• 제목/요약/키워드: Elevated temperature condition

검색결과 214건 처리시간 0.025초

압력용기용 고온재의 이종재 마찰용접과 AE평가 (Dissimilar Friction Welding of Elevated Temperature Materials for Pressure Vessels and Its AE Evaluation)

  • 공유식;이연탁;유인종;오세규;임만배
    • 동력기계공학회지
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    • 제6권1호
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    • pp.68-73
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    • 2002
  • An opportunity to use the elevated temperature has been recently increasing in various elements of heat facilities or machines such as heat exchanger tubes, pressure vessels, engines of aircraft, boilers and turbines in power plants, and nuclear reactor components, etc. as machinery industry develops. Thus, the development of such elevated-temperature heat-resisting materials and the studies on their elevated-temperature materials friction welding, creep design and analysis have been considered as an important and needful fact. In this paper, friction welding optimization for 1Cr0.5Mo to STS304 and AE applications for the weld quality evaluation were investigated. The important results of this study are as follows : The techniques for dissimilar friction welding optimization of the elevated temperature materials 1Cr0.5Mo and STS304 and its real-time weld quality evaluation by AE were developed, considering on both strength and toughness. Quantitative relationship was identified among welding condition, weld quality and cumulative AE counts.

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Thermal-pressure loading effect on containment structure

  • Kwak, Hyo-Gyoung;Kwon, Yangsu
    • Structural Engineering and Mechanics
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    • 제50권5호
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    • pp.617-633
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    • 2014
  • Because the elevated temperature degrades the mechanical properties of materials used in containments, the global behavior of containments subjected to the internal pressure under high temperature is remarkably different from that subjected to the internal pressure only. This paper concentrates on the nonlinear finite element analyses of the nuclear power plant containment structures, and the importance for the consideration of the elevated temperature effect has been emphasized because severe accident usually accompanies internal high pressure together with a high temperature increase. In addition to the consideration of nonlinear effects in the containment structure such as the tension stiffening and bond-slip effects, the change in material properties under elevated temperature is also taken into account. This paper, accordingly, focuses on the three-dimensional nonlinear analyses with thermal effects. Upon the comparison of experiment data with numerical results for the SNL 1/4 PCCV tested by internal pressure only, three-dimensional analyses for the same structure have been performed by considering internal pressure and temperature loadings designed for two kinds of severe accidents of Saturated Station Condition (SSC) and Station Black-out Scenario (SBO). Through the difference in the structural behavior of containment structures according to the addition of temperature loading, the importance of elevated temperature effect on the ultimate resisting capacity of PCCV has been emphasized.

R-Curve Behavior of Silicon Nitride at Elevated Temperatures

  • Sakaguchi, Shuji
    • The Korean Journal of Ceramics
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    • 제4권4호
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    • pp.331-335
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    • 1998
  • R-curve, of three kinds of silicon nitride-based ceramics were measured, using single edge notched beam (SENB) method at room and at elevated temperatures, up to $1200^{\circ}C$. Stable fraacture was seen on ceramic materials with SENB specimens if the machined notch is deep enough, even though the crack resistance did not increase with crack length. Hot pressed silicon nitride did not show the rising R-curve behavior at room temperature, but it showed some rising at $1000^{\circ}C$ and above. Si3N4 reinforced with SiC whiskers showed no rising behavior at room and elevated temperatures, as it has smaller grain size, compare to the monolithic specimen. Gas pressure sintered silicon nitride had very large and elongated grains, and it showed rising R-curve even at room temperature. However, it showed some creep behavior at $1200^{\circ}C$ and the calculated R-curve on this condition did not show a good result. We cannot apply this technique on this condition for obtaining the R-curve.

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온도와 $CO_{2}C$ 농도에 따른 배추의 광합성특성 및 세포조직의 변화 (Photosynthetic Characteristics and Cellular Tissue of Chinese Cabbage are Affected by Temperature and $CO_{2}C$ Concentration)

  • 이상규;문지혜;장윤아;이우문;조일환;김승유;고관달
    • 생물환경조절학회지
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    • 제18권2호
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    • pp.148-152
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    • 2009
  • 본 연구는 배추 재배시 기후변화에 대비하여 고온과 고농도의 이산화탄소 조건에서 생육반응과 세포조직의 변화를 알아보고자 수행하였다. 처리는 '대기중 온도+대기중 $CO_{2}$ 농도(Control)', '대기중 온도+대기보다 $CO_{2}$ 2배 상승(Elevated $CO_{2}$)' '(대기온도보다 4$^{\circ}C$ 상승+대기중 $CO_{2}$ 농도(Elevated temp.)', '대기온도보다 4$^{\circ}C$ 상승+대기보다 $CO_{2}$ 2배 상승(Elevated temp.+$CO_{2}$)'의 4가지 조건으로 처리하였다. 그 결과, 대기조건보다 온도만 높아지게 되면 배추의 생체중이 현저하게 저하되어 수량이 떨어지는 것으로 나타났고, 온도가 높아지고 $CO_{2}$ 농도가 동시에 올라가게 되면 생육이 어느정도 회복되는 것으로 나타났다. 또한 칼륨과 인산함량은 처리별로 차이가 없었지만 칼슘과 총질소함량은 온도만 높인 처리에서 높았고, 마그네슘 함량은 온도와 $CO_{2}$ 농도를 동시에 높인 처리에서 높게 나타났다. 배추잎의 세포 관찰결과 $CO_{2}$ 농도를 2배 정도 높인 처리에서 잎내의 전분함량이 증가하는 것으로 나타났고, 온도만 높인 처리에서 전분 함량이 가장 낮았다.

