• Title/Summary/Keyword: 열전도 패드

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Thermal Characteristics Investigation of 6U CubeSat's Deployable Solar Panel Employing Thermal Gap Pad (열전도 패드가 적용된 6U 큐브위성용 태양전지판의 열적 특성 분석)

  • Kim, Hye-In;Kim, Hong-Rae;Oh, Hyun-Ung
    • Journal of Aerospace System Engineering
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    • v.14 no.3
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    • pp.51-59
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    • 2020
  • In the case of cubesat, a PCB-based deployable solar panel advantageous in terms of weight reduction and electrical circuit design is widely used considering the limited weight and volume of satellites. However, because of the low thermal conductivity of PCB, there is a limit relative to heat dissipation. In this paper, the thermal gap pad is applied to the contact between the PCB-based solar panel and the aluminum stiffener mounted on the outside of the panel. Thus, the heat transfer from the solar cell to the rear side of the panel is facilitated. It maximizes the heat dissipation performance while maintaining the merits of PCB panel, and thus, it is possible to improve the power generation efficiency from reducing the temperature of the solar cell. The effectiveness of the thermal design of the 6U cubesat's deployable solar panel using the thermal gap pad has been verified through on-orbit thermal analysis based on the results, compared with the conventional PCB-based solar panel.

Study on the composites structure to improve thermal problems of multi-layered ceramic (적층 세라믹 기판의 열문제 향상을 위한 복합 구조 연구)

  • Lee, W.S.;Yoo, Y.C.;Kim, C.K.;Park, J.C.
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.05d
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    • pp.119-121
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    • 2003
  • 열을 발생하는 부품에 있어서 효과적으로 열방출 향상시키는 것은 부품의 신뢰성을 위해 중요한 사항이며, LTCC와 같은 고밀도 회로기판을 설계하는데 있어서 필수적으로 고려할 사항이다. 본 연구에서는 열전달을 향상시키기 위한 구조를 설계하였다. 또한, 열전달 효과를 조사하기 위해서 LTCC 기판 내에 열 비아 및 패드를 위치시킨 기판을 제작하였다. Laser Flash Method를 통해 재료의 열전도도 분석을 수행 하였다. 열비아 및 열방출을 위한 패드로 구성된 LTCC 기판의 열전도 특성은 순수 Ag 재료의 44%인 103 W/mK 특성 값을 나타내었다.

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A Study on the Thermal Behaviour of Via Design in the Ceramic Package (세라믹 패키지 내에서 비아에 따른 열적 거동에 관한 연구)

  • 이우성;고영우;유찬세;김경철;박종철
    • Journal of the Microelectronics and Packaging Society
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    • v.10 no.1
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    • pp.39-43
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    • 2003
  • Thermal management is very important for the success of high density circuit design in LTCC. In this paper, LTCC substrates containing thermal via and pad were fabricated in order to study the influence of the thermal dissipation. To realize the accurate thermal analysis for structure design, a series of simple thermal conductivity measurement by laser flash method and parametric numerical analysis have been carried out. The LTCC substrate including via and Ag pad has good thermal conductivity over 103 W/mK which is 44% value of pure Ag material. Thermal behaviors with via arrays, size and density in the LTCC substrate were studied by numerical method.

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A Three Dimensional Thermohydrodynamic Analysis of Large Tilting Pad Journal Bearings (대형 틸팅패드 저어널 베어링에 대한 3차원 열유체해석)

