특성의 상관관계에 대한 분자시뮬레이션 연구 (Molecular Simulation Study on Influence of Water Film Thickness on Lubrication Characteristics)

  • 김현준;허세곤
    • Tribology and Lubricants
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    • 제38권5호
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    • pp.199-204
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    • 2022
  • This paper presents a numerical investigation of the influence of water molecule thickness on frictional behavior at the nanoscale using molecular dynamics simulation. Three different models, comprising water thin films of various thicknesses, were built, and indentation and sliding simulations were performed using the models. Various normal loads were applied by indenting the Si tip on the water film for the sliding simulation to evaluate the interplay between the water thin film thickness and the normal load. The results of the simulations showed that the friction force generally increased with respect to the normal load and thickness of the water thin film. The friction coefficient varied with respect to the normal load and the water film thickness. The friction coefficient was the smallest under a moderate normal force and increased with decreasing or increasing normal loads. As the water film became thicker, the contact area between the tip and water film became larger. Under well-lubricated conditions, the friction force was proportional to the contact area regardless of the water film thickness. As the normal force increased above a critical condition, the water molecules beneath the Si tip spread out; thus, the film could not provide lubrication. Consequently, the substrate was permanently deformed by direct contact with the Si tip, while the friction force and friction coefficient significantly increased. The results suggest that a thin water film can effectively reduce friction under relatively low normal load and contact pressure conditions. In addition, the contact area between the contacting surfaces dominates the friction force.

Mechanical and Water Barrier Properties of Biopolyester Films Prepared by Thermo-Compression

  • Rhim, Jong-Whan
    • Food Science and Biotechnology
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    • 제16권1호
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    • pp.62-66
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    • 2007
  • Four different biopolyester films, two aliphatic polyesters including polylactides (PLA) and poly(3-hydroxy-butyrate-co-3-hydroxyvalerate (PHBV), and two aliphatic-aromatic copolyesters including Ecoplex and Biomax, were prepared using by thermo-compression, and their tensile and water barrier properties were determined. Among the films tested, PLA film was the most transparent (T: 95.8%), strongest, and stiffest (TS, 40.98 MPa; E, 1916 MPa), however it was rather brittle. In contrast, Ecoplex film was translucent while being the most flexible and resilient (EB, 766.8%). Biomax film was semitransparent and was the most brittle film tested (EB, 0.03%). All biopolyester films were water resistant exhibiting very low water solubility (WS) values ranging from 0.0.3 to 0.36%. PHBV film showed the lowest water vapor permeability (WVP) value ($1.26{\times}10^{-11}\;g{\cdot}m/m^2{\cdot}sec{\cdot}Pa$) followed by Biomax, PLA, and Ecoflex films, respectively. The water vapor barrier properties of each film were approximately 100 times higher than those of carbohydrate or protein-based films, but about 100 times lower than those of commodity polyolefin films such as low-density polyethylene (LDPE) or polypropylene (PP).

Wetting Properties of Biopolyester Films Prepared by Thermo-Compression Method

  • Rhim, Jong-Whan;Hong, Seok-In
    • Food Science and Biotechnology
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    • 제16권2호
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    • pp.234-237
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    • 2007
  • Water resistance of three biopolyester films, such as poly-L-lactate (PLA), poly-hydroxybutyrate-co-valerate (PHBV), and Ecoflex, and low density polyethylene (LDPE) film was investigated by measuring contact angle of various probe liquids on the films. The properties measured were initial contact angle of water, dynamic change of the water contact angle with time, and the critical surface energy of the films. Water contact angle of the biopolyester films ($57.62-68.76^{\circ}$) was lower than that of LDPE film ($85.19^{\circ}$) indicating biopolyester films are less hydrophobic. The result of dynamic change of water contact angle also showed that the biopolyester films are less water resistant than LDPE film, but much more water resistant than cellulose-based packaging materials. Apparent critical surface energy for the biopolyester films (35.15-38.55 mN/m) was higher than that of LDPE film (28.59 mN/m) indicating LDPE film is more hydrophobic.

암모니아-물 흡수식 시스템에서 유하액막식 발생기의 해석 (Analysis of Falling-film Generator in Ammonia-water Absorption System)

  • 김병주;손병후;구기갑
    • 설비공학논문집
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    • 제13권5호
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    • pp.422-430
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    • 2001
  • In the present study, an evaporative generation process of ammonia-water solution film on the vertical plate was analysed. For the utilization of waste heat, hot water of low temperature was used as the heat source. The continuity, momentum, energy and diffusion equations for the solution film and vapor mixture were formulated in integral forms and solved numerically. Counter-current solution-vapor flow resulted in the refrigerant vapor of the higher ammonia concentration than that of co-current flow. Eve the rectification of refrigerant vapor was observed near the inlet of solution film in counter-current flow. For the optimum operation of generator using hot water, numerical experiments, based on the heat exchange and generation efficiencies. revealed the inter-relationships among the Reynolds number of the solution film and hot water, and the length of generator. Enhancement of heat and mass transport in the solution film was found to be very effective for the improvement of generation performance, especially at high solution flow rate.

