• 제목/요약/키워드: panel temperature

검색결과 801건 처리시간 0.026초

복합재료 Body Panel의 고온열화 특성 (Material Properties Degradation of Composite Body Panel Exposed to High Temperature)

  • 변현중;남현욱;한경섭
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 추계학술대회논문집A
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    • pp.219-224
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    • 2000
  • A research for development of composite body panel is in progress for lightening tare. Low specific weight LPMC (Low pressure molding compound) has advantages such as lightweight and resistance to dent and corrosion. In this study, tensile, bending and impact tests for the LPMC and SPRC35 (High tension steel plate) were carried out and compared. Although mechanical properties of SPRC35 are better than the LPMC, the LPMC satisfies basic requirements for car body panel. The high temperature exposed LPMC were degraded due to fiber-matrix debonding and deterioration of resin.

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자동차 Instrument Panel에 사용된 PC/ABS계의 재활용 (Recycling of PC/ABS Blend Used in Instrument Panel of Automotive)

  • 이창형;정인권;이용무;옥성현;최형기
    • 공업화학
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    • 제10권1호
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    • pp.118-123
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    • 1999
  • 본 연구에서는 자동차의 instrument panel로부터 분리, 회수된 재생 PC/ABS계에 흡착되어 있는 PU foam이 가공온도조건에 따라 PC/ABS계의 모폴로지 및 기계적 물성에 미치는 영향을 조사함으로써 상용화제 첨가없이 PU의 열적성질을 이용한 모폴로지 제어에 의해 큰 폭의 물성저하를 막아 재생 PC/ABS를 자동차 라디에디터 그릴 소재로 적용하고자 하였다. 가공 온도조건에 따른 PU의 열적특성에 초점을 맞추어 고온 ($260^{\circ}C$) 및 저온 ($220^{\circ}C$)에서 재생PC/ABS와 신재 PC/ABS를 다양한 조성으로 용융 블렌드하여 고차구조 및 기계적 물성을 조사하였다. 신재 함량이 증가함에 따라 물성이 향상되었고, 고온 및 저온용융 블렌드물의 물성에는 큰 차이가 없었으나 충격강도는 고온용융 블렌드물이 월등히 우수하였다. 이것은 PU foam이 고온에서 높은 전단응력을 받아 보다 미세하고 균일하게 분산되었기 때문이라는 것을 발견했다.

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적외선 열화상을 이용한 건축외장재의 일사표면온도와 흡수율 추정에 관한 실험적 연구 (An Experimental Study on the Estimation of Sol-air Temperature and Absorptance in Building Exterior Materials by Using the Infrared Image)

  • 박사근;장길수;송민정;신 훈
    • KIEAE Journal
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    • 제6권4호
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    • pp.33-39
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    • 2006
  • This study aims to investigate the method to reduce the surface temperature caused by insolation. To achieve this goal, surface temperature of building is measured and the effects of exterior material's color and brilliance were checked with infrared imaging. And also, exterior material's absorptances due to outdoor surface heat transfer coefficients were measured. After surface temperature measurement of 37 specimen of 5 categories, the temperature is the highest on wood($53.62^{\circ}C$) and panel($52.05^{\circ}C$). Dryvit, stone, brick is the rating of order. For exterior material's absorptances, panel(0.883) and wood(0.868) were high and Dryvit, stone, brick follows wood and panel.

공간패널모형을 이용한 연안어업 생산량과 기후변화 요소의 관계에 대한 연구 (A Study on the Relationship Between the Catch of Coastal Fisheries and Climate Change Elements using Spatial Panel Model)

  • 김봉태;엄기혁;이준수;박혜진;육근형
    • 수산경영론집
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    • 제46권3호
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    • pp.63-72
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    • 2015
  • This study aims to empirically analyze the relationship between climate change elements and catch amount of coastal fisheries, which is predicted to be vulnerable to climate change since its business scale is too small and fishing ground is limited. Using panel data from 1974 to 2013 by region, we tested the relationship between the sea temperature, salinity and the coastal fisheries production. A spatial panel model was applied in order to reflect the spatial dependence of the ocean. The results indicated that while the upper(0-20m) sea temperature and salinity have no significant influence on the coastal fisheries production, the lower(30-50m) sea temperature has significant positive effects on it and, by extension, on the neighboring areas's production. Therefore, with sea temperature forecast data derived from climate change scenarios, it is expected that these results can be used to assess the future vulnerability to the climate change.

