• Title/Summary/Keyword: Multi-coupled

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Electroplating process for the chip component external electrode

  • Lee, Jun-Ho
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2000.11a
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    • pp.1-2
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    • 2000
  • 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 onventional 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 thatbthe 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. 2H20 + e $\rightarrow$M/TEX> 20H + H2.. 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 there by resulting to bad plating condition.

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Identification of Pitfalls Related to the Analysis of Liquid Chromatography-Tandem Mass Spectrometry and Liquid Chromatography-Time of Flight Mass Spectrometry (액체크로마토그래프-질량분석기를 이용한 정성 및 정량 오류의 확인)

  • Kwon, Jin-Wook;Cho, Yoon-Jae;Rhee, Gyu-Seek
    • Korean Journal of Environmental Agriculture
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    • v.34 no.3
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    • pp.230-237
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    • 2015
  • BACKGROUND: To identify the sources of inaccuracy in LC/MS/MS methods used in the routine quantitation of small molecules are described and discussed. METHODS AND RESULTS: Various UPLC coupled to triple quadrupole mass spectrometer and time of flight (TOF) were used to identify the potential sources of inaccuracy and inducing the pitfalls of qualification and quntitation during the veterinary drug residue analysis. Some of stable isotope labelled veterinary drugs, which were used as internal standards, presented "cross-talk", regardless of manufactures of mass spectrometer and types of spectrometer. Group of sulfonamides also presented inaccuracy qualification and quantitation due to the multi-residue analytical method with the same fragment ions at the close retention times. CONCLUSION: The phenomena of "cross-talk" occurring between subsequently monitored transition from stable isotope labelled and isotope non-labelled authentic chemical were identified. To prevent errors and achieve more accurate data during the analysis of small molecules by LC/MS/MS SRM method, Followings should be taken care of and kept checking; purity and concentration of stable isotope as an internal standard, prevention of carry-over during the separation in column, minimizing the ion suppression by matrix effect, identification of retention time, precursor ion and product ion, and full knowledge of data processing including smoothing and peak integration.

솔라셀용 uC-Si:H 박막 증착공정을 위한 플라즈마 소스에 대한 고찰 및 multi-hole hollow cathode CCP에 대한 연구

  • Seo, Sang-Hun;Lee, Heon-Su;Lee, Yun-Seong;Jang, Hong-Yeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.409-409
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    • 2010
  • 솔라셀은 차세대 대체 에너지 소스로 최근 큰 각광을 받고 있다. 솔라셀의 제조에 있어 가장 중요한 공정은 마이크로 결정질 및 비결정질 실리콘(uC-Si:H and a-Si:H) 박막을 증착하는 PECVD (Plasma Enhanced CVD)공정이다. 현재까지 이 증착공정을 위한 플라즈마 소스로 CCP(Capacitively Coupled Plasma)가 주로 사용되어 왔다. 그러나, CCP를 플라즈마 소스를 사용한 경우 솔라셀 대량 생산 적용시 다른 방법들에 비해 긴 공정 시간이 해결해야 할 문제점으로 대두되었다. 본 발표에서는 솔라셀의 대량 생산을 위한 마이크로 결정질 실리콘 박막 증착에 있어 현 시점에서 해결되어야 할 문제점에 대해 고찰해 보고자 한다. 현재까지 이러한 문제점들을 해결하기 위해 적용되어 왔던 플라즈마 소스들을 나열하고 이러한 플라즈마 소스에 대한 특성 및 문제점들을 고찰한다. 또한, PECVD 공정상의 문제점을 해결하기 위한 플라즈마 조건을 플라즈마 벌크에서의 전자에너지 분포를 기준으로 제시하고자 한다. 솔라셀용 결정질 실리콘 박막 증착용 플라즈마 소스로 hollow cathode 방전이 가장 유력시되고 있다. 본 연구에서는 CCP 플라즈마에서 hollow cathode 방전시 발생되는 플라즈마 특성에 대한 기초 연구를 제시한다. 기초 연구를 위해 다양한 불활성 가스인 아르콘, 헬륨, 크립톤 가스에 13.56 MHz의 RF 파워를 인가하고 방전되는 플라즈마 밀도 변화를 관찰하였다. 특히, 다양한 hole diameter에서 발생되는 플라즈마 밀도의 변화를 기존 평면 CCP 플라즈마의 밀도에 비교하여 분석함으로써 hole diameter에 따른 효과를 관찰하였다. 이러한 결과는 PIC 시뮬레이션을 통해 얻은 전자에너지 분포함수를 바탕으로 메커니즘을 논의하고자 한다. 마지막으로 솔라셀용 PECVD공정을 위해 고밀도 플라즈마 소스의 필요성뿐 만 아니라 대면적 소스의 구현에 대한 문제점을 고찰하였다. 대면적 공정에서 가장 중요한 핵심 연구 이슈는 공정 균일도를 높이는 것이다. CCP 플라즈마 소스에서 전극의 크기가 대면적화 됨에 따라 발생되는 전자기파 효과에 의한 불균일도에 대해 RF 전자기장 시뮬레이션을 통해 확인하고, 균일도 확보를 위한 방안에 대한 논의하고자 한다.

