• 제목/요약/키워드: bubble phenomenon

검색결과 71건 처리시간 0.022초

특허 및 논문 분석을 통한 디스플레이용 접착제의 기술경쟁력 분석 (Research Trend of OCA (Optically Clear additive) for Display Panel by Analysis of Patent and Papers Publication)

  • 우창화
    • 반도체디스플레이기술학회지
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    • 제17권3호
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    • pp.75-84
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    • 2018
  • According to IHS, the overall display market is expected to grow at an average annual rate of 6% from $ 104 billion in 2016, to $ 138 billion in 2021. Among them, the OLED display panel will grow from $ 15 billion to $ 41 billion over the same period, forecasting a high annual growth rate of 22%. However, the refraction index, light leakage, bubble generation, adhesion deterioration, peeling phenomenon, moisture resistance, light transmittance, low turbidity. OCA (optically clear adhesive), which solves problems such as improving the resistance of the conductive film, is largely dependent on imported products. In addition, in 2016, the world market is worth KRW4.3 trillion, and the adhesive market has a large market effect. In this study, we tried to analyze the technical competitiveness of patent and thesis by classifying OCA (optically clear adhesive, optical adhesive) for display panel by curing method. As a result of the study, the amount of patents and papers in Korea was found to be superior to other competitors, but the quality level was low. In particular, it was found that the achievements of the papers in the hot melt field are lacking and the government should expand its support.

Air horizontal jets into quiescent water

  • Weichao Li ;Zhaoming Meng;Jianchuang Sun;Weihua Cai ;Yandong Hou
    • Nuclear Engineering and Technology
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    • 제55권6호
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    • pp.2011-2017
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    • 2023
  • Gas submerged jet is an outstanding thermohydraulic phenomenon in pool scrubbing of fission products during a severe nuclear accident. Experiments were performed on the hydraulic characteristics in the ranges of air mass flux 0.1-1400 kg/m2s and nozzle diameter 10-80 mm. The results showed that the dependence of inlet pressure on the mass flux follows a power law in subsonic jets and a linear law in sonic jets. The effect of nozzle submerged depth was negligible. The isolated bubbling regime, continuous bubbling regime, transition regime, and jetting regime were observed in turn, as the mass flux increased. In the bubbling regime and jetting regime, the air volume fraction distribution was approximately symmetric in space. Themelis model could capture the jet trajectory well. In the transition regime, the air volume fraction distribution loses symmetry due to the bifurcated secondary plume. The Li correlation and Themelis model showed sufficient accuracy for the prediction of jet penetration length.

$6mm^t$조선용 프라이머 코팅강판의 $CO_2$레이저 용접성 (II) - 레이저 용접현상의 동적거동과 기공 및 증발입자의 조성 - (The Weldability of $6mm^t$ Primer-coated Steel for Shipbuilding Using $CO_2$ Laser (II) - Dynamic Behavior of Laser Welding Phenomenon and Composition of Porosity and Vaporized-particle -)

  • 김종도;박현준
    • Journal of Welding and Joining
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    • 제24권2호
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    • pp.71-78
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    • 2006
  • It has been reported that good quality weld beads are not easily obtained during the $CO_2$ CW laser welding of primer coated plate. However, by introducing a small gap clearance in the lap position, the zinc vapor can escape through it and sound weld beads can be acquired. Therefore, this study examines for keyhole behavior by observing the laser-induced plasma and investigates the relation between keyhole behavior and formation of weld defect. Laser-induced plasma has accompanied with the vaporizing pressure of zinc ejecting from keyhole to surface of primer coated plate. This dynamic behavior of plasma was very unstable and this instability was closely related to the unstable motion of keyhole during laser welding. As a result of observing the composition of porosity, much of Zn element was found from inner surface of porosity. But Zn was not found from the dimple structure fractured at the weld metal. By analyzing of vaporizing element in laser welding, a component ratio of Zn was decreased by introducing a small gap clearance. Therefore we can prove that the major cause of porosity is the vaporization of primer in lap position. Mechanism of porosity-formation is that the primer vaporized from the lap position accelerates dynamic behavior of the key hole and the bubble separated from the key hole is trapped in the solidification boundary and romaines as porosity.