CO2농도와 온도 상승이 한국의 주요 재배 벼품종의 생육과 생산량에 미치는 영향 -오대벼와 새추청벼- (Effects of elevated CO2 concentration and increased temperature on the growth and crop yield of rice (Oryza sativa) cultivars in Korea -cv. Odaebyeo and cv. Saechucheongbyeo-)

  • 이응필;장래하;조규태;유영한
    • 한국습지학회지
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    • 제16권4호
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    • pp.363-370
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    • 2014
  • 온난화가 진행되면, 우리나라에서 재배되고 있는 주요 벼의 생육과 생산량이 어떻게 변화되는지를 알아보기 위해, 북부지방과 중부지방에 각각 가장 많이 재배되는 오대벼와 새추청벼의 유식물을 각각 대조구, 온도 상승구 및 $CO_2$+온도 상승구에서 재배하여 그 결과를 비교하였다. 새추청벼의 지상부생물량, 지하부생물량, 총 생물량, 개체당 이삭무게 그리고 낟알의 숙성 비율은 온도 상승구에서, 오대벼는 $CO_2$+온도 상승구에서 가장 높았다. 새추청벼와 오대벼의 개체당 이삭수는 환경구배 간 차이가 없었다. 새추청벼의 이삭당 낟알수는 환경구배 간 차이가 없었고, 오대벼의 것은 $CO_2$+온도 상승구에서 가장 많았다. 새추청벼의 낟알 한 개의 무게는 $CO_2$+온도 상승구, 오대벼의 것은 온도 상승구와 $CO_2$+온도 상승구에서 가장 무거웠다. 새추청벼의 분얼수는 대조구와 온도 상승구, 오대벼의 것은 대조구에서 가장 많았다. 본 연구를 종합적으로 정리해보면 새추청벼는 대조구보다 온도만 상승했을 때 잘 자랐고 곡물 생산량이 증가했지만 $CO_2$ 농도와 온도가 같이 상승했을 때는 차이가 없었다. 그리고 오대벼는 대조구보다 $CO_2$ 농도와 온도가 같이 상승했을 때 잘 자랐고 생산량이 증가했다. 앞으로 지구온난화의 영향으로 $CO_2$ 농도와 온도가 높아진다면, 새추청벼는 현재와 곡물수확량의 차이는 없겠지만 그에 반해 오대벼는 곡물수확량은 높아질 것이다. 따라서 지구온난화로 인한 기후변화가 지속된다면 곡물수확량을 고려한 종에 따른 벼 재배적지의 선정이 신중히 결정되어야 할 것으로 판단된다.

상승된 온도 조건에서 물달개비(Monochoria vaginalis)와 올챙이고랭이(Scirpus juncoides)의 출아 및 초기생장 예측 (Prediction of Seedling Emergence and Early Growth of Monochoria vaginalis and Scirpus juncoides under Elevated Temperature)

  • 박민원;김진원;임수현;이인용;김도순
    • 한국잡초학회지
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    • 제30권2호
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    • pp.103-110
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    • 2010
  • 일년생 잡초인 물달개비 및 올챙이고랭이의 출아와 초기생장을 예측하기 위한 모델 구축을 위하여 온도조건을 달리한 식물생장상에서 포트실험을 수행하였다. 이들 잡초의 출아 및 초기생장과 유효적산온도와의 관계를 비선형회귀로 분석한 결과 온도조건에 상관없이 각각 Gompertz 모델 및 logistic 모델로 설명이 잘 되었다. 물달개비 및 올챙이고랭이의 최대 출아율의 50%에 필요한 유효적산온도는 각각 69.3 및 $94.8^{\circ}C$이었으며, 4엽기에 이르는데 필요한 유효 적산온도는 각각 247 및 $234^{\circ}C$이었다. 본 연구에서 개발된 모델로 분석한 결과 평균 기온이 $3^{\circ}C$ 상승하게 되면 이들 잡초의 50% 출아는 물달개비의 경우 1일, 올챙이고랭이의 경우는 2일 빨라지고, 4엽기에 다 다르는 날짜는 이들 잡초 모두 3일이 빨라질 것으로 예측되었다. 따라서 온도상승조건에서 물달개비 및 올챙이고랭이를 효과적으로 방제하기 위해서는 현재의 처리시기보다 약 2-3일 빨라져야 할 것으로 예상된다.

