• 제목/요약/키워드: Internal electrode

검색결과 279건 처리시간 0.025초

Effect of Carbon Fiber Layer on Electrochemical Properties of Activated Carbon Electrode

  • Jong kyu Back;Jihyeon Ryu;Yong-Ho Park;Ick-Jun Kim;Sunhye Yang
    • Journal of Electrochemical Science and Technology
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    • 제14권2호
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    • pp.184-193
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    • 2023
  • This study investigates the effects of a carbon fiber layer formed on the surface of an etched aluminum current collector on the electrochemical properties of the activated carbon electrodes for an electric double layer capacitor. A particle size analyzer, field-emission SEM, and nitrogen adsorption/desorption isotherm analyzer are employed to analyze the structure of the carbon fiber layer. The electric and electrochemical properties of the activated carbon electrodes using a carbon fiber layer are evaluated using an electrode resistance meter and a charge-discharge tester, respectively. To uniformly coat the surface with carbon fiber, we applied a planetary mill process, adjusted the particle size, and prepared the carbon paste by dispersing in a binder. Subsequently, the carbon paste was coated on the surface of the etched aluminum current collector to form the carbon under layer, after which an activated carbon slurry was coated to form the electrodes. Based on the results, the interface resistance of the EDLC cell made of the current collector with the carbon fiber layer was reduced compared to the cell using the pristine current collector. The interfacial resistance decreased from 0.0143 Ω·cm2 to a maximum of 0.0077 Ω·cm2. And degradation reactions of the activated carbon electrodes are suppressed in the 3.3 V floating test. We infer that it is because the improved electric network of the carbon fiber layer coated on the current collector surface enhanced the electron collection and interfacial diffusion while protecting the surface of the cathode etched aluminum; thereby suppressing the formation of Al-F compounds.

The Effect of Barrel Vibration Intensity to the Plating Thickness Distribution

  • Lee, Jun-Ho;Roselle D. Llido
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 1999년도 추계학술발표회 초록집
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    • pp.15-15
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    • 1999
  • In chip plating, several parameters must be taken into consideration. Current density, solution concentration, pH, solution temperature, components volume, chip and media ratio, barrel geometrical shape were most likely found to have an effect to the process yields. The 3 types of barrels utilized in chip plating industry are the conventional rotating barrel. vibrational barrel (vibarrel), and the centrifugal type. Conventional rotating barrel is a close type and is commonly used. The components inside the barrel are circulated by the barrel's rotation at a horizontal axis. Process yield has known to have higher thickness deviation. The vibrational barrel is an open type which offers a wide exposure to electrolyte resulting to a stable thickness deviation. It rotates in a vertical axis coupled with multi-vibration action to facilitate mixed up and easy transportation of components, The centrifugal barrel has its plated work centrifugally compacted against the cathode ring for superior electrical contact with simultaneous rotary motion. This experiment has determined the effect of barrel vibration intensity to the plating thickness distribution. The procedures carried out in the experiment involved the overall plating process., cleaning, rinse, Nickel plating, Tin-Lead plating. Plating time was adjusted to meet the required specification. All other parameters were maintained constant. Two trials were performed to confirm the consistency of the result. The thickness data of the experiment conducted showed that the average mean value obtained from higher vibrational intensity is nearer to the standard mean. The distribution curve shown has a narrower specification limits and it has a reduced variation around the target value, Generally, intensity control in vi-barrel facilitates mixed up and easy transportation of components, However, it is desirable to maintain an optimum vibration intensity to prevent solution intrusion into the chips' internal electrode. A cathodic reaction can occur in the interface of the external and internal electrode. $2HD{\;}+{\;}e{\;}{\rightarrow}20H{\;}+{\;}H_2$ Hydrogen can penetrate into the body and create pressure which can cause cracks. At high intensity, the chip's motion becomes stronger, its contact between each other is delayed and so plating action is being controlled. However, the strong impact created by its collision can damage the external electrode's structure thereby resulting to bad plating condition. 1 lot of chip was divided into two equal partion. Each portion was loaded to the same barrel one after the other. Nickel plating and tin-lead plating was performed in the same station. Portion A maintained the normal barrel vibration intensity and portion B vibration intensity was increased two steps higher. All other parameters, current, solution condition were maintained constant. Generally, plating method find procedures were carried out in a best way to maintained the best plating condition. After plating, samples were taken out from each portion. molded and polished. Plating thickness was investigated for both. To check consistency of results. 2nd trial was done now using different lot of another characteristics.

