• Title/Summary/Keyword: Thermal rise

검색결과 747건 처리시간 0.029초

Post-fire Repair of Concrete Structural Members: A Review on Fire Conditions and Recovered Performance

  • Qiu, Jin;Jiang, Liming;Usmani, Asif
    • 국제초고층학회논문집
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    • 제10권4호
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    • pp.323-334
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    • 2021
  • Concrete structures may rarely collapse in fire incidents but fire induced damage to structural members is inevitable as a result of material degradation and thermal expansion. This requires certain repairing measures to be applied to restore the performance of post-fire members. A brief review on investigation of post-fire damage of concrete material and concrete structural members is presented in this paper, followed by a review of post-fire repair research regarding various types of repairing techniques (FRP, steel plate, and concrete section enlargement) and different type of structural members including columns, beams, and slabs. Particularly, the fire scenarios adopted in these studies leading to damage are categorized as three levels according to the duration of gas-phase temperature above 600℃ (t600). The repair effectiveness in terms of recovered performance of concrete structural members compared to the initial undamaged performance has been summarized and compared regarding the repairing techniques and fire intensity levels. The complied results have shown that recovering the ultimate strength is achievable but the stiffness recovery is difficult. Moreover, the current fire loading scenarios adopted in the post-fire repair research are mostly idealized as constant heating rates or standard fire curves, which may have produced unrealistic fire damage patterns and the associated repairing techniques may be not practical. For future studies, the realistic fire impact and the system-level structural damage investigation are necessary.

CVD 그래핀을 이용한 저저항 투명면상발열 시스템 (Low-resistance Transparent Plane Heating System using CVD Graphene)

  • 유병욱;한상수
    • 한국정보전자통신기술학회논문지
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    • 제12권3호
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    • pp.218-223
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    • 2019
  • 높은 CVD 그래핀저항으로 인한 낮은 발열효과를 해결하기 위해 다층으로 그래핀을 적층하여, 저저항의 광학특성이 우수한 투명 면상 발열시스템을 구현하였다. 제작한 CVD 그래핀의 발열필름으로 $300{\times}400{\times}5mm$ 발열체를 제작하고, 효율적인 전력을 구동하기 위해 PWM 제어를 통한 회로를 구성하여 시스템을 구현하였다. 발열체로 사용한 4층의 CVD 그래핀 필름의 평균 면 저항 측정값은 $85.5{\Omega}/sq$이다. 따라서 저 저항의 CVD 그래핀의 구현 방법으로 열전사의 적층의 방법은 타당하다. 발열시험 결과, CVD 그래핀을 이용한 저저항 투명 면상 발열 시스템의 평균 발열상승은 $10^{\circ}C/min$ 이고, 86.44%의 CVD 그래핀 필름의 광투과율을 갖음을 보여준다. 따라서 제시한 발열 시스템은 대형창 유리 및 자동차 발열유리로서 적용가능하다.

비행체 추진기관용 내열 복합재의 특성 및 개발 동향 (Characteristics and Development Trends of Heat-Resistant Composites for Flight Propulsion System)

  • 황기영;박종규
    • 한국항공우주학회지
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    • 제47권9호
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    • pp.629-641
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    • 2019
  • 고온, 고압의 연소가스에 의해 유입되는 많은 열을 효과적으로 차단하여 고체 로켓 노즐의 공력형상을 최대한 유지하면서 구조물의 온도 상승을 일정수준 이하로 제한하기 위해 연소가스와 접하는 위치에 내삭마성이 우수한 C/C 복합재 등의 내열재를, 그 배면에는 열확산계수가 낮은 단열재를 적용한다. 내산화성이 우수한 SiC/SiC 복합재는 가스터빈 엔진에 적용되고 있으며, 경량화와 내열성 향상으로 인해 엔진 성능 증가에 기여하고 있다. 극초음속으로 비행하는 스크램제트는 흡입 공기 온도가 매우 높아서 흡열 연료를 냉각제로 사용하는 C/SiC 구조물 개발 연구가 수행되고 있다. 본 논문에서는 고체 로켓 노즐, 가스터빈 엔진 및 램제트/스크램제트 추진기관에 사용되는 다양한 내열 복합재의 특성, 적용사례 및 개발 동향을 고찰하였다.