Artocarpus chaplasha: Establishment and Initial Growth Performance at Elevated Temperature and Saline Stresses

  • Rahman, Md. Siddiqur;Al-Amin, M.;Akter, Salena
    • Journal of Forest and Environmental Science
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    • 제28권1호
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    • pp.12-18
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    • 2012
  • Like any other natural resources, forest flora may experience the extreme threat of elevated temperature and saline water submergence at different stages of their lives i.e. from germination to maturity due to climate change effects. The overall aim of the study was to measure the effect of higher temperatures along with saline water irrigation on survival and initial growth during seedling stage of Artocarpus chapalasha. The experiment was conducted in temperature- humidity-photoperiod regulated plant growth chamber during stipulated period to measure the growth performance of randomly selected seedlings. Within three different elevated temperatures viz. $30^{\circ}C$, $32^{\circ}C$ and $34^{\circ}C$, the seedlings were given three different saline conditions such as 0.5 g/L, 1.5 g/L and 2.5 g/L NaCl concentrations. Results found from the experiment was that, seedlings of Artocarpus chaplasha reared at different temperatures and saline water treatments showed stunted growth than reared at existing outdoor temperature ($26.31^{\circ}C$) irrigated with regular fresh water. Seedling growth at three different parameters such as height, collar diameter and number of leaves showed that with increasing temperature individuals respond negatively to increasing saline condition. The seedling's growth occurred at every day in height, collar diameter and leaf. However, growth rate reduced later during the observation. The combined effect of high salinity and higher elevated temperature results in seedling mortality. Therefore, Artocarpus chaplasha may not thrive at higher temperature and salinity intrusion at its early growing period in plantation and natural forest areas.

표면균열을 갖는 원형봉재 시편을 이용한 고온 피로균열성장 연구 (A Study on Elevated Temperature Fatigue Crack Growth Using Round Bar Specimen with a Surface Crack)

  • 소태원;윤기봉
    • 대한기계학회논문집A
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    • 제20권11호
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    • pp.3415-3423
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    • 1996
  • The compact tension specimen geometry has been widely used for measuring fatigue crack growth rates at elevated temperature when the fatigue load is under tension/tension condition. However, most of the elevated temperature components which have significant crack growth life experience fatigue load under tension/compression conditions. Thus test techniques are required since the compact tension specimen cannot be used for tension/compression loading. In this paper, a simplified test procedure for measureing fatigue crack growth rates is proposed, which employs a round bar specimen with a small surface crack. Fatigue crack growth rates under tension/ tension loading conditions at elevated temperature were measured according to the proposed procedure and compared with those previously measured by C/(T) specimens. Since both the measured crack growth rates were comparable, the fatigue crack growth rates under tension/ compression load can be reliably measured by the proposed procedure. For monitoring crack depth. DC electric potential method is employed and an optimal probe location and current input conditions were proposed.

초음속 비행체 구조재료에 대한 열기계적 특성 (Thermomechanical Characteristics for Structural Material of Supersonic Vehicle)

  • 김종환;이기범;이경용
    • 한국군사과학기술학회지
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    • 제8권2호
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    • pp.77-87
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    • 2005
  • The thermomechanical characteristics were evaluated for 17-4PH stainless steel widely used in supersonic airframe subjected to both aerodynamic loading and heating. The thermomechanical tests were conducted under both elevated temperature and rapid heating condition from $1^{\circ}C/sec\;to\;28^{\circ}C/sec$. The thermomechanical behaviors under rapid heating were compared with those of elevated temperature after 1/2 hour exposure in terms of yield stress to investigate the influence of heating rates. A heating rate-yield temperature parameter was suggested for rapid heating based on time-temperature parameters, and master yield stress curve was obtained by using these parameters. The experimental results and methodology from this study can be used as basic engineering data when designing supersonic vehicle structures subjected to aerodynamic loading and severe heating environment.

Evaluation of Water Suction for Compacted Bentonite Buffer Under Elevated Temperature Conditions

  • Yoon, Seok;Lee, Deuk-Hwan;Cho, Won-Jin;Lee, Changsoo;Cho, Dong-Keun
    • 방사성폐기물학회지
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    • 제20권2호
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    • pp.185-192
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    • 2022
  • A compacted bentonite buffer is a major component of engineered barrier systems, which are designed for the disposal of high-level radioactive waste. In most countries, the target temperature required to maintain safe functioning is below 100℃. If the target temperature of the compacted bentonite buffer can be increased above 100℃, the disposal area can be dramatically reduced. To increase the target temperature of the buffer, it is necessary to investigate its properties at temperatures above 100℃. Although some studies have investigated thermal-hydraulic properties above 100℃, few have evaluated the water suction of compacted bentonite. This study addresses that knowledge gap by evaluating the water suction variation for compacted Korean bentonite in the 25-150℃ range, with initial saturations of 0 and 0.22 under constant saturation conditions. We found that water suction decreased by 5-20% for a temperature increase of 100-150℃.