• 제목/요약/키워드: Electrode size

검색결과 803건 처리시간 0.027초

전해부상에서 전압과 극판 재질에 따른 미세기포의 크기 특성 (Size Characteristics of Micro-bubbles According to Applied Voltage and Electrode materials)

  • 박용호;한무영
    • 상하수도학회지
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    • 제16권6호
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    • pp.663-669
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    • 2002
  • Electro-flotation (EF) has shown advantages, such as a high removal efficiency and easy control of bubble generation, over dissolved air flotation. However, the fundamental characteristics of the process have not been investigated in detail. According to recent modeling results from trajectory analysis, the size of the bubble is one of the most important factors that affect the efficiency of collision between bubble and particle. In this paper, the size characteristics of bubbles generated from EF under various conditions are measured using a new method for bubble size measurement, the Particle Counter Method (PCM). The size of the generated bubbles was found to be constant with respect to applied voltage but to vary with the electrode materials. These results and their implications are discussed.

스마트 파워 IC를 위한 트렌치 파워 MOSFET의 전기적 특성에 관한 연구 (A Lateral Trench Electrode Power MOSFET with Superior Electrical Characteristics for Smart Power IC Systems)

  • 성만영;김대종;강이구
    • 한국전기전자재료학회논문지
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    • 제17권1호
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    • pp.27-30
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    • 2004
  • In this paper, a new small size Lateral Trench Electrode Power MOSFET is proposed. This new structure, called "LTEMOSFET"(Lateral Trench Electrode Power MOSFET), is based on the conventional MOSFET. The entire electrode of LTEMOSFET is placed in trench oxide. The forward blocking voltage of the proposed LTEMOSFET is improved by 1.6 times with that of the conventional MOSFET. The forward blocking voltage of LTEMOSFET is 250V. At the same size, a increase of the forward blocking voltage of about 1.6 times relative to the conventional MOSFET is observed by using TMA-MEDICI which is used for analyzing device characteristics. Because the electrodes of the proposed device are formed in trench oxide, the electric field in the device are crowded to trench oxide. We observed that the characteristics of the proposed device was improved by using TMA-MEDICI and that the fabrication of the proposed device is possible by using TMA-TSUPREM4.

고분자연료전지 내 촉매 이동 및 노화메커니즘에 관한 연구 (A Study of the Electrode Catalyst Migration and Aging Mechanism of PEMFC)

  • 이윤희;이기석;윤종진;변정연
    • 한국수소및신에너지학회논문집
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    • 제23권3호
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    • pp.256-263
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    • 2012
  • We studied the degradation phenomenon of Pt catalyst in PEMFC. We used the electron microscope analysis technique including the ultra-microtome pretreatment method, FEG-SEM and TEM analysis methods for analysis of Pt nanoparticles. The Pt catalyst degradation is observed not only in electrode site but also in membrane site. We investigated these various degradation phenomena. The cathode electrode layer thickness is reduced. The size of the catalyst is increased much larger than initial size in membrane site. The catalyst moved from electrode layer to the electrolyte membrane. The rounded shape of catalyst was changed to the polygon. As a result, we found that the catalyst degradation processes of migration and coarsening occurred by the followings mechanisms; (1) dissolution of Pt ; (2) diffusion of Pt ion ; (3) Pt ion chemical reduction in membrane; (4) Coarsening of Pt particles (Ostwald ripening) ; (5) polygon shape change of Pt by {111} plane growth.

산업현장 적용을 위한 스테인레스 스틸의 전해연마 특성 (Electropolishing Characteristics of Stainless Steel for Industrial Application)

  • 김수한;이승헌;조재훈;김상범;최중소;박철환
    • 한국표면공학회지
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    • 제49권4호
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    • pp.363-367
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    • 2016
  • For the industrial application of electropolishing process, we investigated electropolishing characteristics of stainless steel through increasing the specimen size or electrode gap. In this study, we performed a set of experiment with the specimen size of $10cm{\times}10cm$ and the electrode gap of 1 cm or more. In the view of the electropolishing process, the electrolyte temperature and the polishing time were most important factors compared with the current density and the electrode gap. Especially, the electrolyte temperature most importantly affected surface roughness and current efficiency on electropolishing characteristics. For the industrial application of electropolishing process, it should be considered for important factors such as electrolyte temperature, polishing time, current density and electrode gap, etc.