방폭 패널 컨디션 자동화 시스템(1) (Automation System of Explosion-Proof Panel Condition)

  • 황대현;최광일;배영철
    • 한국전자통신학회논문지
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    • 제15권2호
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    • pp.253-258
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    • 2020
  • 우리나라의 석유화학산업단지는 폭발성 가스와 가연성 가스로 인하여 언제나 폭발 위험성이 높다. 이러한 폭발을 방지하기 위한 방법으로 석유화학산업단지의 대부분 설비에 방폭 성능을 요구하고 있다. 방폭용으로 현재 사용하고 있는 제어기 패널은 패널의 내부와 외부의 압력(양압)과 온도를 일정하게 유지를 위해 외부에서 수동으로 공기를 주입하는 방식을 사용하고 있다. 이에 본 논문은 자동으로 온도를 제어할 수 있도록 패널 내부의 온도에 따라 가열과 냉각을 자동으로 수행하는 자동 온도조절기를 제안한다.

태양전지 온도 센싱만을 통한 태양광 발전시스템의 최적 운전전압에 관한 연구 (A Study on the Optimal Voltage for MPPT Obtained by only Surface's Temperature of Solar Cell)

  • Minwon Park;In-Keun Yi
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
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    • 제53권4호
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    • pp.269-275
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    • 2004
  • Photovoltaic(PV) system has been studied and watched with keen interest due to a clean and renewable power source. But, the output power of PV system is not only unstable but uncontrollable, because the maximum power point tracking (MPPT) of PV system is still hard with the tracking failure under the sudden fluctuation of irradiance. Authors suggest that the optimal voltage for MPPT be obtained by only solar cell temperature. Having an eye on that the optimal voltage point of solar cell is in proportion to its panel temperature, with operating the power converter whose operating point keeps its input voltage to the optimal voltage imagined by the surface's temperature of PV panel, the maximum power point becomes tenderly possible to be tracked. In order to confirm the availability of the proposed control scheme. And both control methods are simulated not only on the various angle of sampling time of switching control, but also with the real field weather condition. As the results of that, the conversion efficiency between PV panel and converter of the proposed control scheme was much better than that of the power comparison MPPT control, and what is better, the output voltage of PV panel was extremely in stable when the optimal voltage for MPPT is obtained by only solar cell temperature.

On thermally induced instability of FG-CNTRC cylindrical panels

  • Hashemi, Razieh;Mirzaei, Mostafa;Adlparvar, Mohammad R.
    • Advances in nano research
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    • 제10권1호
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    • pp.43-57
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    • 2021
  • In this study, thermally induced bifurcation buckling of shallow composite cylindrical panels reinforced with aligned single-walled carbon nanotubes is investigated. Distribution of carbon nanotubes across the thickness of the cylindrical panel as reinforcements may be either uniform or functionally graded. Thermo-mechanical properties of the matrix and reinforcements are considered to be temperature dependent. Properties of the cylindrical panel are obtained using a refined micromechanical approach which introduces the auxiliary parameters into the rule of mixtures. The governing equations are obtained by using the static version of the Hamilton principle based on the first-order shear deformation theory and considering the linear strain-displacement relation. An energy-based Ritz method and an iterative process are used to obtain the critical buckling temperature of composite cylindrical panel with temperature dependent material properties. In addition, the effect of various parameters such as the boundary conditions, different geometrical conditions, distribution pattern of CNTs across the thickness and their volume fraction are studied on the critical buckling temperature and buckled pattern of cylindrical panels. It is shown that FG-X type of CNT dispersion is the most influential type in thermal stability.

