• 제목/요약/키워드: Chip Flow

검색결과 315건 처리시간 0.025초

수치해석을 이용한 패시브 마이크로 믹서의 성능평가 (Performance Assessment of Passive Micromixer using Numerical Analysis)

  • 이정익;김철규
    • 한국융합학회논문지
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    • 제9권10호
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    • pp.237-242
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    • 2018
  • 마이크로 믹서는 랩-온-어-칩이나 마이크로 유체 기기의 하나의 구성품으로 두 가지의 화학 물질을 혼합(융합)하는 장치이다. 본 연구는 다양한 형상의 패시브 마이크로 믹서의 성능을 평가하는 것을 목적으로 한다. 다양한 형상의 마이크로 믹서는 총 6가지의 형상을 비교하였고, 서로 동일한 수력 직경을 갖도록 3차원 모델링하였다. 내부 혼합 유동을 전산모사하기 위해여 상용 유동해석 프로그램인 ANSYS Fluent를 사용하였다. 수치해석 방법은 본 논문에 자세하게 기술하였다. 마이크로 믹서의 성능 평가는 혼합 지수와 압력 강하로 비교하였고, 결론적으로 CDM-8T은 합리적인 혼합성능과 상대적으로 낮은 압력 강하를 갖는 것으로 나타났다.

고속 동기 탭핑에서의 절삭 특성에 관한 연구 (Study of Cutting Characteristics in High Speed Synchronized Tapping)

  • 정용수;이돈진;김선호;안중환
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 추계학술대회 논문집
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    • pp.304-307
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    • 2002
  • High speed machining was accomplished. through the technological advances which covers the whole field of mechanical industry. But tapping have many troubles because of its complicate cutting mechanism, for example. tool damage, chip elimination and synchronization between spindle rotation and feed motion. But High speed tapping is so important that it marches in step with the flow of the times and make improvement in the productivity. In this paper we analyze mechanism of high speed synchronized tapping with the signal of tapping torque and spindle speed obtained through the newly developed high speed tapping machine(NTT-30B). We made an experiment with this machine on condition of various speed from 1000rpm to 10000rpm. As one complete thread is performed through the whole chamfer cutting, cutting torque increases highly in chamfer cutting, but smoothly in full thread cutting functioning of the threads guide. And the size of cutting torque according to spindle speed(rpm) was not enough of a difference to be conspicuous.

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Development of a 250-W high-power modular LED fish-attracting lamp by evaluation of its thermal characteristics

  • Lee, Donggil;Lee, Kyounghoon;Pyeon, Yongbeom;Kim, Seonghun;Bae, Jaehyun
    • 수산해양기술연구
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    • 제51권2호
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    • pp.163-170
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    • 2015
  • Recently LED fish-attracting lamps have been more widely used in fisheries as low-cost and high-efficiency fishing gear, and development of long-life high-efficiency lamps is required through the design of LED packages to optimize heat resistance. This study developed an improved LED fish-attracting lamp with excellent heat performance, which was verified using a numerical model. Heat-resistance design factors such as the heat-radiation fin shape, PCB type, and LED chip count were investigated and optimized. Comparison with a commercial 180-W LED fishing lamp showed that the increase in initial temperature was 40% higher than that of the surrounding LED chip because of design errors in contact thermal resistance. The 250-W LED lamp developed in this study has a characteristic with thermal rising in linearly stable according to the heat source. In addition, luminance efficiency was improved by 20-65% by using flow-visualization simulation. A decrease of 45% in total power consumption with a fuel-cost reduction of over 55% can be expected when using these optimized heat release design factors.

가변구조를 갖는 순차 예측 방법을 이용한 m 계열 신호의 고속 포착 (Rapid Acquisition of m-sequence Signals by Sequential Estimation with Flexible Structure)