A New Detergentless Micro-Emulsion System Using Urushiol as an Enzyme Reaction System

  • Kim, John-Woo-Shik;Yoo, Young-Je
    • Journal of Microbiology and Biotechnology
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    • 제11권3호
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    • pp.369-375
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    • 2001
  • Urushiol, a natural monomeric oil, was used to prepare a detergentless micro-emulsion with water and 2-propanol The formation of micro-emulsion was verified by conductivity measurements and dynamic light scattering. The conductivity data showed phase change dynamics, a characteristics of micro-emulsions, and subsequent dynamic light scattering study further confirmed the phenomenon. Average water droplet diameter was 10 nm to 500 nm when the molar ratio of 2-propanol ranged from 0.40 to 0.44 . Earlier studies were performed on toluene and hexane, in which the insoluble substrate in water phase was added to the solvents to be reacted on by enzymes. However, in the present urushiol system, urushiol was used as both solvent and substrate in the laccase polymerization of urushiol. The laccase activity in the system was examined using polymerization of urushiol. The laccase activity in the system was examined using syringaldezine as a substrate, and the activity increased rapidly near the molar ratio of 2-propanol at 0.4, where micro-emulsion started. The activity rose until 0.46 and fell dramatically thereafter. The study of laccase activity in differing mole fractions of 2-propanol showed the existence of an ‘optimal zone’, where the activity of laccase was significantly higher. In order to analyze urushiol polymerization by laccase, a bubble column reactor using a detergentless micro-emulsion system was constructed. Comparative study using other organic solvents systems were conducted and the 2-propanol system was shown to yield the highest polymerization level. The study of laccase activity at a differing mole fraction of 2-propanol showed the existence of an ‘optimal zone’ where the activity was significantly higher. Also, 3,000 cP viscosity was achieved in actual urushi processing, using only 1/100 level of laccase present in urushi.

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Experimental Investigations on Upper Part Load Vortex Rope Pressure Fluctuations in Francis Turbine Draft Tube

  • Nicolet, Christophe;Zobeiri, Amirreza;Maruzewski, Pierre;Avellan, Francois
    • International Journal of Fluid Machinery and Systems
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    • 제4권1호
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    • pp.179-190
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    • 2011
  • The swirling flow developing in Francis turbine draft tube under part load operation leads to pressure fluctuations usually in the range of 0.2 to 0.4 times the runner rotational frequency resulting from the so-called vortex breakdown. For low cavitation number, the flow features a cavitation vortex rope animated with precession motion. Under given conditions, these pressure fluctuations may lead to undesirable pressure fluctuations in the entire hydraulic system and also produce active power oscillations. For the upper part load range, between 0.7 and 0.85 times the best efficiency discharge, pressure fluctuations may appear in a higher frequency range of 2 to 4 times the runner rotational speed and feature modulations with vortex rope precession. It has been pointed out that for this particular operating point, the vortex rope features elliptical cross section and is animated of a self-rotation. This paper presents an experimental investigation focusing on this peculiar phenomenon, defined as the upper part load vortex rope. The experimental investigation is carried out on a high specific speed Francis turbine scale model installed on a test rig of the EPFL Laboratory for Hydraulic Machines. The selected operating point corresponds to a discharge of 0.83 times the best efficiency discharge. Observations of the cavitation vortex carried out with high speed camera have been recorded and synchronized with pressure fluctuations measurements at the draft tube cone. First, the vortex rope self rotation frequency is evidenced and the related frequency is deduced. Then, the influence of the sigma cavitation number on vortex rope shape and pressure fluctuations is presented. The waterfall diagram of the pressure fluctuations evidences resonance effects with the hydraulic circuit. The influence of outlet bubble cavitation and air injection is also investigated for low cavitation number. The time evolution of the vortex rope volume is compared with pressure fluctuations time evolution using image processing. Finally, the influence of the Froude number on the vortex rope shape and the associated pressure fluctuations is analyzed by varying the rotational speed.