근전의수용 건식형 능동 표면 근전도 전극의 개발 (Development of Dry-type Active Surface EMG Electrode for Myoelectric Prosthetic Hand)

  • 최기원;문인혁;추준욱;김경훈;문무성
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2003년도 하계종합학술대회 논문집 V
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    • pp.2733-2736
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    • 2003
  • This paper proposes a dry-type active surface EMG electrode for the myoelectric prosthetic hand. The designed electrode is small size for embedding in the socket of prosthetic hand, and it has three leads including the reference of signal. To acquire EMG signal rejected the power noise, a precision differential amplifier and various filters such as the band pass filter band rejection filter, low pass and high pass filter are embedded on the electrode. The final output of the electrode is integrated absolute EMG (IEMG) obtained by full rectifier and moving average circuits. From experimental results using the implemented dry-type active surface EMG electrode, the proposed electrode is feasible for the myoelectric prosthetic hand.

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Ionic Size Effect on the Double Layer Properties: A Modified Poisson-Boltzmann Theory

  • Lou, Ping;Lee, Jin-Yong
    • Bulletin of the Korean Chemical Society
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    • 제31권9호
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    • pp.2553-2556
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    • 2010
  • On the basis of a simple modified Poisson-Boltzmann (SMPB) theory, taking into account the finite ionic size, the analytic expression for the effect of ionic size on the diffuse layer potential drop at negative charge densities has been given for the simple 1:1 electrolyte. It is shown that the potential drop across the diffuse layer depends on the size of the ions in the electrolyte. For a given electrolyte concentration and electrode charge density, the diffuse layer potential drop in a small ion system is smaller than that in a large ion system. It is also displayed that the diffuse layer potential drop is always less than the value of the Gouy-Chapman (GC) theory, and the deviation increases as the electrode charge density increases for a given electrolyte concentration. These theoretical results are consistent with the results of the Monte-Carlo simulation [Fawcett and Smagala, Electrochimica Acta 53, 5136 (2008)], which indicates the importance of including steric effects in modeling diffuse layer properties.

전극간 거리와 크기가 토양미생물연료전지의 성능에 미치는 영향 (The Effect of Electrode Spacing and Size on the Performance of Soil Microbial Fuel Cells (SMFC))

  • 임성원;이혜정;정재우;안용태
    • 대한환경공학회지
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    • 제36권11호
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    • pp.758-763
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    • 2014
  • 토양 내에서 유기성 오염물질은 혐기성 미생물에 의해 분해되지만 전자수용체의 부족으로 상당량이 토양에 잔류하게 된다. 토양미생물연료전지(soil microbial fuel cells, SMFC)는 전극을 통해 전자 소비를 증진시켜 유기물 분해를 촉진시키고 동시에 전력도 생산하기 때문에, 다양한 유기성 오염원으로 오염된 토양을 환경 친화적으로 복원시킬 수 있는 기술로서 많은 관심을 받고 있다. 본 연구에서는 전극간 거리와 전극 크기가 SMFC의 전기적 성능에 미치는 영향을 연구하였다. 유기물이 풍부한 토양과 인공폐수 혼합물을 이용하여 SMFC를 단일반응조로 구성하였다. SMFC에서 발생된 전력량은 전극간 거리가 멀어지거나 전극 크기가 작아질수록 내부저항이 증가하여 감소하였다. 전극 크기는 $64cm^2$로 고정하고 전극간 거리는 4~9 cm로 변화를 주었을 때, 전극간 거리가 4 cm 조건에서 최대전압 326 mV, 최대전력밀도 $19.5mW/m^2$가 얻어졌고 거리가 멀어질수록 전압발생량은 19~32% 감소하고 최대전력밀도는 56~69% 감소하는 것으로 나타났다. 전극 크기 변화 실험에서는 전극간 거리를 4 cm로 고정하고 전극 크기를 $16{\sim}64cm^2$로 변화를 주었다. 두 전극 크기가 $64cm^2$ 조건에서 최대전압 291 mV, 최대전력밀도 $0.34mW/m^3$로 측정되었으며 산화전극 크기가 작아지면, 최대전압은 19~29% 감소하였고, 환원전극의 경우는 3~12% 감소하였다. 최대전력밀도는 산화전극이 작아지면, 49~68% 감소하였고, 환원전극이 작아지는 경우에는 29~47% 감소하였다. SMFC는 인공폐수와 토양 혼합물질을 반응기 내부물질로 사용하기 때문에, 전자 및 이온전달속도가 느려 환원전극 크기에 비해 산화전극 크기에 더 많은 영향을 받는 것으로 판단된다.