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플라스틱 온실(溫室)의 열저장(熱貯藏) 시스템 개발(開發)에 관(關)한 연구(硏究)(I) -수막식(水膜式) 열교환(熱交換) 시스템의 개발(開發)- (Development of Thermal Storage System in Plastic Greenhouse (I) -Development of Air-Water Heat Exchange System-)

  • 김용현;고학균;김문기
    • Journal of Biosystems Engineering
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    • 제15권1호
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    • pp.14-22
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    • 1990
  • For efficient use of solar energy in plastic greenhouse, thermal storage system was developed. The system was constructed with the counter-flow type air-water heat exchanger using a thin polyethylene film as a medium of heat exchange parts. Experiments were carried out to investigate the heat exchange rate, optimum water flow rate, overall heat transfer coefficient, and the effectiveness of the counter-flow type air-water heat exchanger with polyethylene film bags. Mathematical model to predict air temperature leaving heat exchanger was developed. The results obtained in the present study are summarized as follows. 1. Heat exchange rate in the counter-flow type air-water heat exchanger with polyethylene film bags was compared to that of polyethylene film. Heat exchange rate was almost identical at air velocity of 0.5m/s on polyethylene film surface. But, heat exchange rate of heat exchanger with polyethylene film bag was $32{\sim}55KJ/m^2$ hr higher than that of polyethylene film at air velocity of 1.0m/s. 2. Considering the formation of uniform water film and the sufficient heat exchange rate of polyethylene film bags, optimum water flow rate in polyethylene film bags was $3.0{\sim}6.0{\ell}/m^2$ min. 3. The overall heat transfer coefficient of polyethylene film bags was found to be $35.0{\sim}130.0KJ/m^2\;hr\;^{\circ}C$ corresponding to the air velocity ranging 0.5 to 4.0 m/s on polyethylene film surface. And the overall heat transfer coefficient showed almost linearly increasing tendency to the variation of air velocity. 4. Mathematical model to predict air temperature leaving the heat exchanger was developed, resulting in a good agreement between the experimental and predicted values. But, the experimental results were a little lower than predicted. 5. Effectiveness of heat exchanger for the experiment was found to be 0.40~0.81 corresponding to the number of transfer units due to the variation of air velocity ranging 0.6 to 1.7 m/s.

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Transparent Black Phosphorus Nanosheet Film for Photoelectrochemical Water Oxidation

  • Choi, Chang-Ho
    • 청정기술
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    • 제27권3호
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    • pp.217-222
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    • 2021
  • Although monolayer black phosphorus (BP) and few-layer BP nanosheets (NSs) have been extensively studied as promising alternatives to graphene, research has focused primarily on atomically thin-layered BP in an isolated form. In order to realize the practical applications of BP-related devices, a BP film based on continuous networking of few-layer BP NSs should be developed. In this study, a transparent BP film with high quality was fabricated via a vacuum filtration method. An oxygen-free water solvent was used as an exfoliation medium to avoid significant oxidation of the few-layer BP NSs in liquid-phase exfoliation. The exfoliation efficiency from bulk BP to the few-layer BP NSs was estimated at 22%, which is highly efficient for the production of continuous BP film. The characteristics of the high-quality BP film were determined as 98% transparency, minimum oxidation of 18%, structural stability, and an appropriate bandgap of about 1.8 eV as a semiconductor layer. In order to demonstrate the potential of the BP film for photocatalytic activity, we performed photoelectrochemical water oxidation of the transparent BP film. Although its performance should be improved for practical applications, the BP film could function as a photoanode, which offers a new potential semiconductor in water oxidation. We believe that if the BP film is adequately engineered with other catalysts the photocatalytic activity of the BP film will be improved.

카라기난 필름의 투습 특성 (Water-Vapor Transfer Characteristics of Carrageenan-Based Edible Film)

  • 임종환;황금택;박현진;정순택
    • 한국식품과학회지
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    • 제28권3호
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    • pp.545-551
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    • 1996
  • 카라기난을 사용하여 제조한 생분해성 필름의 분말식품에 대한 응용성을 조사하기 위한 연구의 일환으로 3종의 두께(0.05, 0.08, 0.11 mm)로 제작된 카라기난 필름을 사용하여 5가지의 온도(20, 25, 30, 35, $4^{\circ}C$)와 3가지의 상대습도(50, 70, 90%RH) 조건에서 수증기투과율을 측정하여 카라기난 필름의 투습 특성을 조사하였다. 카라기난 필름의 수증기투과율은 PE 필름보다 2.3배 정도 높았으며, 투습계수는 PE 필름보다 45-230배 정도 높아 수증기투과도가 높음을 알 수 있었다. 카라기난 필름의 투습계수는 다른 친수성의 가식성 필름과 마찬가지로 필름의 두께가 증가할수록 직선적으로 증가하는 경향을 보였다. 카라기난 필름의 투습계수는 온도에 대한 의존성을 나타내지 않았으나, 수증기투과율은 온도에 대한 의존성을 나타냈다. 카라기난 필름의 수증기투과율의 활성화 에너지는 필름의 두께에 따라 7.898-12.872 kj/mol의 값을 보였다. 카라기난 필름의 수증기투과율은 활성화 에너지 값이 커짐에 따라 지수앞인자의 값도 증가하는 kinetic compensation 현상을 나타냈다.

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수압에 의한 Expoxy 수지 피복막의 피단강도에 관한 연구 (A Study of Rupture Strength of Epoxy Resin Film by Water Pressure)

  • 백영남
    • 한국표면공학회지
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    • 제9권3호
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    • pp.5-8
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    • 1976
  • In this study, a ruture strength of epoxy resin film coated on the leaking spot in waterpipe line was determined, using water pressure, without interrupting water supply. This results could be used for the sealing of water leakage in large size waterpipe lines. An experimental equation {{{{P=Kt^m~ /R^n~ (m=2, n=3.5) }} was also obtained, where P is the rupture pressure, K is constant, t is the thickness and R is the radius of the resin film. From this results, the safe쇼 thickness of the film for a domestic use was calculated with various radii against the maximum pressure.

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