지분형 주택분양제도의 성공적인 도입을 위한 영향요인 분석 (Evaluation of Influence Factors in order to introduce Share-styled Apartment House Successfully)

  • 이현철;임소연;고성석
    • 한국건설관리학회논문집
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    • 제11권1호
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    • pp.79-87
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    • 2010
  • 정권 교체기마다 주택 및 부동산 정책은 항상 논쟁의 대상이 되어 왔다. 우리나라의 경우 특히, IMF 금융위기의 회복기를 거치면서 부동산 버블현상이 조성되었고, 이는 무주택 서민들의 내 집 마련에 대한 부담과 불안감을 가중시켰다. 이에 대한 대책으로 정부에서는 2008년 상반기에 아파트 소유에 투자의 개념을 접목한 '지분형 주택분양제도'를 도입하여 서민형 아파트를 대상으로 2008년 하반기부터 시행을 계획하였으나, 투자자들로 하여금 적정 수익을 보장하기가 어렵고, 10년의 전매 제한이 있는 등 실효성에 대한 불투명 때문에 아직 준비단계에 머무르고 있는 실정이다. 이에 본 연구에서는 지분형 주택분양제도의 도입에 영향을 미치는 요인들을 공급자, 투자자, 실구매자 계층으로 나누어 계층별 영향요인간 중요도를 조사하고, 또한 각 분야의 전문가들을 대상으로 한 개선방향 인식 분석자료를 바탕으로 정책적 방향과 개선과제들을 연구하였다.

비침습적 초음파 방광 내압 측정 기술: 이론적 기초 및 실현 가능성 평가 (A Non-Invasive Ultrasonic Urinary Bladder Internal Pressure Monitoring Technique: Its Theoretical Foundation and Feasibility Test)

  • 최민주;강관석;이강일
    • 비파괴검사학회지
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    • 제32권5호
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    • pp.526-539
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    • 2012
  • 본 연구에서는 기존의 방광 내압 측정의 문제점을 근본적으로 해결할 수 있는 새로운 접근법인 '초음파를 이용한 비침습적 방광 내압 측정 기술'을 제안한다. 제안된 기술은 초음파에 의한 캐비테이션 현상을 이용한다. 즉, 체외에서 조사된 고강도 초음파 펄스에 의해 방광 내에 생성된 기포의 동 특성은 방광 내압에의 영향을 받는다는 물리적인 현상에 근거한다. 본 논문에서는 초음파 방광 내압의 측정 기술의 이론적 기초를 제시하고 및 초기적인 측정 실험을 통해 실현 가능성을 입증했다. 제안된 초음파 방광 압력 측정법은 비침습적이며, 성별, 연령에 관계없이 적용 가능하고, 상시 측정이 가능하여 향후 방광 및 배뇨 장애 관련 진단 및 치료에 크게 기여할 것으로 기대된다.

Bentham의 쾌락계산법에 기초한 건축미 가치추정 방법론적 소고 (A Methodological Thinking on Valuation Analysis of the Architectural Aesthetic based on the Hedonic Calculus by Bentham)

  • 이동주;고은형
    • 대한건축학회논문집:계획계
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    • 제34권4호
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    • pp.11-18
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    • 2018
  • The beauty is like the bubble of beer, and behavior scholars have been regarded as worthless to study. As a result, the aesthetic in construction projects has resulted in underestimation or neglect. The fundamental cause of this result is that it is not easy to estimate the value of the aesthetic. The hedonic calculus by Bentham has a possibility to valuating the intangible or invisible goods. In this context, this study proposes a method to valuate architectural aesthetic based on the hedonic calculus by Bentham. As a precondition for suggesting the valuation method, this study defined the architectural aesthetic as the value of attraction that affects the value of the built environment. As the concept of beauty that conforms to the architectural aesthetic, it has established the concept of beauty as 'the phenomenon of combining the foreground and background of Hartmann'. In addition, the scope of the value measurement is defined as 'built environment' so as to include not only the building but also the surrounding environment. We have reinterpreted the seven dimension of the hedonic calculus proposed by Bentham and systematized the method of valuation of the architectural esthetic based on the seven dimension. The result of this study is meaningful in that it presents a new perspective and approach to architectural aesthetic. And it will be used as grounds for valuation and analytical approach to architectural aesthetic and will be used as a basis for expanding the field of study from aesthetic to value.

