• 제목/요약/키워드: time-temperature curve

검색결과 390건 처리시간 0.035초

저온진공건조 공정에 의한 떫은 감의 건조 및 품질 특성 (Effects of the Low Temperature Vacuum Drying Process on Drying Curve and Physico-Chemical Properties of Astringent Persimmons)

  • 허상선
    • 한국응용과학기술학회지
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    • 제33권1호
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    • pp.58-66
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    • 2016
  • 저온진공건조 조건에 따른 곶감의 건조특성 및 품질적 변화를 분석하였다. 곶감의 건조 특성은 전형적인 항율건조기간과 감율건조기간이 존재함을 확인 할 수 있었다. 진공압력이 높을수록 가열온도가 높을수록 곶감의 당도, 당 함량, 경도 값은 높게 나타났으며 이에 비해 명도 값은 낮게 나타남을 알 수 있었다. 기존 천일 및 열풍건조를 대처할 수 있는 진공건조의 최적 조건은 진공압력이 40~50kPa abs., 가열온도 $30^{\circ}C$, 건조시간은 3~4일 이었다.

비선형 커브피팅을 이용한 에폭시 아스팔트 포장의 교통개방 예측 모델 개발 (A Development of Prediction Model for Traffic Opening Time of Epoxy Asphalt Pavement Using Nonlinear Curve Fitting)

  • 조신행;김낙석
    • 한국재난정보학회 논문집
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    • 제9권3호
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    • pp.324-331
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    • 2013
  • 강바닥판 교면포장의 고정하중 감소와 내구성 확보를 위해 사용되는 에폭시 아스팔트 콘크리트는 2액 반응형 재료로서 온도와 시간에 따라 강도가 발현되는 특징을 갖는다. 교통개방과 공정계획 수립을 위해서는 에폭시 아스팔트 콘크리트의 강도를 정확하게 예측할 수 있어야 하며 이를 위해 에폭시 아스팔트 콘크리트의 교통개방 시점 예측 모델을 개발하였다. 현장 시공 사례에 적용 하였을 때 기존 화학반응속도론에 기초한 모델의 R2가 0.806이었으나 비선형 커브피팅을 통해 개발한 예측모델은 R2가 0.943로 보다 높은 예측 정확도를 나타내었다. 포장체의 온도데이터가 보다 많을 경우에는 예측모델과 실측값의 차이를 더 줄일 수 있었다.

냉동 시 잠재용융열에 의한 피해를 최소화할 수 있는 이상냉동 곡선 (Ideal Freezing Curve Can Avoid the Damage by Latent Heat of Fusion During Freezing)

  • 박한기;박영환;윤웅섭;김택수;윤치순;김시호;임상현;김종훈;곽영태
    • Journal of Chest Surgery
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    • 제36권4호
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    • pp.219-228
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    • 2003
  • 배경: 액체질소에 의한 냉동방법은 생물학과 의학에서 세포와 조직의 장기보존으로는 성공적인 방법이다. 잘 조절된 냉동속도와 해동의 방법과 함께 글라이세롤이나 디메칠설폭사이드 같은 냉동보존제의 사용으로 얼음결정이 생기는 것을 방지하여 구조의 유지와 생존율을 모두 향상시킬 수 있으며 반영구적으로 보존할 수 있다. 여러 조직의 초저온냉동에는 조직에 맞는 냉동속도가 있다. 대상 및 방법: 가장 적합한 냉동곡선과 이를 위한 냉동챔버온도를 찾기 위해서 우리들은 조직의 열역학적 계산을 두 가지 방법으로 하였다. 하나는 직접계산방법으로 모든 냉동 대상물의 열물리학적 특성, 잠재용융열, 면적, 농도와 체적을 알아야 계산할 수 있다. 이러한 방법은 매우 복잡하고 어떠한 경우에는 실제 값을 알 수 없다. 다른 방법은 간접계산방법으로 우선 기존의 냉동곡선으로 조직을 냉동시켜 조직의 실제 냉동곡선을 얻은 다음 시간상수로 냉동곡선을 분석한 다음 온도반응을 계산하고 적합한 x차방정식을 대입시켜 냉동 시 온도상승을 막고 이것을 거꾸로 냉동챔버온도를 산출하는 방식이다. 결과: 이 냉동 프로그램을 중배엽줄기세포, 연골세포와 골아세포에 적용시켜 검사하였다. 조직의 온도는 온도상승과정 없이 이상적인 냉동곡선을 따라 감소하였다. 그러나 세포의 양과 수용액의 양이 적어 냉동곡선간의 생존력이 통계학적으로 차이가 있지는 않았다. 만약 더욱 부피가 큰 조직을 냉동시키거나 프로그램을 순차적으로 계속한다면 이상곡선에 더욱 근접하게 되어 차이가 있을 것으로 판단된다. 결론: 이 프로그램은 이상적인 냉동곡선으로 조직을 냉동시키기 위한 냉동챔버온도를 쉽게 찾을 수 있도록 도움이 될 것이다.

