• Title/Summary/Keyword: 승온시간

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Effect of Heating Rate and Keeping Time at Maximum Temperature on the Properties of Woodceramics Made from Thinned Logs (승온속도 및 최고온도 유지시간이 간벌재로 제조된 우드세라믹의 성질에 미치는 영향)

  • Oh, Seung-Won;Byeon, Hee-Seop
    • Journal of the Korean Wood Science and Technology
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    • v.33 no.3 s.131
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    • pp.38-44
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    • 2005
  • This research investigated the variation of density, the weight loss, dimensional shrinkage and heat conduction by the heating rate and keeping time at maximum temperature of woodceramics, when sawdust boards made from thinned logs of Pinus densiflora, Larix kaemferi and Pinus koraiensis were impregnated with phenol-formaldehyde resin, and then were formed by heating rate ($2^{\circ}C/min{\sim}6^{\circ}C/min$) and keeping time at maximum temperature (1~5 h). As the heating rate increased, the density and thickness shrinkage decreased, but weight loss and linear shrinkage increased. The more the keeping time at maximum temperature, the greater the linear shrinkage and thickness shrinkage. The heating conduction was superior at the heating rate is $2^{\circ}C/min$ and the keeping time at maximum temperature of 2 hs.

A Changes in Surface Temperature of Woodceramics Made from Pinus densiflora S. et. Z. - Effect of Heating Rate and Keeping Time at Maximum Temperature - (소나무로 제조된 우드세라믹의 표면온도변화 - 승온속도 및 최고온도에서 유지시간의 영향 -)

  • Oh, Seung Won
    • Journal of the Korean Wood Science and Technology
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    • v.35 no.3
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    • pp.22-28
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    • 2007
  • Using woodceramics made from sawdust board of pine thinning logs, changes in surface temperature were investigated, by the heating rate and keeping time at maximum temperature. The heating rate of $2^{\circ}C/min$ and keeping time at maximum temperature 1 hour, were the highest in surface temperature. Also, it was found that woodcermics maintained heat for a long time because the descending velocity of their surface temperature was slower than that of the heater.

A study on the Temperature Profile with combustion conditions change for the Optimum drive of Plate type Hydrogen Generation Sytem (평판형 수소생산시스템의 최적 운전조건을 위한 연소조건별 분위기 온도 연구)

  • Heo, Su-Bin;Park, Jae-Min;Yoon, Bong-Seock;Lee, Do-Hyung
    • Journal of Advanced Marine Engineering and Technology
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    • v.36 no.2
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    • pp.238-243
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    • 2012
  • The purpose of this study is to search the temperature-rise time conditions for adequate reforming temperature region of hydrogen generation system. And we measured theexhaust gas at the exit of that system in order to know the combustion state of hydrogen generation system's combustor. We found the optimum condition of heat supply and temperature-rise time at well burned state. And the results were nearly same when the reactants were entered to each reactors. We will further consider the effects of temperature change near the exothermic reactors and find out hydrogen yield through reforming experiment.

Prediction of Heat-Up Time of the Glass Plate by IR Heaters in an LCD-Panel Cleaning Process (LCD 패널 세척공정에서 원적외선 히터에 의한 유리기판 승온시간 예측)

  • Kim, Yun-Ho;Ji, Tae-Ho;Kim, Seo-Young;Rhee, Gwang-Hoon
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.18 no.6
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    • pp.526-533
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    • 2006
  • The prediction of heat-up time of an LCD glass plate in LCD glass pre-treatment process has been implemented in the present study. Firstly, the analytical solution for one-dimensional radiation heat transfer from IR heaters to a LCD glass plate is obtained. When the surface temperature of the IR heaters is set at 473 K, the heat-up time of LCD glass to averaged temperature of 383K is 28 seconds. In addition, a three dimensional full CFD analysis using STAR-CD is implemented in an effort to consider the effect of 3-D heat loss through the furnace walls. From the results of the 3-D CFB analysis, the heat-up time increases up to 32.5 seconds under the same conditions. When the IR heater temperature in creases up to 573 K, the heat-up time decreases to 12 seconds for the one-dimensional analytical solution and to 13.5 seconds for the 3-D CFD analysis, respectively.

The influence of heating rate on the carbonization of sulfuric acid-impregnated cellulose (황산첨가 셀룰로오스의 탄화에서 승온속도의 영향)

  • 김대영
    • Journal of Korea Foresty Energy
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    • v.22 no.1
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    • pp.37-43
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    • 2003
  • The influence factors for char yield in the carbonization process of natural cellulose are the carbonization temperature, the heating rate and the atmosphere in the furnace. In general, it is well known that the improvement of char yield is expected under the conditions of the lower carbonization temperature, the slower heating rate and the presence of inert gas in the furnace. In this study, it has been investigated the effect of the heating rate control with sulfuric acid as a dehydrating agent for the improvement of char yield in the carbonization process of natural cellulose. The cellulose treated with sulfuric acid has shown the weak dependency of heating rate in char yield, whereas the untreated cellulose has shown the strong dependency. These findings clearly suggest that it can be useful to control heating rate with appropriate dehydrating agent in the carbonization process to improve the char yield and shortening the carbonization time.