  • 하현천;김경웅
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 1992.11a
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    • pp.13-18
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    • 1992
  • 대형 틸팅패드 저어널베어링은 고속안정성 특성이 우수한 베어링으로서 시스템의 안정성이 매우 중요시되는 터빈발전기 등 대형 고속 회전기계에 많이 사용되고 있다. 그런데 이들 대형 저어널베어링에서는 유막의 온도상승이 매우 많고, 유체의 흐름이 거의 난류영역에 이르기 때문에 베어링의 운전특성을 정확하게 예측하기가 어려운 실정이다. Hopf & Schuler는 대형 틸팅패드 저어널베어링에 대한 실험적 연구에서 유동상태에 따라 베어링의 온도분포가 서로 달라진다고 발표하였다. 대형 틸팅패드 저어널베어링은 구조적으로 유동상태가 복잡할 뿐만 아니라 계산과정도 까다로운 편이어서 온도상승과 난류를 고려하여 엄밀하게 운전특성을 예측한 연구는 거의 없다. 따라서 본 연구에서는 대형 틸팅패드 저어널베어리으이 운전특성을 보다 엄밀하게 예측하기 위하여 3차원 적으로 유막의 점도변화 및 패드에서의 열전달을 고려하고, 와점성계수를 이용한 난류윤활이론을 사용하여 유막의 온도상승 및 난류가 베어링의 온도분포, 부하능력, 마찰손실 등의 운전특성에 미치는 영햐을 보다 엄밀하게 제시하고자 한다.

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Design Optimization of Bracket for Wear Sensor of Automobile Brake Pads Based on Dynamic Kriging Surrogate Model (자동차 브레이크 패드 마모량 측정센서 브라켓의 다이나믹크리깅 대리모델 기반 설계최적화)

  • Jun-Yeong Jeong;Jung Joo Yoo;Kyung Seok Byun;Hyunkyoo Cho
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.37 no.2
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    • pp.95-101
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    • 2024
  • This paper introduces an optimized design for a sensor bracket used to measure the wear amount of an automobile brake pad, based on a dynamic kriging surrogate model. During testing, the temperature of the brake pad can increase beyond 600℃, which often causes sensor malfunction. Therefore, it is essential to optimize the shape of the sensor bracket to minimize heat transfer. To reduce the computational cost of the optimization, the heat-transfer simulation is replaced by a dynamic kriging surrogate model. Dynamic kriging utilizes the best combination of correlation and basis functions and constructs an accurate surrogate model. Following optimization, the temperature of the sensor position decreases by 7.57%. The results from the surrogate model under optimum conditions are verified by a heat-transfer simulation, and the design optimization using a surrogate model is found to be effective.

Analysis of Steady Heat Conduction for Rubber Pads of a Tank Track Subjected to Dynamic Loading (동적하중을 받는 궤도차량 고무패드의 정상 열전도 해석)

  • Kim, Hyung-Je;Kim, Byung-Tak
    • Elastomers and Composites
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    • v.36 no.3
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    • pp.153-161
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    • 2001
  • The rubber pads era tank which undergo dynamic deformations with the sufficient amplitudes and frequencies lead to a considerable internal temperature rise due to the heat generation. The heat generation which is dependent on the viscoelastic characteristics or a rubber is due to the conversion of partial mechanical energy into thermal energy identical to the area oi hysteresis loop. Heat generation without adequate heat dissipation leads to heat build-up and the excessive temperature rite exerts a bad influence upon the performance and the life of rubber products. In this paper, temperature distributions of the rubber pads of a tank track subjected to dynamic loads are obtained under the assumption of the steady state. Heat generation rates used in this finite element analysis are acquired through experiments and the computed temperature fields are displayed in isothermal contour regions.

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A Convergent Study on Heat Transfer at Brake Disc of Electric Kickboard (전동킥보드 브레이크 디스크의 열전달에 관한 융합 연구)

  • Choi, Kye-Kwang;Cho, Jae-Ung
    • Journal of the Korea Convergence Society
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    • v.11 no.11
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    • pp.233-237
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    • 2020
  • In this study, the thermal analysis on the brake disc of electric kickboard was analyzed. The different heat is transmitted depending on the pad contact surface of brake disc. The trend that the temperature decreases at the part away from the contact surface was almost constant. And model A showed a slightly lower temperature distribution than model B. Model A has a maximum equivalent stress of 7% higher than model B. By being applied with the higher heat transfer above the contact surface, it is thought that model B has a greater strength than model A if the design takes into account the corner of the brake disc. If this study result is utilized to the design of electric kickboard, the design of brake disc with better strength is considered to be established. The durability of brake against the heat can be evaluated by applying this study result to the brake disc of electric kickboard. And it is seen that the result can be the design of brake with strength and the aesthetic convergence.