  • 현광민;박상규
    • 한국통신학회논문지
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    • 제27권7B호
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    • pp.664-672
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    • 2002
  • 본 논문은 고속으로 m 계열 신호를 포착하기 위하여 가변 구조를 갖는 순차 예측 포착 시스템을 제안하고 그 성능을 분석한 것이다. 고속 포착을 위해 예측기 내부 레지스터들의 초기값으로 저장되는 수신 PN 칩(chip)들 중에 1개의 오류를 가진 경우 다수의 국부 PN 부호 발생기를 이용하여 이 오류를 정정하고 부호 포착 성능을 개선한다. 제안된 시스템에서 예측 재생된 각각의 국부 PN 부호들과 수신된 PN 부호간의 해밍 거리는 설정된 경계값과 비교되어 바른 경로일 가능성이 높은 경로 선택과 부호 포착 선언에 사용된다. 시스템의 성능을 확인하기 위해 신호 흐름도 기법을 적용하여 검출 확률과 오 경보 확률에 의해 결정되는 평균 포착 시간을 계산한다. 본 논문에서 제안한 포착 시스템은 PN 부호 포착 시스템에 일반적으로 널리 사용되는 정합 필터를 가변 구조로 변형하여 사용함으로써 효율적이고 고속으로 부호 포착을 수행할 수 있음을 보였다.

열공압 방식으로 구동되는 매세 유체 제어 시스템의 제작 및 특성 (Fabrications and Characteristics of Microfluidic Systems Actuated by Thermopneumatic Method)

  • 유종철;강치중;김용상
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제55권2호
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    • pp.88-92
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    • 2006
  • We present a microfluidic system with microvalves and a micropump that are easily integrated on the same substrate using the same fabrication process. The fabricated microfluidic system is suitable for use as a disposable device and its characteristics are optimized for use as a micro chemical analysis system (micro-TAS) and lab-on-a-chip. The system is realized by means of a polydimethylsiloxane (PDMS)-glass chip and an indium tin oxide (ITO) heater. We demonstrate the integration of the micropump and microvalves using a new thermopneumatic-actuated PDMS-based microfluidic system. A maximum pumping rate of about 730 nl/min is observed at. a duty ratio of 1 $\%$ and a frequency of 2 Hz with a fixed power of 500 mW. The measured power at flow cut-off is 500 mW for the microvalve whose channel width, depth and membrane thickness were 400 $\mu$m, 110 $\mu$m, and 320 $\mu$m, respectively.

Thermal Analysis and Optimization of 6.4 W Si-Based Multichip LED Packaged Module

  • Chuluunbaatar, Zorigt;Kim, Nam Young
    • 한국통신학회논문지
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    • 제39C권3호
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    • pp.234-238
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    • 2014
  • Multichip packaging was achieved the best solution to significantly reduce thermal resistance at the same time, to increase luminance intensity in LEDs packaging application. For the packaging, thermal spreading resistance is an important parameter to get influence the total thermal performance of LEDs. In this study, silicon-based multichip light emitting diodes (LEDs) packaged module has been examined for thermal characteristics in several parameters. Compared to the general conventional single LED packaged chip module, multichip LED packaged module has many advantages of low cost, low density, small size, and low thermal resistance. This analyzed module is comprised of multichip LED array, which consists of 32 LED packaged chips with supplement power of 0.2 W at every single chip. To realize the extent of thermal distribution, the computer-aided design model of 6.4 W Si-based multichip LED module was designed and was performed by the simulation basis of actual fabrication flow. The impact of thermal distribution is analyzed in alternative ways both optimizing numbers of fins and the thickness of that heatsink. In addition, a thermal resistance model was designed and derived from analytical theory. The optimum simulation results satisfies the expectations of the design goal and the measurement of IR camera results. tart after striking space key 2 times.

Development of the Microfluidic Device to Regulate Shear Stress Gradients

  • Kim, Tae Hyeon;Lee, Jong Min;Ahrberg, Christian D.;Chung, Bong Geun
    • BioChip Journal
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    • 제12권4호
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    • pp.294-303
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    • 2018
  • Shear stress occurs in flowing liquids, especially at the interface of a flowing liquid and a stationary solid phase. Thus, it occurs inside the artery system of the human body, where it is responsible for a number of biological functions. The shear stress level generally remains less than $70dyne/cm^2$ in the whole circulatory system, but in the stenotic arteries, which are constricted by 95%, a shear stress greater than $1,000dyne/cm^2$ can be reached. Methods of researching the effects of shear stress on cells are of large interest to understand these processes. Here, we show the development of a microfluidic device for generating shear stress gradients. The performance of the shear stress gradient generator was theoretically simulated prior to experiments. Through simple manipulations of the liquid flow, the shape and magnitude of the shear stress gradients can be manipulated. Our microfluidic device consisted of five portions divided by arrays of micropillars. The generated shear stress gradient has five distinct levels at 8.38, 6.55, 4.42, 2.97, and $2.24dyne/cm^2$. Thereafter, an application of the microfluidic device was demonstrated testing the effect of shear stress on human umbilical vein endothelial cells.