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정상 성인의 직교유도체제와 피라미드유도체제에 의한 신호 가산 평균심전도의 비교 (Comparision of Signal-Averaged Electrocardiography (SAECG) Determined by Flank Lead System (FLS) and Pyramidal Lead System (PLS) in Healthy Young Adults)

  • 장병익;강승호;김형일;신동구;김영조;심봉섭;이현우
    • Journal of Yeungnam Medical Science
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    • 제10권1호
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    • pp.179-189
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    • 1993
  • 고전적인 직교 유도체제를 이용하여 고해상신호가산 심전도의 95% 신뢰구간을 구하고 His 분절 활성을 잘 기록할 수 있는 피라미드 유도체제와 비교함으로써 피라미드 유도체제가 미연전이를 발견할 수 있는데 사용될 수 있는지를 알아 보고자 영남대학 의과대학에 재학중인 젊은 정상 지원자 31명을 대상으로 고해상 신호가산 평균심전도를 측정하였다. 젊은 성인에 있어 직교 유도체제를 이용한 고해상 신호가산 심정도의 여과된 총 QRS 지속시간과 고빈도 저전위 신호 지속시간은 각각 25-250 Hz 주파수 여파에서는 129.6과 22.5 msec, 40-250 Hz 주파수 여과에서는 114.4와 31.9 msec, 80-250 Hz 주파수 여과에서는 110.4와 38.4 msec 이상을 비정상 범위로 잡을수 있고, QRS 말기 40 msec의 평균전위와 RMS 전위는 각각 25-250 Hz 주파수 여과에서는 49와 68.6 uV, 40-250 Hz 주파수 여과에서는 27.9와 58.8 uV. 80-250 Hz 주파수 여과에서는 10.6와 16.3 uV 이하를 비정상 범위로 잡을 수 있었다. 피라미드 유도체제도 미연전위를 기록하는데 유용하리라 사료되지만 40-250 Hz 주파수 여과에서 고빈도 저전위 신호 지속시간과 RMS 전위는 직교 유도체제와 달라 이에 대한 더 많은 연구가 필요하리라 사료된다.

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금속 샌드위치 판재 대면적 롤 프로젝션 용접에 관한 연구 : Part 2 - 수치 해석 (A Study on Large Area Roll Projection Welding for Metallic Sandwich Plate : Part 2 - Numerical Analysis)

  • 김종화;안준수;나석주
    • Journal of Welding and Joining
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    • 제27권3호
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    • pp.92-96
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    • 2009
  • Metallic sandwich plate has many good properties such as high specific stiffness, high specific strength, good impact absorptivity, effective thermal insulation and soundproofing. In our study, a new bonding method, 3-layer roll projection welding, is introduced to fabricate the metallic sandwich plate. The new method uses a pair of roll electrodes like the seam welding, and projection welding is made at two internal interfaces of the 3-layer weldment consisting of a structured inner sheet and a pair of skin sheets. During the welding process, skin sheet temperature are measured to produce metallic sandwich plate with uniform and good quality. But it is difficult to observe or measure the temperature at the welding points during welding process because the welding points exist at the internal interfaces. Therefore FEM numerical analysis using ABAQUS is conducted to estimate the generated heat at the welding points with different welding conditions.

나노 셀 OLED의 열 분포 해석 (Thermal Distribution Analysis in Nano Cell OLED)

  • 장경욱
    • 한국전기전자재료학회논문지
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    • 제37권3호
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    • pp.309-313
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    • 2024
  • The key to determining the lifetime of OLED device is how much brightness can be maintained. It can be said that there are internal and external causes for the degradation of OLED devices. The most important cause of internal degradation is bonding and degradation in the excited state due to the electrochemical instability of organic materials. The structure of OLED modeled in this paper consists of a cathode layer, electron injection layer (EIL), electron transport layer (ETL), light emission layer, hole transport layer (HTL), hole injection layer (HIL), and anode layer on a glass substrate from top to bottom. It was confirmed that the temperature generated in OLED was distributed around the maximum of 343.15 K centered on the emission layer. It can be seen that the heat distribution generated in the presented OLED structure has an asymmetrically high temperature distribution toward the cathode, which is believed to be because the sizes of the cathode and positive electrode are asymmetric. Therefore, when designing OLED, it is believed that designing the structures of the cathode and anode electrodes as symmetrically as possible can ensure uniform heat distribution, maintain uniform luminance of OLED, and extend the lifetime. The thermal distribution of OLED was analyzed using the finite element method according to Comsol 5.2.