Mg 합금 저항 점 용접의 연속 타점 수명에 미치는 전극 형상의 영향 (Effects of Electrode Shape on Electrode Life of Resistance Spot Welding of Mg Alloy)

  • 최동순;강문진;류재욱;김동철
    • 한국자동차공학회논문집
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    • 제22권4호
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    • pp.30-35
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    • 2014
  • According to weight lightning trend of automobile body, necessity of resistance spot welding (RSW) of Mg alloy on automobile industry is increasing rapidly because of the highest specific strength among commercial metals. Mg alloy has low electric resistance and high thermal conductivity like as Al alloy, so that needs applying high current in short time when welding. Thick oxide film of Mg alloy pollutes the electrodes and makes partial current carrying paths when on welding. Partial current carrying paths signify excessive concentration of current. There can initiate expulsion easily and reduces electrode life rapidly. Generating partial current carrying paths and expulsions are influenced by shapes of electrode. Therefore, electrode life also influenced by shape. In this study, we perform life test of RSW electrode of radius type. Measure tensile shear load and nugget size every spot alternately. As a result, radius type electrode can extend life over twice as dome type electrode.

전극 형상에 따른 저비중 경량강판의 저항 점 용접 특성 (Resistance Spot Weldability of Low Density Lightweight Steel according to Electrode Shape)

  • 황인성;윤현상;김동철;강문진;김재도;김영민
    • Journal of Welding and Joining
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    • 제35권2호
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    • pp.52-57
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    • 2017
  • In this study, resistance spot weldability of lightweight steel with high Al contents was evaluated using various electrode shapes. The six types of electrode shape were prepared with different electrode face diameter and radius. The tensile shear tests were carried out to investigate the failure behaviors. Also, the nugget size and hardness were measured and compared with various electrode shapes. The experimental results show that the acceptable weld current region for low density lightweight steel could be obtained with 10mm electrode face diameter and 76mm electrode face radius.

ECR-MOCVD에 의해 연성 고분자 기판에 제조된 구리막의 균일도에 전극의 형태가 미치는 영향 (Effects of electrode configurations on uniformity of copper films on flexible polymer substrate prepared by ECR-MOCVD)

  • 전법주;이중기
    • 한국군사과학기술학회지
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    • 제7권1호
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    • pp.34-46
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    • 2004
  • Copper films were prepared by using ECR-MOCVD(Electron Cyclotron Resonance Metal Organic Chemical Vapor Deposition) coupled with a DC bias system. The DC bias is connected to the electrode which placed 1∼3cm above the polymer substrate. The pulse electrical field around the electrode attracts the positive charged copper ions generated from the dissociation of copper precursor, $Cu(hfac)_2$, under ECR plasma. Condensation of supersaturated copper ions in the space between the electrode and substrate, makes it possible to deposit copper film on the polymer substrate even at room temperature. In this study, optimization of the electrode configuration was carried out in order to obtain the uniform films. The uniformity of the deposited films were closely related to the parameters of electrode geometry such as electrode shape, thickness, grid size and the spacing between electrodes. The most uniform copper film was observed with the electrode that enabled uniform electrical field distribution across the whole dimension of electrode.