• 제목/요약/키워드: Limiting temperature

검색결과 413건 처리시간 0.021초

온간 딮 드로잉에서 이종금속판재(STS430-Al3004-AZ31)의 파단 및 두께 예측을 위한 연구 (Prediction for Thickness and Fracture of Stainless Steel-Aluminum-Magnesium Multilayered Sheet during Warm Deep Drawing)

  • 이영선;이광석;김대용
    • 소성∙가공
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    • 제21권1호
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    • pp.49-57
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    • 2012
  • It is difficult to estimate the properties of multilayered sheet because they are composed of one or more different materials. Plastic deformation behavior of the multilayered sheet is quite different as compared to each material individually. The deformation behavior of multilayered sheet should be investigated in order to prevent forming defects and to predict the properties of the formed part. In this study, the mechanical properties and formability of stainless steel-aluminum-magnesium multilayered sheet were investigated. The multilayered sheet needs to be deformed at an elevated temperature because of its poor formability at room temperature. Uniaxial tensile tests were performed at various temperatures and strain rates. Fracture patterns changed mainly at a temperature of $200^{\circ}C$. Uniform and total elongation of multilayered sheet increased to values greater than those of each material when deformed at $250^{\circ}C$. The limiting drawing ratio (LDR) was obtained using a circular cup deep drawing test to measure the formability of the multilayered sheet. A maximum value for the LDR of about 2 was achieved at $250^{\circ}C$, which is the appropriate forming temperature for the Mg alloy. Fracture patterns on a circular cup and thickness of formed part were predicted by a rigid-viscoplastic FEM analysis. Two kinds of modeling techniques were used to simulate deep drawing process of multilayered sheet. A single-layer FE-model, which combines the three different layers into a macroscopic single layer, predicted well the thickness distribution of the drawn cup. In contrast, the location and the time of fracture were estimated better with a multi-layer FE model, which used different material properties for each of the three layers.

전기주석도금 반응에 미치는 PSA계 도금용액 노화의 영향 (Influence of Electrolyte Aging on Electrotinning in Phenolsulfonic Acid Bath)

  • 배대철;김태엽;조준형;이재륭;장삼규;조경목
    • 전기화학회지
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    • 제3권3호
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    • pp.162-168
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    • 2000
  • 전기주석도금용 PSA(Phenolsulfonic Acid Bath)계 전기주석 도금액은 장기간 사용하면 노화되어 도금 전류밀도 범위 축소 및 표면특성 열화현상이 일어나게 된다. 본 연구에서는 도금액 노화 현상의 원인을 축적된 phenolsulfonate농도 증가의 관점에서 조사하였다. 동전위와 정전위 분극실험 결과에서는, phenolsulfonate축적농도 증가에 따른 도금액의 노화 정도가 증가함에 따라 음극분극 초기에 나타나는 한계전류밀도가 점차 낮아지는 현상이 나타났다. Sodium phenolsulfonate를 첨가하여 phenolsulfonate끼 농도만을 조절한 도금액에서도 노화된 도금액과 거의 비슷한 분극 특성이 나타남으로써 도금액 노화의 원인이 축적된 phenolsulfonate임을 간접적으로 확인할 수 있었다. 또한 도금액의 온도가 증가할수록 한계전류밀도가 뚜렷하게 나타나지 않고 도금액 노화에 따른 영향이 적어져서 도금액의 노화는 물질이동과 같은 thermally-activated process의 제약에 의한 것이며, phenolsulfonate가 축적되면서 주석 이온의 mobility를 감소시키고, 따라서 정상적인 도금 반응이 억제되는 것으로 판단된다.

한반도 중북부 지대에서 국내 조 품종의 출수기 생태 특성 (Ecological Characteristics of Spike Heading Time of Korean Foxtail Millet Cultivars in the North-central Region of the Korean Peninsula)