태양광 발전단지 내부 그리드의 안전 특성화 접지 설계에 관한 연구 (A Study on the Safety Characterization Grounding Design of the Inner Photovoltaic System)

  • 김홍용;윤석호
    • 한국재난정보학회 논문집
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    • 제14권2호
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    • pp.130-140
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    • 2018
  • 연구목적: 본 논문에서는 우리사회의 대체 전력 에너지원으로 적합하고 유용하게 활용 할 수 있는 태양광 발전 단지 건설 시 안전 특성화 접지에 관한 설계 기법을 제안하고자 한다. 즉, 태양광 발전 단지 내의 셀 모듈부터 전기실까지 내부 그리드의 신뢰성을 향상하고 최적화 할 수 있는 용도별 안전 접지를 적용한 사례들을 소개하고자 한다. 연구방법: 태양광 발전 단지 내 토양의 대지 고유저항을 분석하고 컴퓨터 프로그램(CDEGS)을 활용해 전격을 일으키는 접촉전압과 보폭전압을 해석하여 안전접지에 관한 계산과 산출방법에 대해 제안한다. 또한, 토양 환경을 고려한 반영구적인 접지전극의 재료 선정에 관한 연구에 중요성을 논하고자 한다. 연구결과: Wenner 4 전극법으로 측정한 데이터 중 3개 지역의 CASE별 대지 고유저항 최대값과 최소값을 얻을 수 있었고 이 두 값으로 토양의 두께를 알 수 있다. 측정된 데이터를 기본수식 ${\rho}=6.28aR$에 대입하여 MATLAB 컴퓨터 프로그램으로 계산하였다. 즉, 최소 저항값의 두께는 접지전극을 설치하기에 가장 유리한 토양 환경임을 판단 할 수 있다. 결론: 본 연구를 통해 지역의 CASE별 태양광 발전소 내부 그리드에 대지 표면에 전위상승을 억제 할 수 있는 접지시스템 설계기법을 제안하였다. 하지만 대지의 고유저항과 접지시스템에 경련변화를 실시간으로 확인 할 수 있는 모니터링 시스템과 빅 데이터를 축적 할 수 있는 스마트 디바이스의 개발이 추가적으로 연구되어야 할 것이다.

가정용 연료전지 스택의 EIS 평가 기법 개발 (Development of EIS Evaluation Method about PEMFC 1kW STACK)

  • 박찬엄;한운기;정진수;고원식
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 춘계학술대회 초록집
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    • pp.100.1-100.1
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    • 2011
  • Electrochemical impedance spectroscopy(EIS) are using widely as a useful technique mainly in the field of electrochemical for the analysis of electrode reactions or characteristics of the composites. The response analysis of the systems technique provides comprehensive informations about the characteristic and structure of complex and internal reaction. The EIS is the method to measure impedance of the measurement target classified by the frequency, it select the equivalent impedance model to give same response from the result and it calculate the parameter. Therefore, the chemical reaction inside the fuel cell is to modeling to electrical impedance. And as repeating the same experiment in each of the operating point, we can get each different parameter. As a result, we can establish the equivalent impedance model in each operating point. Therefore, if we use these models, we can evaluate the fuel cell without the internal design parameter of the fuel cell as required in existing modeling. The EIS is used typically technique for distinguish status of fuel cell called SOH(State Of Health). When the fuel cell is degradation, Efficiency and health of the fuel cell is reduced because internal impedance is increase. As usage of these principles, we can evaluate state of fuel cell through the impedance analysis of fuel cells. In this study, we are presents EIS distinction system and algorithm for residential fuel cell systems. At the time of the fuel cell installation in the fields, the EIS system and proposed algorithm will be able to apply as technique for efficiency and performance evaluation about fuel cell system.