Design of a Thermal Energy Harvesting Circuit With MPPT Control (MPPT 기능을 갖는 열전 에너지 하베스팅 회로)

  • Kim, Su-jin;Park, Kum-young;Yoon, Eun-jung;Oh, Won-seok;Yu, chong-gun
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2012.10a
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    • pp.255-258
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    • 2012
  • In this paper, with a thermoelectric device using the seebeck effect which generates electromotive force by temperature difference generates electric energy an energy harvesting circuit using MPPT(Maximun Power Point Traking) control is designed. After periodically sampling the open voltage of the thermoelectric device, the 1/2 voltage of open voltage which in a maximum power point is maintained through MPPT control circuit and harvested energy from thermoelectric device is delivered to load through a switch. The proposed thermal energy harvesting circuit is designed with $0.35{\mu}m$ CMOS process and the chip area excluding pads is $1168.7{\mu}m{\times}541.3{\mu}m$.

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디스크 로터의 형상에 따른 차량용 브레이크 시스템의 성능 연구

  • Choe, Dong-Gwon;Jo, Hwang-Gi;Kim, Yun-Ho;Yu, Su-Hwan;Hwang, Seon-Pil
    • Proceeding of EDISON Challenge
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    • 2017.03a
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    • pp.351-357
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    • 2017
  • 차량용 브레이크의 성능은 브레이크 디스크 로터의 냉각 성능과 밀접한 관련이 있다. 냉각 성능 향상을 위해 디스크 로터에 구멍을 뚫거나 홈을 깎아내어 열 전달면을 극대화 시키거나 열 전도도가 높은 재료에 대한 연구가 활발하게 진행되고 있다. 본 연구에서는 각각 형상이 다른 디스크 브레이크 시스템의 방열 및 제동 성능, 패드 압력에 대한 응력을 분석하고 온도장 근사 및 열전도 해석 프로그램(Heat_transfer, KAIST, EDISON)과 Elastic-Plastic Analysis SW(CSD_EPLAST, 서울과학기술대학교, EDISON) 및 ABAQUS를 이용해 각각의 냉각 성능 및 응력 분포를 비교 분석한다.

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Performance of Tilting Pad Journal Bearings with Different Thermal Boundary Conditions (열 경계 조건이 다른 틸팅패드저널베어링의 성능)

  • Suh, Junho;Hwang, Cheolho
    • Tribology and Lubricants
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    • v.37 no.1
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    • pp.14-24
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    • 2021
  • This study shows the effect of the thermal boundary condition around the tilting pad journal bearing on the static and dynamic characteristics of the bearing through a high-precision numerical model. In many cases, it is very difficult to predict or measure the exact thermal boundary conditions around bearings at the operating site of a turbomachine, not even in a laboratory. The purpose of this study is not to predict the thermal boundary conditions around the bearing, but to find out how the performance of the bearing changes under different thermal boundary conditions. Lubricating oil, bearing pads and shafts were modeled in three dimensions using the finite element method, and the heat transfer between these three elements and the resulting thermal deformation were considered. The Generalized Reynolds equation and three-dimensional energy equation that can take into account the viscosity change in the direction of the film thickness are connected and analyzed by the relationship between viscosity and temperature. The numerical model was written in in-house code using MATLAB, and a parallel processing algorithm was used to improve the analysis speed. Constant temperature and convection temperature conditions are used as the thermal boundary conditions. Notably, the conditions around the bearing pad, rather than the temperature boundary conditions around the shaft, have a greater influence on the performance changes of the bearing.