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Microtensile bond strength of silorane-based composite specific adhesive system using different bonding strategies

  • Bastos, Laura Alves;Sousa, Ana Beatriz Silva;Drubi-Filho, Brahim;Pires-de-Souza, Fernanda de Carvalho Panzeri;Garcia, Lucas da Fonseca Roberti
    • Restorative Dentistry and Endodontics
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    • v.40 no.1
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    • pp.23-29
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    • 2015
  • Objectives: The aim of this study was to evaluate the effect of pre-etching on the bond strength of silorane-based composite specific adhesive system to dentin. Materials and Methods: Thirty human molars were randomly divided into 5 groups according to the different bonding strategies. For teeth restored with silorane-based composite (Filtek Silorane, 3M ESPE), the specific self-etching adhesive system (Adhesive System P90, 3M ESPE) was used with and without pre-etching (Pre-etching/Silorane and Silorane groups). Teeth restored with methacrylate based-composite (Filtek Z250, 3M ESPE) were hybridized with the two-step self-etching system (Clearfil SE Bond, Kuraray), with and without pre-etching (Pre-etching/Methacrylate and Methacrylate groups), or three-step adhesive system (Adper Scotchbond Multi-Purpose, 3M ESPE) (Three-step/Methacrylate group) (n = 6). The restored teeth were sectioned into stick-shaped test specimens ($1.0{\times}1.0mm$), and coupled to a universal test machine (0.5 mm/min) to perform microtensile testing. Results: Pre-etching/Methacrylate group presented the highest bond strength values, with significant difference from Silorane and Three-step/Methacrylate groups (p < 0.05). However, it was not significantly different from Pre-etching/Silorane and Methacrylate groups. Conclusions: Pre-etching increased bond strength of silorane-based composite specific adhesive system to dentin.

Hyper-resolution 1D-2D coupled urban inundation modelling using LiDAR and hybrid parallelization (하이브리드 병렬화 기반 초고해상도 1D-2D 도시침수 모의)

  • Lee, Seung-soo;Noh, Seong Jin;Lee, Junhak;Kawike, Kenji;Seo, Dong-Jun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.7-7
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    • 2018
  • 1차원 하수관로 해석 모형과 2차원 지표면 유출 해석 모형을 연계한 1D-2D 결합 도시침수 모델은 도시지역의 유출 현상과 침수 모의에 널리 이용되고 있다. 그러나 도시 지역의 복잡한 지형이 지표면 유출 흐름에 미치는 영향을 보다 자세히 파악하기 위해서는 보다 높은 해상도의 지형자료를 활용한 모의가 필요하다. 본 연구에서는 도시침수 해석을 위한 1D-2D 결합 하이브리드(Hybrid) 병렬화 코드(H12)를 개발하여 넓은 도시 유역에 대해서 고해상도 지형자료를 활용한 모의가 유역단위로 가능하도록 하였다. H12는 Open Multi-Processing(OpenMP)와 Message Passing Interface(MPI) 병렬 계산을 동시에 수행하여 매우 넓은 지역에 대해서도 도로의 형태를 확인 할 수 있는 수준의 고해상도 침수 해석 모의가 가능하다. 또한 도시지역의 복잡한 지형을 자세히 재현하고 계산의 효율을 높이기 위하여 격자세분화 기법이 적용되었다. H12의 적용성을 평가하기 위하여 미국 텍사스 알링턴 지역의 Johnson Creek 유역(${\sim}40km^2$)유역에 대한 시범 모의를 수행하였으며 도시유역의 지형을 표현하기 위하여 1m 해상도의 LiDAR자료를 사용하여 침수발생시 보다 자세한 유출수의 흐름을 해석할 수 있도록 하였다. 모의 결과 하이브리드 병렬 계산은 순차적 계산에 비하여 최고 79배 이상 빠른 계산속도 효율 향상을 보여주었으며, OpenMP나 MPI를 단독으로 사용하는 것에 비하여 더욱 효율적인 계산속도 효율 향상을 보여주었다.