  • 박세준;김보환;전혜원;김이경
    • 한국작물학회지
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    • 제68권4호
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    • pp.431-437
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    • 2023
  • 본 시험은 강원도 북부 지대에서 대한민국 육성 조 품종의 재배모형을 설정하기 위하여 강원도 화천과 인제의 농가 포장에서 조생 품종 '미리메조'와 만생 품종 '황미차조', '삼다차조', 그리고 손가락조 품종 '손가락조 1호'에 대한 파종 시기를 달리하여 출수기 생태 특성을 분석하였다. 1. 강원도 북부지대에서 조 조생종의 출수기는 파종기가 5월 중순(5/15)일 때, 8월 초순으로 출수일수는 약 80일이었으며, 6월 하순(6/20) 파종 시에는 8월 하순으로 출수일수는 약 65일이었다. 2. 만생종은 5월 중순일 때, 8월 중하순(8/18~8/26)으로 약 100일이었으며, 6월 하순(6/20) 파종 시에는 9월 중순(9/8~9/15)으로 약 85일이었다. 3. 출수기 적산온도는 조생종은 파종기 5월 중순의 약 1,700℃에서 6월 중순의 약 1,500℃이었으며, 만생종은 약 2,100℃에서 약 1,900℃의 범위를 보였다. 4. 출수기 일장시간은 조생종은 14.0 h에서 13.2 h로, 만생종은 13.2 h에서 12.5 h의 범위였다. 5. 강원도 북부지대에서 국내 조 품종의 출수 한계기를 8월 하순으로 고려할 때, 출수기 한계 적산온도는 조생종은 약 1,500℃, 만생종은 약 2,000℃로 산정되었다. 6. 출수기간 중 일평균 기온이 증가함에 따라 출수일수는 단축되었으며, 두 특성 간에 부의 상관관계를 보였다. 7. 파종기 지연에 따른 출수기간 중 일평균 기온의 증가는 출수일수 단축 및 적산온도의 감소를 유도하였다.

제주도 중문관광단지 연안해역 수질의 계절변동 (Seasonal Variations of Water Quality in the Coastal Sea of Jungmun Resort Complex in Jeiu Island)

  • 장승민;최영찬
    • 한국해양환경ㆍ에너지학회지
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    • 제5권2호
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    • pp.3-18
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    • 2002
  • This study has been carried out to find the water Quality in coastal sea of fungmun area, southern Jeju Island. In-situ observations and water sampling had been made every month from July 1997 to June 2000. The distributions of water temperature and salinity over the study area have been 13.8~27.0℃ and 30.0~34.7‰, respectively. Salinity is showed low salinity from June to September (rainy season) because of rain. Tsushima Warm Waters (TWW) as ≥15℃ and ≥34‰ influence the adjacent sea around Jeju Island all year round. Yangtse Coastal Waters (YCW) influence the surface layer around Jeju from June to September and so strong stratification (termocline, halocline) resulted at the depth of between 20~30m at outer-sea. However the stratification does not happen even in summer at inner-sea, which seem to be caused due to vertical mixing by wind, waves and tides. A water mass of high value of water temperature and salinity (respectively 14.1~17.7℃, 33.9~34.1‰) stayed at the lower layer in outer-sea all the year round. It is probably formed by mixing between TWW and YSBCW(Yellow Sea Bottom Cold Water). The mean value of DO was the lowest in summer and the highest in winter. COD and TH were the highest in summer and the lowest in winter. However, TP showed the lowest value in summer season, because the mean value of N/P ratio was over 16. The mean of N/P ratio was under 16 in other seasons. The phosphate would be a limiting factor in the growth of phytoplanHon in summer. Nitrate would be a limiting factor in other seasons. Distribution of chlorophyll a did not show any seasonal change in the study period, but especially increased during April and May in the first year(1998) and the second year(1999) all over the study area, which suggested that phytoplankton inhabitation distributed widely in the study area. The space averaged values were the highest for TIN in rainy season and lower for TP in rainy season than in other seasons. It suggests that river runoff influences the inner-sea.

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Characterization of Water-Filled Ag/AgCl Reference Electrode