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The Porosity Change of Glass Frit with Sintering Condition (소결조건에 따른 Glass Frit의 기공량 변화)

  • Yang, Jin
    • Korean Journal of Materials Research
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    • v.8 no.11
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    • pp.1005-1010
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    • 1998
  • 실험계획법을 이용하여 유리분말의 소결시 그 기공량에 영향을 미치는 각종 소결조건의 영향을 정량적으로 조사하였다. 본 실험범위내에서 결합제 유리의 총기공량, 개기공량 그미고 폐기공량은 모두 소결온도에 의해 가장 큰 영향을 받고 그 다음으로 소결온도에서의 유지시간에 의해 영향을 받으며 승온속도의 경우 그 영향이 상대적으로 미미함을 확인할 수 있었다. 이러한 결과들로부터 실제공정에 있어 승온속도보다는 다른 소결인자, 특히 소결온도를 조절하는 것이 결합제 유리의 기공량 조절에 가장 중요하리라 판단되며 실험계획법을 이용함으로써 보다 정확한 공전조건을 모색할 수 있었다.

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Evaluation of Blank Heating Processes by Thermal Stress Analysis (열응력 해석에 의한 블랭크 단조품 가열공정 평가)

  • Park, Sang-Chul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.7
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    • pp.4375-4380
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    • 2015
  • This study was performed to evaluate a newly proposed heating process of blank, which was used for Crank throw in the diesel engine, and provide design guidelines of heating processes. Non-linear numerical analyses were done using ANSYS program to investigate temperature and thermal stress distributions of blank during heating processes. The heating process consists of two stages; one is a heating stage with 20 hours, and the other is a holding stage with 12 hours, totaling 32-hour heating time. Based on analysis results, it was found that the temperature difference between the center and the surface of blank increased linearly during the heating stage but decreased gradually during the holding stage of heating processes, while max. equivalent stress, $12.5kg/mm^2$, was found at the center of blank after 10-hour heating time. As the guideline of blank heating process, it was recommended to keep the temperature difference between the center and the surface of blank to be within $150^{\circ}C$ when the environment temperature in furnace reaches $650^{\circ}C$ during a heating stage.

Kinetic Analyses on Thermal Degradation of Epoxy Based Adhesive for Packaging Application (센서 패키지용 고분자 접착제의 열화 거동 분석)

  • Kim, Yeong K.;Lee, Yoon-Sun
    • Journal of the Microelectronics and Packaging Society
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    • v.24 no.1
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    • pp.67-73
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    • 2017
  • An analysis of thermal degradation of epoxy based adhesive performed by thermogravimetry tests are presented in this study. Six different heating rates were employed for the weight change measurements. Based on the data, an Arrhenius type modeling equation was developed by calculating activation energies and proportional constants, and $n^{th}$ polynomial function was adopted to predict the weight change rates. The prediction results by the modeling was compared with the data using the average activation energy. It was found that the activation energy at the each heating rate was not same due to the different degradation kinetics, especially at the high heating rate. To overcome this pitfall, a new approach using exponential function series was introduced and employed. The calculation results showed very good agreements with the test data regardless of the heating rates.

Effect of Heating Rate on Self-Propagating, High-Temperature Synthesis of $TiAl_3$ Intermetallic from Multi-Layered Elemental Foils (다층원소박판에서 $TiAl_3$의 고온자전합성에 미치는 승온속도의 영향)

  • Kim, Yeon-Uk;Kim, Byeong-Gwan;Nam, Tae-Un;Heo, Bo-Yeong;Kim, Yeong-Jik
    • Korean Journal of Materials Research
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    • v.8 no.11
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    • pp.987-992
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    • 1998
  • Titanium aluminide intermetallic compound was formed from high purity elemental Ti and A1 foils by selfpropagating, high-temperature synthesis(SHS1 in hot press. Formation of $TiAl_3$ intermetallics at the interface between Ti and Al foil was observed to be controlled by temperature, pressure and heating rate. Especially, the heating rate is the most important role to form intermetallic compound by SHS reaction. According to DTA experiment, the SHS reactions appeared at two different temperatures below and above the melting point of Al. It was also observed that both SHS reaction temperatures increased with increasing the heating rate. After the SHS reaction of alternatively layered 10 Ti and 9 A1 foils at the heating rate of $20^{\circ}C$/min, the $700\mu\textrm{m}$ thick titanium aluminide sheet was formed by heat treatment at $810^{\circ}C$ for 4hours.

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Synthesis of NaY Zeolites by Microwave and Conventional Heating (마이크로파 및 기존 가열 방법에 의한 제올라이트 NaY의 합성)

  • Choi, Ko-Yeol;Conner, W. Curtis
    • Applied Chemistry for Engineering
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    • v.18 no.4
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    • pp.344-349
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    • 2007
  • NaY zeolites synthesized by microwave heating were compared with those obtained by conventional heating. When the same temperature increasing rates were adopted in both heating methods, the microwave heating shortened the induction period and enhanced the rate of crystallization of NaY zeolites compared with the conventional heating. Irrespective of microwave radiation, the fast temperature increasing rate also shortened the induction time and enhanced the crystallization of NaY zeolites. The crystal sizes of NaY zeolites were large under the fast temperature raise of the reaction mixture and became larger by microwave radiation. At the same time, the fast temperature increasing rate has reduced the energy consumption due to the fast completion of reaction during the synthesis of NaY zeolite. The energy consumption in the conventional ethylene glycol bath was lower than that in the microwave oven with the same temperature increasing rate in this study, which means that the energy efficiency is not always high in microwave heating. If the temperature increasing rate is carefully controlled, however, NaY zeolite can be produced with high energy efficiency in the microwave oven.