스마트 제조혁신을 위한 보호필름 공정 제조데이터의 활용모델 설계 (The Design of Application Model using Manufacturing Data in Protection Film Process for Smart Manufacturing Innovation)

  • 차병래;박선;이성호;신병춘;김종원
    • 스마트미디어저널
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    • 제8권3호
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    • pp.95-103
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    • 2019
  • 세계 제조업은 장기적인 경기침체, 노동 원가 및 원자재 가격 상승으로 성장 한계에 봉착하게 되었으며, 이에 대한 해결방안으로 ICT와 센서 기술을 바탕으로 제조업의 4차 산업혁명을 진행하고 있다. 이러한 흐름에 따라 화학 산업에서의 스마트공장보급 확산과 스마트제조 기술 향상을 위해, 본 논문은 스마트 제조혁신을 위한 보호필름 공정 제조데이터 활용모델의 설계를 제안한다. 보호필름 공정 중에서 원료 배합 및 교반, 압출, 그리고 검수 공정에 대해서 온도, 압력, 습도, 그리고 동영상 및 열화상의 제조 데이터를 획득한다. 또한 획득된 제조 데이터는 대용량 스토리지에 저장되며, AI 서비스에 의한 시계열 및 이미지 분석과 시각화가 진행된다.

Behaviour of ultra-high strength concrete encased steel columns subject to ISO-834 fire

  • Du, Yong;Zhou, Huikai;Jiang, Jian;Liew, J.Y. Richard
    • Steel and Composite Structures
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    • 제38권2호
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    • pp.121-139
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    • 2021
  • Ultra-high strength concrete (UHSC) encased steel columns are receiving growing interest in high-rise buildings owing to their economic and architectural advantages. However, UHSC encased steel columns are not covered by the modern fire safety design code. A total of 14 fire tests are conducted on UHSC (120 MPa) encased steel columns under constant axial loads and exposed to ISO-834 standard fire. The effect of load ratio, slenderness, stirrup spacing, cross-section size and concrete cover to core steel on the fire resistance and failure mode of the specimens are investigated. The applicability of the tabulated method in EC4 (EN 1994-1-2-2005) and regression formula in Chinese code (DBJ/T 15-81-2011) to fire resistance of UHSC encased steel columns are checked. Generally, the test results reveal that the vertical displacement-heating time curves can be divided into two phases, i.e. thermal expansion and shortening to failure. It is found that the fire resistance of column specimens increases with the increase of the cross-section size and concrete cover to core steel, but decreases with the increase of the load ratio and slenderness. The EC4 method overestimates the fire resistance up to 186% (220 min), while the Chinese code underestimates it down to 49%. The Chinese code has a better agreement than EC4 with the test results since the former considers the effect of the load ratio, slenderness, cross section size directly in its empirical formula. To estimate the fire resistance precisely can improve the economy of structural fire design of ultra-high strength concrete encased steel columns.

태양열 활용 증발기의 성능 향상을 위한 국소적 젖음성 제어에 관한 실험적 연구 (Performance Enhancement of Solar-Driven Steam Generator by Local Wettability Control)

  • 최진욱;서용원;모형욱;김설하
    • Korean Chemical Engineering Research
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    • 제60권2호
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    • pp.255-259
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    • 2022
  • 태양광을 이용한 증기 발생 방법은 순수한 물이 고갈되는 현재 사회에서 해수나 폐수에서 물을 수확할 수 있는 매우 유망한 기술이다. 태양광을 이용한 증기 발생 중에서 멤브레인을 이용한 증류법은 현재 개발 중에 있지만 멤브레인이 물과 직접 접촉하여 효율적인 증발량을 늘리기가 어려웠다. 본 연구에서는 PDMS (polydimethylsiloxane)와 산화 그래핀(GO)으로 구성된 태양열 멤브레인 증기 발생기와 부분적으로 멤브레인 전체에 절친 젖음성 제어를 통해 증발량을 개선하는 것을 제안하여 실험적 연구를 수행했다. 국부적인 젖음성 제어로 태양광과의 열교환 영역에서 열 국지화 및 온도 상승에서 상당한 개선을 보여주었다. 1sun(=1000 W/m)의 조사에서 1.54 kg m-2 h-1의 증발 능력을 갖습니다. 그 결과, 태양열 멤브레인 증기 발생 시스템은 국부적인 물 회수 성능 메커니즘을 이해 및 실험적 확인을 수행할 수 있었다.