  • Bahn Chi Bum;Oh Sihyoung;Hwang Il Soon;Chung Hahn Sup;Jegarl Sung
    • 전기화학회지
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    • 제4권3호
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    • pp.87-93
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    • 2001
  • 외부 Ag/AgCl 기준 전극은 가압형 및 비등형 경수로 환경에 널리 사용되었다. 전극의 채움 용액 (Siting solution)으로 통상 KCl을 사용하는데, 다공성 지르코니아로 만들어지는 플러그를 통한 Cl 이온의 누설이 전극의 전위차 변동을 유발하는 문제가 있다. 누설로 인한 전위차 변동의 문제를 해결하기 위해 채움 용액으로 순수를 사용하였다 순수를 사용하는 경우 상온에서의 AgCl용해도에 의해 Cl이온의 농도가 결정된다. 붕산과 수산화리튬 혼합용액으로 $288^{\circ}C$에서 전극의 안정성 실험을 실시하였다. 약 일주일간 전위차 변화는 10mV 이내였으며, $288^{\circ}C$$240^{\circ}C$에서의 온도 사이클링 시험 전후의 전위차 변화는 15mV 이내였다. 이온의 limiting equivalent conductances와 Agar의 수역학적 이론을 토대로 하여 전극의 TLJP을 계산하였다. 전극 채움 용액 내의 Cl이온 농도를 상온에서 측정한 값으로 보정하여 이론값을 계산할 경우, 실험값과 비교적 잘 일치하는 것을 알 수 있었다.

1.5/2.0℃ 지구온난화 시나리오 기반의 동아시아 기후변화 분석 (Understanding Climate Change over East Asia under Stabilized 1.5 and 2.0℃ Global Warming Scenarios)

  • 심성보;권상훈;임윤진;염성수;변영화
    • 대기
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    • 제29권4호
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    • pp.391-401
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    • 2019
  • This study first investigates the changes of the mean and extreme temperatures and precipitation in East Asia (EA) under stabilized 1.5℃ and 2℃ warming conditions above preindustrial levels provided by HAPPI project. Here, five model with 925 members for 10-year historical period (2006~2015) and 1.5/2.0℃ future warming scenarios (2091~2100) have been used and monthly based data have been analyzed. The results show that the spatial distribution fields over EA and domain averaged variables in HAPPI 1.5/2.0℃ hindcast simulations are comparable to observations. It is found that the magnitude of mean temperature warming in EA and Korea is similar to the global mean, but for extreme temperatures local higher warming trend for minimum temperature is significant. In terms of precipitation, most subregion in EA will see more increased precipitation under 1.5/2.0℃ warming compared to the global mean. These attribute for probability density function of analyzed variables to get wider with increasing mean values in 1.5/2.0℃ warming conditions. As the result of vulnerability of 0.5℃ additional warming from 1.5 to 2.0℃, 0.5℃ additional warming contributes to the increases in extreme events and especially the impact over South Korea is slightly larger than EA. Therefore, limiting global warming by 0.5℃ can help avoid the increases in extreme temperature and precipitation events in terms of intensity and frequency.

Peltier Heating-Assisted Low Temperature Plasma Ionization for Ambient Mass Spectrometry

  • Lee, Hyoung Jun;Oh, Ji-Seon;Heo, Sung Woo;Moon, Jeong Hee;Kim, Jeong-hoon;Park, Sung Goo;Park, Byoung Chul;Kweon, Gi Ryang;Yim, Yong-Hyeon
    • Mass Spectrometry Letters
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    • 제6권3호
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    • pp.71-74
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    • 2015
  • Low temperature plasma (LTP) ionization mass spectrometry (MS) is one of the widely used ambient analysis methods which allows soft-ionization and rapid analysis of samples in ambient condition with minimal or no sample preparation. One of the major advantages of LTP MS is selective analysis of low-molecular weight, volatile and low- to medium-polarity analytes in a sample. On the contrary, the selectivity for particular class of compound also implies its limitation in general analysis. One of the critical factors limiting LTP ionization efficiency is poor desorption of analytes with low volatility. In this study, a home-built LTP ionization source with Peltier heating sample stage was constructed to enhance desorption and ionization efficiencies of analytes in a sample and its performance was evaluated using standard mixture containing fatty acid ethyl esters (FAEEs). It was also used to reproduce the previous bacterial identification experiment using pattern-recognition for FAEEs. Our result indicates, however, that the bacterial differentiation from FAEE pattern recognition using LTP ionization MS still has many limitations.