플라즈마 영상장치의 채널 사이에 놓인 전자모듈의 자연대류 열전달 해석 (Analysis of Natural Convection Heat Transfer from Electronic Modules in a Plasma Display Panel)

  • 최인수;박병덕;서주환
    • 한국산업융합학회 논문집
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    • 제7권1호
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    • pp.25-31
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    • 2004
  • The heat transfer characteristics of a plasma display panel has been investigated for cooling an electronic module. Hence, a two dimensional $\kappa-{\varepsilon}$ turbulent model was developed to predict the temperatures of the panel and module. The heat conduction was solve for the material region. To consider the mixed convection at the solid-fluid interfaces between the air and the panel and module, the energy equation was solved simultaneously. When the electronic module stands face to face with the panel, the temperatures of panel and module are lower than other arrangement due to the chimney effect. However the gap between the panel and module does not affect significantly the maximum temperature when the aspect ratio is less than 0.1. To maintain the maximum temperature of the module under a certain limit, the passage of air should be well designed by the optimal layout of electronic modules which have different heat emission.

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Buckling and vibration behavior of a non-uniformly heated isotropic cylindrical panel

  • Bhagata, Vinod S.;Pitchaimani, Jeyaraj;Murigendrappa, S.M.
    • Structural Engineering and Mechanics
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    • 제57권3호
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    • pp.543-567
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    • 2016
  • This study attempts to address the buckling and free vibration characteristics of an isotropic cylindrical panel subjected to non-uniform temperature rise using numerical approach. Finite element analysis has been used in the present study. The approach involves three parts, in the first part non-uniform temperature field is obtained using heat transfer analysis, in the second part, the stress field is computed under the thermal load using static condition and, the last part, the buckling and pre-stressed modal analysis are carried out to compute critical buckling temperature as well as natural frequencies and associated mode shapes. In the present study, the effect of non-uniform temperature field, heat sink temperatures and in-plane boundary constraints are considered. The relation between buckling temperature under uniform and non-uniform temperature fields has been established. Results revealed that decrease (Case (ii)) type temperature variation field influences the fundamental buckling mode shape significantly. Further, it is observed that natural frequencies under free vibration state, decreases as temperature increases. However, the reduction is significantly higher for the lowest natural frequency. It is also found that, with an increase in temperature, nodal and anti-nodal positions of free vibration mode shapes is shifting towards the location where the intensity of the heat source is high and structural stiffness is low.

외부화염에 의한 드라이비트의 소손패턴 연구 (A Study on the Damaged Pattern of Dryvit by External Flame)

  • 박영주;홍이표;이해평
    • 한국안전학회지
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    • 제30권6호
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    • pp.40-47
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    • 2015
  • In this study, temperature characteristics and fire damage form were analyzed to investigate flame spreading form and fire probability from ignition sources subject to drivit component materials which is finishing material in architecture. Ignition sources were limited to a gas torch and exterior panel board fire, and the size of the sample was manufacture in 30 cm length ${\times}$ 50 cm height ${\times}$ 5cm thickness size. Marble (inner wall) + 3 mm drivit (outer wall), marble (inner wall) + 4 mm plaster stone (outer wall), sandwich panel + 3 mm driver bit (outer wall), sandwich panel + 3 mm driver bit + insulation (outer wall), and gypsum board (inner wall) + 3 mm drivit (outer wall) were prepared for the sample. As result of the research for temperature characteristics, large temperature difference by each material was shown in $218^{\circ}C{\sim}995^{\circ}C$ at 30 seconds and $501^{\circ}C{\sim}1078^{\circ}C$ at 300 seconds. Especially when the inner wall was a plaster board, lowest temperature of $501^{\circ}C$ was shown at 300 seconds and marble inner wall showed the following lowest temperature of $900^{\circ}C$. Temperature rising over $1000^{\circ}C$ was shown in other materials. Regarding fire damage form, drivit or gypsum board outer wall parts exposed to fire showed combustion and carbonization to show calcination(breaking phenomenon) and influence of heat exposure was higher as calcination became more severe.