Water film covering characteristic on horizontal fuel rod under impinging cooling condition

  • Penghui Zhang;Bowei Wang;Ronghua Chen;G.H. Su;Wenxi Tian;Suizheng Qiu
    • Nuclear Engineering and Technology
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    • 제54권11호
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    • pp.4329-4337
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    • 2022
  • Jet impinging device is designed for decay heat removal on horizontal fuel rods in a low temperature heating reactor. An experimental system with a fuel rod simulator is established and experiments are performed to evaluate water film covering capacity, within 0.0287-0.0444 kg/ms mass flow rate, 0-164.1 kW/m2 heating flux and 13.8-91.4℃ feeding water temperature. An effective method to obtain the film coverage rate by infrared equipment is proposed. Water film flowing patterns are recoded and the film coverage rates at different circumference angles are measured. It is found the film coverage rate decreases with heating flux during single-phase convection, while increases after onset of nucleate boiling. Besides, film coverage rate is found affected by Marangoni effect and film accelerating effect, and surface wetting is significantly facilitated by bubble behavior. Based on the observed phenomenon and physical mechanism, dry-out depth and initial dry-out rate are proposed to evaluate film covering potential on a heating surface. A model to predict film coverage rate is proposed based on the data. The findings would have reliable guide and important implications for further evaluation and design of decay heat removal system of new reactors, and could be helpful for passive containment cooling research.

Fundamental evaluation of hydrogen behavior in sodium for sodium-water reaction detection of sodium-cooled fast reactor

  • Tomohiko Yamamoto;Atsushi Kato;Masato Hayakawa;Kazuhito Shimoyama;Kuniaki Ara;Nozomu Hatakeyama;Kanau Yamauchi;Yuhei Eda;Masahiro Yui
    • Nuclear Engineering and Technology
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    • 제56권3호
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    • pp.893-899
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    • 2024
  • In a secondary cooling system of a sodium-cooled fast reactor (SFR), rapid detection of hydrogen due to sodium-water reaction (SWR) caused by water leakage from a heat exchanger tube of a steam generator (SG) is important in terms of safety and property protection of the SFR. For hydrogen detection, the hydrogen detectors using atomic transmission phenomenon of hydrogen within Ni-membrane were used in Japanese proto-type SFR "Monju". However, during the plant operation, detection signals of water leakage were observed even in the situation without SWR concerning temperature up and down in the cooling system. For this reason, the study of a new hydrogen detector has been carried out to improve stability, accuracy and reliability. In this research, the authors focus on the difference in composition of hydrogen and the difference between the background hydrogen under normal plant operation and the one generated by SWR and theoretically estimate the hydrogen behavior in liquid sodium by using ultra-accelerated quantum chemical molecular dynamics (UA-QCMD). Based on the estimation, dissolved H or NaH, rather than molecular hydrogen (H2), is the predominant form of the background hydrogen in liquid sodium in terms of energetical stability. On the other hand, it was found that hydrogen molecules produced by the sodium-water reaction can exist stably as a form of a fine bubble concerning some confinement mechanism such as a NaH layer on their surface. At the same time, we observed experimentally that the fine H2 bubbles exist stably in the liquid sodium, longer than previously expected. This paper describes the comparison between the theoretical estimation and experimental results based on hydrogen form in sodium in the development of the new hydrogen detector in Japan.