전자부품의 방열방향에 따른 접촉열전도 특성 (Characterization of a Thermal Interface Material with Heat Spreader)

  • 김정균;;이선규
    • 한국정밀공학회지
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    • 제27권1호
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    • pp.91-98
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    • 2010
  • The increasing of power and processing speed and miniaturization of central processor unit (CPU) used in electronics equipment requires better performing thermal management systems. A typical thermal management package consists of thermal interfaces, heat dissipaters, and external cooling systems. There have been a number of experimental techniques and procedures for estimating thermal conductivity of thin, compressible thermal interface material (TIM). The TIM performance is affected by many factors and thus TIM should be evaluated under specified application conditions. In compact packaging of electronic equipment the chip is interfaced with a thin heat spreader. As the package is made thinner, the coupling between heat flow through TIM and that in the heat spreader becomes stronger. Thus, a TIM characterization system for considering the heat spreader effect is proposed and demonstrated in detail in this paper. The TIM test apparatus developed based on ASTM D-5470 standard for thermal interface resistance measurement of high performance TIM, including the precise measurement of changes in in-situ materials thickness. Thermal impedances are measured and compared for different directions of heat dissipation. The measurement of the TIM under the practical conditions can thus be used as the thermal criteria for the TIM selection.

암모기 흡혈과정에 대한 실험적 연구 (Experimental research on blood sucking phenomena of a female mosquito)

  • 김보흠;이정엽;이상준
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년도 춘계학술대회논문집
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    • pp.105-106
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    • 2008
  • As a carrier of malaria and sneak of blood, mosquitoes are an unpleasant insect. However, there are several unknown natural secretes related with mosquitoes. Among them, we focused on the blood sucking process of a female mosquito. The main objective of this study is to understand the mosquito's blood sucking mechanism that can be used to resolve the problem encountered in the injection or transport of infinitesimal biological fluids in a micro-chip. At first, the velocity fields of blood-sucking flow in a proboscis were measured using a micro-particle image velocimetry (PIV) technique. The velocity signals of flow in the proboscis show periodic variation. This seems to be resulted from the beating of the pharyngeal pump which works as driving power. To analyze the pumping mechanism, the temporal variation of the pharyngeal pump was visualized using the synchrotron X-ray micro-imaging technique. The volume variation was estimated by the help of digital image processing techniques. Once the main mechanism of blood sucking process was found, a effective micro-pumping system with high efficiency would be developed in near future.

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Micro-imaging techniques for evaluation of plastic microfluidic chip

  • Kim, Jung-Kyung;Hyunwoo Bang;Lee, Yongku;Chanil Chung;Yoo, Jung-Yul;Yang, Sang-Sik;Kim, Jin-Seung;Park, Sekwang;Chang, Jun-Keun
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제1권4호
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    • pp.239-247
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    • 2001
  • The Fluorescence-Activated Cell Sorter (FACS) is a well-established instrument used for identifying, enumerating, classifying and sorting cells by their physical and optical characteristics. For a miniaturized FACS device, a disposable plastic microchip has been developed which has a hydrodynamic focusing chamber using soft lithography. As the characteristics of the spatially confined sample stream have an effect on sample throughput, detection efficiency, and the accuracy of cell sorting, systematic fluid dynamic studies are required. Flow visualization is conducted with a laser scanning confocal microscopy (LSCM), and three-dimensional flow structure of the focused sample stream is reconstructed from 2D slices acquired at $1\mutextrm{m}$ intervals in depth. It was observed that the flow structure in the focusing chamber is skewed by unsymmetrical velocity profile arising from trapezoidal cross section of the microchannel. For a quantitative analysis of a microscopic flow structure, Confocal Micro-PIV system has been developed to evaluate the accelerated flow field in the focusing chamber. This study proposes a method which defines the depth of the measurement volume using a detection pinhole. The trajectories of red blood cells (RBCs) and their interactions with surrounding flow field in the squeezed sample stream are evaluated to find optimal shape of the focusing chamber and fluid manipulation scheme for stable cell transporting, efficient detection, and sorting

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