Adsorption and Thermal Regeneration of Toluene and Benzene on the Fixed Bed Packed with Activated Carbon and Activated Carbon Fiber

  • Kim, Jong-Hwa;Oh, Ok-Kyun;Haam, Seung-Joo;Lee, Chang-Ha;Kim, Woo-Sik
    • Carbon letters
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    • 제2권1호
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    • pp.44-54
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    • 2001
  • The characteristics of adsorption and desorption of benzene and toluene were investigated at a fixed bed packed with the activated carbon and activated carbon fiber. Through breakthrough experiments under various feed concentration conditions, it was found that the slope of mass transfer zone and the tailing in the breakthrough curves were different from the feed conditions due to different heats of adsorption. In hot nitrogen desorption, the regeneration time and mass transfer zone of the toluene desorption curve were longer than those of the benzene desorption curve because of the difference in adsorption affinity. With an increase in the regeneration temperature, the height of roll-up and the sharpness of desorption curves increased but the regeneration times decreased. The adsorption capacities of the activated carbon and activated carbon fiber after three-time thermal regenerations decreased about 25% and 37% for benzene and 18% and 25% for toluene, respectively. To investigate the effect of the regeneration temperature on the energetic efficiency, the characteristic desorption temperatures of toluene and benzene were investigated by calculating purge gas consumption and temperature.

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The Use of Semi-Adiabatic Calorimetry for Hydration Studies of Cement Paste

  • Chung, Chul-Woo;Kim, Ji-Hyun;Lee, Soo-Yong
    • 한국건축시공학회지
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    • 제16권2호
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    • pp.185-192
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    • 2016
  • The semi-adiabatic calorimetry technique is a robust and easy technique that can be used to measure the temperature rise of concrete. This method is often used for investigating the maturity of concrete, as well as to predict maximum temperature rise of mass concrete using various heat loss compensating models. Semi-adiabatic calorimetry can also be used for predicting setting time of concrete. However, it has seldom been used to investigate the hydration characteristics of various cement paste samples. In this research, semi-adiabatic calorimetry and X-ray diffraction methods were used to investigate the hydration characteristics of 3 different ASTM type I Portland cements. First derivative of temperature rise (dT/dt) curve was used to isolate individual peaks. Based on the results of the experiments, a combination of dT/dt curve with XRD could be used to successfully identify hydration at a specific time period, showing its potential to be used as an alternative tool for hydration studies of cement-based materials.

Materials Properties of Nickel Electrodeposits as a Function of the Current Density, Duty Cycle, Temperature and pH

  • Kim, Dong-Jin;Kim, Myung Jin;Kim, Joung Soo;Kim, Hong Pyo
    • Corrosion Science and Technology
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    • 제5권5호
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    • pp.168-172
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    • 2006
  • Alloy 600 having a superior resistance to a corrosion is used as a steam generator tubing in nuclear power plants. In spite of its high corrosion resistance, there are many tubings which experience corrosion problems such as a SCC under the high temperature and high pressure environments of nuclear power plants. The Alloy 600 tubing can be repaired by using a Ni electroplating having an excellent SCC resistance. In order to carry out a successful Ni electrodeposition inside a steam generator tubing, the effects of various parameters on the material properties of the electrodeposit should be elucidated. Hence this work deals with the effects of an applied current density, duty cycle($T_{on}/(T_{on}+T_{off})$) of a pulse current, bath temperature and solution pH on the material properties of Ni electrodeposit obtained from a Ni sulphamate bath by analyzing the current efficiency, potentiodynamic curve, hardness and stress-strain curve. Hardness, YS(yield strength) and TS(tensile strength) decreased whereas the elongation increased as the applied current density increased. This was thought to be by a concentration depletion at the interface of the electrodeposit/solution, and a fractional decrease of the hydrogen reduction reaction. As the duty cycle increased, the hardness, YS and TS decreased while the elongation increased. During an off time at a high duty cycle, the concentration depletion could not be recovered sufficiently enough to induce a coarse grain sized electrodeposit. With an increase of the solution temperature and pH, the YS and TS increased while the elongation decreased. The experimental results of the hardness and the stress-strain curves can be supplemented by the results of the potentiodynamic curve.