YBCO 박막의 저항형 초전도 한류기에 대한 동작 특성 (Operating Properties for a Resistive SFCL of YBCO Thin Films)

  • 최효상;현옥배;김혜림;황시돌;김상준;문승현;한병성
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
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    • 제48권10호
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    • pp.537-543
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    • 1999
  • We fabricated a resistive superconducting fault current limiter (SFCL) of a meander type based on a YBCO film with the meander cross section of 5 $\times$ $10^{-6}$$cm^2$, and performed current limitation experiments. The film was coated quench current was 9.6 Apeak at 60 Hz, and the fast quench time was 0.63 msec. The resistance of the limiter continuously increased for three cycles dut to the temperature rise in the gold layer. The temperature of the current limiting element reached the room temperature in 11 msec, $150^{\circ}C$ in 54 msec after quench, and was saturated afterwards. For $45^{\circ}$and $90^{\circ}$faults the fast quench times were 0.56 msec and 0.26 msec, respectively. The quench time is believed to be reduced because the fault occurred when the current was either increasing or at the peak value. This limiter effectively limited the fault current to about 1/5 of the potential current with no SFCL right after the fault and to about 1/8.5 in three cycles. We confirmed that the gold layer effectively carried out the role of heat dissipation as the SFCL was quenched.

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Active Reaction Sites and Oxygen Reduction Kinetics on $La_1_{-x}Sr_xMnO_{3+\delta}$(x=0.1-0.4)/YSZ (Yttria-Stabilized Zirconia) Electrodes for Solid Oxide Fuel Cells

  • Lee, Hee Y.;Cho, Woo S.;오승모
    • Bulletin of the Korean Chemical Society
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    • 제19권6호
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    • pp.661-666
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    • 1998
  • Active reaction sites and electrochemical O2 reduction kinetics on La_{1-x}Sr_xMnO_{3+{\delta}} (x=0.1-0.4)/YSZ (yttria-stabilized zirconia) electrodes are investigated in the temperature range of 700-900 ℃ at $Po_2=10^{-3}$-0.21 atm. Results of the steady-state polarization measurements, which are formulated into the Butler-Volmer formalism to extract transfer coefficient values, lead us to conclude that the two-electron charge transfer step to atomically adsorbed oxygen is rate-limiting. The same conclusion is drawn from the $Po_2$-dependent ac impedance measurements, where the exponent m in the relationship of $I_o$ (exchange current density) ∝ $P_{o_{2}}^m$ is analyzed. Chemical analysis is performed on the quenched Mn perovskites to estimate their oxygen stoichiometry factors (δ) at the operating temperature (700-900 ℃). Here, the observed δ turns out to become smaller as both the Sr-doping contents (x) and the measured temperature increase. A comparison between the 8 values and cathodic activity of Mn perovskites reveals that the cathodic transfer coefficients $({\alpha}_c)$ for oxygen reduction reaction are inversely proportional to δ whereas the anodic ones $({\alpha}_a)$ show the opposite trend, reflecting that the surface oxygen vacancies on Mn perovskites actively participate in the $O_2$ reduction reaction. Among the samples of x= 0.1-0.4, the manganite with x=0.4 exhibits the smallest 8 value (even negative), and consistently this electrode shows the highest ${\alpha}_c$ and the best cathodic activity for the oxygen reduction reaction.

Thermal analysis and optimization of the new ICRH antenna Faraday Screen in EAST

  • Q.C. Liang ;L.N. Liu ;W. Zhang ;X.J. Zhang ;S. Yuan ;Y.Z. Mao ;C.M. Qin;Y.S. Wang ;H. Yang
    • Nuclear Engineering and Technology
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    • 제55권7호
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    • pp.2621-2627
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    • 2023
  • In Experimental Advanced Superconducting Tokamak (EAST) experiments, to achieve long pulse and high-power ICRH system operation, a new kind of ICRH antenna has been designed. One of the most critical factors in limiting the operation of long pulse and high power is the intense heat load in the front face of the ICRH antenna, especially the Faraday Screen (FS). Therefore, the cooling channels of FS need to be designed. According to thermal-hydraulic analysis, the FS tubes are divided into several groups to achieve more excellent water cooling capability. The number of series and parallel tubes in one group is chosen as six. This antenna went into service in the spring of 2021, and it is delightful that the temperature distribution of the FS tube is below 400 ℃ in 14.5 s and 1.8 MW ICRH system operation. However, the active water-cooling design was not carried out on the upper and lower plates of FS, which led to severe ablations on that region under long pulse and high power operation, and the temperature is up to 800. Therefore, the upper and lower side plates of the FS were designed with water cooling based on thermal-hydraulic analysis. During the 2022 winter experiments, the temperature of ICRH antenna FS was lower than 400 in the pulse of 200s and the power of 1 MW operation.