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Comparative Analysis of Subsurface Estimation Ability and Applicability Based on Various Geostatistical Model (다양한 지구통계기법의 지하매질 예측능 및 적용성 비교연구)

  • Ahn, Jeongwoo;Jeong, Jina;Park, Eungyu
    • Journal of Soil and Groundwater Environment
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    • v.19 no.4
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    • pp.31-44
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    • 2014
  • In the present study, a few of recently developed geostatistical models are comparatively studied. The models are two-point statistics based sequential indicator simulation (SISIM) and generalized coupled Markov chain (GCMC), multi-point statistics single normal equation simulation (SNESIM), and object based model of FLUVSIM (fluvial simulation) that predicts structures of target object from the provided geometric information. Out of the models, SNESIM and FLUVSIM require additional information other than conditioning data such as training map and geometry, respectively, which generally claim demanding additional resources. For the comparative studies, three-dimensional fluvial reservoir model is developed considering the genetic information and the samples, as input data for the models, are acquired by mimicking realistic sampling (i.e. random sampling). For SNESIM and FLUVSIM, additional training map and the geometry data are synthesized based on the same information used for the objective model. For the comparisons of the predictabilities of the models, two different measures are employed. In the first measure, the ensemble probability maps of the models are developed from multiple realizations, which are compared in depth to the objective model. In the second measure, the developed realizations are converted to hydrogeologic properties and the groundwater flow simulation results are compared to that of the objective model. From the comparisons, it is found that the predictability of GCMC outperforms the other models in terms of the first measure. On the other hand, in terms of the second measure, the both predictabilities of GCMC and SNESIM are outstanding out of the considered models. The excellences of GCMC model in the comparisons may attribute to the incorporations of directional non-stationarity and the non-linear prediction structure. From the results, it is concluded that the various geostatistical models need to be comprehensively considered and comparatively analyzed for appropriate characterizations.

Modelling of effective irradiation swelling for inert matrix fuels

  • Zhang, Jing;Wang, Haoyu;Wei, Hongyang;Zhang, Jingyu;Tang, Changbing;Lu, Chuan;Huang, Chunlan;Ding, Shurong;Li, Yuanming
    • Nuclear Engineering and Technology
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    • v.53 no.8
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    • pp.2616-2628
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    • 2021
  • The results of effective irradiation swelling in a wide range of burnup levels are numerically obtained for an inert matrix fuel, which are verified with DART model. The fission gas swelling of fuel particles is calculated with a mechanistic model, which depends on the external hydrostatic pressure. Additionally, irradiation and thermal creep effects are included in the inert matrix. The effects of matrix creep strains, external hydrostatic pressure and temperature on the effective irradiation swelling are investigated. The research results indicate that (1) the above effects are coupled with each other; (2) the matrix creep effects at high temperatures should be involved; and (3) ranged from 0 to 300 MPa, a remarkable dependence of external hydrostatic pressure can be found. Furthermore, an explicit multi-variable mathematic model is established for the effective irradiation swelling, as a function of particle volume fraction, temperature, external hydrostatic pressure and fuel particle fission density, which can well reproduce the finite element results. The mathematic model for the current volume fraction of fuel particles can help establish other effective performance models.