120kW급 IGBT 인버터의 열 응답 특성 실시간 모델 (A Real Time Model of Dynamic Thermal Response for 120kW IGBT Inverter)

  • 임석연;차강일;유상석
    • 한국수소및신에너지학회논문집
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    • 제26권2호
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    • pp.184-191
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    • 2015
  • As the power electronics system increases the frequency, the power loss and thermal management are paid more attention. This research presents a real time model of dissipation power with junction temperature response for 120kw IGBT inverter which is applied to the thermal management of high power IGBT inverter. Since the computational time is critical for real time simulation, look-up tables of IGBT module characteristic curve are implemented. The power loss from IGBT provides a clue to calculate the temperature of each module of IGBT. In this study, temperature of each layer in IGBT is predicted by lumped capacitance analysis of layers with convective heat transfer. The power loss and temperature of layers in IGBT is then communicated due to mutual dependence. In the dynamic model, PWM pulses are employed to calculation real time IGBT and diode power loss. Under Matlab/Simulink$^{(R)}$ environment, the dynamic model is validated with experiment. Results showed that the dynamic response of power loss is closely coupled with effective thermal management. The convective heat transfer is enough to achieve proper thermal management under guideline temperature.

실시간 지중 전력케이블 용량 평가를 위한 토양 열 특성 및 온도 측정 시스템 개발 (Development of the Soil Thermal Property and Temperature Measurement System for the Real-time Ampacity Estimation of Underground Power Cables)

  • 정성환;김대경;최상봉
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2002년도 하계학술대회 논문집 A
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    • pp.22-24
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    • 2002
  • This paper introduces the real-time soil thermal property analyzer and temperature measuring system which is combined with radio telecommunication technique. To measure the thermal parameters in real-time, the radio telecommunication technique are used the personal communication service (PCS) which is in the world-wide serviced commercially firstly by CDMA. The thermal property analyzer has an ability of measuring thermal resistivity, thermal diffusivity and thermal stability. To estimate the soil thermal properties, the curve fitting algorithm by means of the least square method are used. TCP/IP protocol and MTM are used to install the real-time soil thermal property and temperature measurement system at multiple locations along routes of the underground power cables and to reduce the cost of telecommunication.

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TTT/CCT 데이터를 이용한 저합금강의 죠미니 경화능 곡선 계산 (Calculation of Jominy Hardenability Curve of Low Alloy Steels from TTT/CCT data)

  • 정민수;손윤호
    • 열처리공학회지
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    • 제32권1호
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    • pp.17-28
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    • 2019
  • Jominy hardenability curves of low alloy steel containing less than 5 wt.% of alloying elements in total were calculated by applying Scheil's rule of additivity to pre-calculated isothermal transformation curve. Isothermal transformation curve for each phase in steel was approximated as a simple mathematical equation by using Kirkaldy's approach and all coefficients in the equation were estimated from experimental temperature-time-transformation (TTT) and/or continuous cooling transformation (CCT) data in the literature. Then jominy test with simple boundary conditions was performed in computer by applying the finite difference scheme. The resultant cooling curves at each location along a longitudinal direction of Jominy bar were applied to calculate phase fractions as well as mechanical properties such as micro Vickers hardness. The simulated results were compared with experimental CCT data and Jominy curves in the literature.

아크릴 중합체 및 아크릴-이타코닉산 공중합체/ 디메틸술폭시드 용액의 유변학적 특성의 시간의존성 (Time Dependence of the Rheological Properties of the Solutions of Polyacrylontrile and Acrylonitrile-Itaconic Acid Copolymer in Dimethyl sulfoxide)

  • 이남순
    • 한국염색가공학회지
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    • 제13권6호
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    • pp.435-440
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    • 2001
  • This study investigates the rheological properties of in-situ polymerized solutions of polyacrylonitrile(PAN) and acrylonitrile(AN) -itaconic acid(IA) in dimethyl sulfoxide(DMSO) in terms of temperature, concentration, and time. The complex viscosity and storage modulus of the solutions were generally increased with elapsing time, which is ascribable to the three-dimensional pseudostructures formed by strong inter- or Intra-molecular attractions through Polar -CN and -COOH groups. The three-dimensional pseudonetworks would lead to relation of the acrylic solutions in long term. This was more noticeable at higher temperature within the temperature range examined. In the case of 20% solutions one can not observe lower Newtonian flow region in the viscosity curve. Disappearance of lower Newtonian flow region is indicative of heterogeneity of the solution system. Casson Plot of the viscosity data revealed that 20% solutions of PAN and AN-IA copolymer in DMSO clearly demonstrated positive yield stress, ascertaining formation of pseudostructures in the solution systems.

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