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A Novel Separator Membrane for Safer Lithium-ion Rechargeable Batteries

  • Lee, Sang-Young;Kim, Seok-Koo;Hong, Jang-Hyuck;Shin, Byeong-Jin;Park, Jong-Hyuck;Sohn, Joon-Yong;Jang, Hyun-Min;Ahn, Soon-Ho
    • 한국고분자학회:학술대회논문집
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    • 한국고분자학회 2006년도 IUPAC International Symposium on Advanced Polymers for Emerging Technologies
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    • pp.69-70
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    • 2006
  • In lithium-ion batteries, separator membrane's, main role is to physically isolate a cathode and an anode while maintaining rapid transport of ionic charge carriers during the passage of electric current. As far as battery safety is concerned, the electrical isolation of electrodes is most crucial since unexpected short-circuits across the membrane induces hot spots where thermal runaway may break out. Internal short-circuits are generally believed to occur by protrusions on the electrode surface either by unavoidable deposits of metallic impurities or by dendritic lithium growth during battery operation. Another cause is shrinkage of the separator membrane when exposed to heat. If separator membrane can be engineered to prevent the internal short-circuit, it will not be difficult to improve lithium-ion batteries' safety. Commonly the separators employed in lithium-ion batteries are made of polyethylene (PE) and/or polypropylene (PP). These materials have terrible limitations in preventing the fore-mentioned internal short-circuit between electrodes due to their poor dimensional stability and mechanical strength. In this study we have developed a novel separator membrane that possesses very high thermal and mechanical stability. The cells employing this separator provided noticeable safety improvement in the various abuse tests.

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Isomed 2000을 이용한 고등학교 테니스 선수 서브동작의 어깨관절 회전력과 근동원 양상 분석 (An Analysis of Shoulder Joint Torque and Muscle Pattern Duing Tennis Serve by Isokinetic Motions on Isomed 2000)

  • 김성섭;김의환;성영호;김태완;정재욱
    • 한국운동역학회지
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    • 제17권1호
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    • pp.61-68
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    • 2007
  • The purpose of this study was to analyze the shoulder joint torque and muscle pattern performing as Tennis serve by Isokinetic motions on Isomed 2000. The subject, who was 5 males Korean national high school tennis players. By analyzing the flexion/extension of the shoulder, the peak torque of the internal/external rotation motion(at 60,180 and 300 degree/sec) at peak torque degree, the weight, peak torque, and power. combined with the timing of the electrode of the attached trapezius and posterior deltoid at the three part. From the data analysis & discussion the following conclusions were drawn. When doing a shoulder extension, the peak torque can be widely seen at 60degree per second. However the degree may be different depending on angular velocity. When doing an internal rotation at 90degree abduction, peak torque per weight was seen at 60degree per second. The degree of peak torque was at 31.6-44.2 and peak power was faster when angular velocity was increased. The aspect of muscle pattern was seen more at the internal rotation in the 90degree abduction rather than the shoulder extension. However the angular velocity was not influenced by muscle mobilization(in order of anterior deltoid, posterior deltoid and trapezius. To properly apply the above conclusion, when tennis players serve it is better the elbow be impacted by the extension. when doing isokinetic motion it is better to increase angular velocity and improve muscle power. also the anterior deltoid amongst the shoulder muscle should be improved to develop serve speed.

몰드 변압기의 절연 진단을 위한 로고우스키형 부분방전 센서의 설계 및 제작 (Design and Fabrication of Rogowski-type Partial Discharge Sensor for Insulation Diagnosis of Cast-Resin Transformers)

  • 이경렬;김성욱;길경석
    • 한국전기전자재료학회논문지
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    • 제35권6호
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    • pp.594-602
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    • 2022
  • Cast-resin transformers are widely installed in various electrical power systems because of their low operating cost and low influence on external environmental factors. However, when they have an internal defect during the manufacturing process or operation, a partial discharge (PD) occurs, and eventually destroys the insulation. In this paper, a Rogowski-type PD sensor was studied to replace commercial PD sensors used for the insulation diagnosis of power apparatus. The proposed PD sensor was manufactured with four different types of PCB-based winding structures, and it was analyzed in terms of the detection characteristics for standard calibration pulses and the changes of the output voltage according to the distance. The output increased linearly in accordance with the applied discharge amount. It was confirmed that the hexagon structure sensor had the highest sensitivity, because the winding cross-sectional area of the sensor was larger than others. In addition, as the distance from the defect increased, the output voltage of the sensors decreased by 7.32% on average. It was also confirmed that the attenuation rate according to the distance decreased as the input discharge amount increased. For the application of this new type sensor, PD electrode system was designed to simulate the void defect. Waveforms and PRPD patterns measured by the proposed PD sensors at DIV and 120% of DIV were the same as the results measured by MPD 600 based on IEC 60270. The proposed PD sensors can be installed on the inner wall of the transformer tank by coating its surfaces with a non-conductive material; therefore, it is possible to detect internal defects more effectively at a closer distance from the defect than the conventional sensors.