Three-D core multiphysics for simulating passively autonomous power maneuvering in soluble-boron-free SMR with helical steam generator

  • Abdelhameed, Ahmed Amin E.;Chaudri, Khurrum Saleem;Kim, Yonghee
    • Nuclear Engineering and Technology
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    • v.52 no.12
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    • pp.2699-2708
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    • 2020
  • Helical-coil steam generator (HCSG) technology is a major design candidate for small modular reactors due to its compactness and capability to produce superheated steam with high generation efficiency. In this paper, we investigate the feasibility of the passively autonomous power maneuvering by coupling the 3-D transient multi-physics of a soluble-boron-free (SBF) core with a time-dependent HCSG model. The predictor corrector quasi-static method was used to reduce the cost of the transient 3-D neutronic solution. In the numerical system simulations, the feedwater flow rate to the secondary of the HCSGs is adjusted to extract the demanded power from the primary loop. This varies the coolant temperature at the inlet of the SBF core, which governs the passively autonomous power maneuvering due to the strongly negative coolant reactivity feedback. Here, we simulate a 100-50-100 load-follow operation with a 5%/minute power ramping speed to investigate the feasibility of the passively autonomous load-follow in a 450 MWth SBF PWR. In addition, the passively autonomous frequency control operation is investigated. The various system models are coupled, and they are solved by an in-house Fortran-95 code. The results of this work demonstrate constant steam temperature in the secondary side and limited variation of the primary coolant temperature. Meanwhile, the variations of the core axial shape index and the core power peaking are sufficiently small.

Development of a Sensitive Analytical Method of Polynemoraline C Using LC-MS/MS and Its Application to a Pharmacokinetic Study in Mice

  • Pang, Minyeong;Lee, Jaehyeok;Jeon, Ji-Hyeon;Song, Im-Sook;Han, Young Taek;Choi, Min-Koo
    • Mass Spectrometry Letters
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    • v.12 no.4
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    • pp.200-205
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    • 2021
  • Polynemoraline C, a pyridocoumarin alkaloid, exhibits anticholinergic, anti-inflammatory, antitumor, and antimicrobial activities. A sensitive analytical method of polynemoraline C in mouse plasma was developed and validated using liquid chromatography-tandem mass spectrometry (LC-MS/MS). Polynemoraline C and 13C-caffeine (internal standard) in mouse plasma were extracted using a liquid-liquid extraction method coupled with ethyl acetate. This extraction method resulted in high and reproducible extraction recovery in the range of 73.49%-77.31% with no interfering peaks around the peak retention time of polynemoraline C and 13C-caffeine. The standard calibration curves for polynemoraline C were linear over the range of 0.5-200 ng/mL with r2 > 0.985. The accuracy, precision, and the stability of the data were within acceptable limits on the FDA guideline. After intravenous and oral administration of polynemoraline C at doses of 5 and 30 mg/kg, respectively, the present method was successfully applied to the pharmacokinetic study of polynemoraline C. Polynemoraline C in mouse plasma showed a multi-exponential elimination pattern with a high volume of distribution values. This compound's absolute oral bioavailability was found to be 17.0%. Polynemoraline C's newly developed LC-MS/MS method can be used for further studies on the efficacy, toxicity, and biopharmaceutics of polynemoraline C, as well as its pharmacokinetic studies.

Analysis of Integration Factor Effect in Dynamic-Structure-Fluid-Heat Coupled Time Transient Staggered Integration Scheme for Morton Effect Analysis (모튼이펙트 해석을 위한 동역학-구조-유체-열전달 시간과도응답 연성해석 시차적분법에서 시상수 효과 분석)

  • Suh, Junho;Jeung, Sung-Hwa
    • Tribology and Lubricants
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    • v.35 no.1
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    • pp.77-86
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    • 2019
  • The present study focuses on the effect of staggered integration factor (SIF) on Morton effect simulation results. The Morton effect is a synchronous rotordynamic instability problem caused by the temperature differential across the journal in fluid film bearings. Convection and conduction of heat in the thin film displaces the hot spot, which is the hottest circumferential position in the thin film, from -20 to 40 degrees ahead of the high spot, where the minimum film clearance is experienced. The temperature differential across the journal causes a bending moment and the corresponding thermal bow in the rotating frame acts like a distributed synchronous excitation in the fixed frame. This thermal bow may cause increased vibrations and continued growth of the synchronous orbit into a limit cycle. The SIF is developed assuming that the response of the rotor-lubricant-bearing dynamic system is much quicker than that of the bearing-journal thermal system, and it is defined as the ratio between the simulation time of the thermal system and the rotor-spinning period. The use of the SIF is unavoidable for efficient computing. The value of the SIF is chosen empirically by the software users as a value between 100 and 400. However, the effect of the SIF on Morton effect simulation results has not been investigated. This research produces simulation results with different values of SIF.