2.2 kW와 3.7 kW 유도전동기의 정상과 구속운전에 따른 전류 및 온도 특성 (Characteristic of Current and Temperature according to Normal and Abnormal Operations at Induction Motor of 2.2 kW and 3.7 kW)

  • 이종찬;김두현;김성철
    • 한국안전학회지
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    • 제38권3호
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    • pp.35-42
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    • 2023
  • This study analyzed the current and temperature characteristics of major components of an induction motor during normal and abnormal operations as functions of the difference in the rated capacities of medium and large-sized motors widely used in industrial settings. The temperature rise equation of the induction motor winding was derived through locked-rotor operation experiments and linear regression analysis. When the ambient temperature is 40 ℃, the time to reach 155 ℃, the temperature limit of the insulation class (F class) of the winding of the induction motor, was confirmed to be 48 seconds for the 2.2 kW induction motor and 39 seconds for the 3.7 kW induction motor. This means that when the rated capacity is large or the installation environment is high temperature, the time to reach the temperature limit of the insulation class during locked-rotor operation is short, and the risk of insulation deterioration and fire is high. In addition, even if the EOCR (Electronic Over Current Relay) is installed, if the setting time is excessively set, the EOCR does not operate even if the normal and locked-rotor operation of the induction motor is repeated, and the temperature limit of the insulation grade of the winding of the induction motor is exceeded. The results of this study can be used for preventive measures such as the promotion of electrical and mechanical measures for the failure of induction motors and fire prevention in industrial sites, or the installation of fire alarm systems.

Numerical and experimental analysis on the axial compression performance of T-shaped concrete-filled thin-walled steel

  • Xuetao Lyu;Weiwei Wang;Huan Li;Jiehong Li;Yang Yu
    • Steel and Composite Structures
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    • 제50권4호
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    • pp.383-401
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    • 2024
  • The research comprehensively studies the axial compression performance of T-shaped concrete-filled thin-walled steel tubular (CTST) long columns after fire exposure. Initially, a series of tests investigate the effects of heating time, load eccentricity, and stiffeners on the column's performance. Furthermore, Finite Element (FE) analysis is employed to establish temperature and mechanical field models for the T-shaped CTST long column with stiffeners after fire exposure, using carefully determined key parameters such as thermal parameters, constitutive relations, and contact models. In addition, a parametric analysis based on the numerical models is conducted to explore the effects of heating time, section diameter, material strength, and steel ratio on the axial compressive bearing capacity, bending bearing capacity under normal temperature, as well as residual bearing capacity after fire exposure. The results reveal that the maximum lateral deformation occurs near the middle of the span, with bending increasing as heating time and eccentricity rise. Despite a decrease in axial compressive load and bending capacity after fire exposure, the columns still exhibit desirable bearing capacity and deformability. Moreover, the obtained FE results align closely with experimental findings, validating the reliability of the developed numerical models. Additionally, this study proposes a simplified design method to calculate these mechanical property parameters, satisfying the ISO-834 standard. The relative errors between the proposed simplified formulas and FE models remain within 10%, indicating their capability to provide a theoretical reference for practical engineering applications.

머신러닝 기법을 활용한 철골 모멘트 골조의 화재 취약도 분석 (Fire Fragility Analysis of Steel Moment Frame using Machine Learning Algorithms)

  • 박성월;김은주
    • 한국전산구조공학회논문집
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    • 제37권1호
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    • pp.57-65
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    • 2024
  • 내화 구조물에서는 환기 계수, 재료 탄성 계수, 항복 강도, 열팽창 계수, 외력 및 화재 위치에서 불확실성이 관찰된다. 환기 불확실성은 화재 온도에 영향을 미치고, 이는 다시 구조물 온도에 영향을 미친다. 이러한 온도는 재료 특성과 함께 불확실한 구조적 응답으로 이어지고 있다. 화재 시 구조적 비선형 거동으로 인해 몬테카를로 시뮬레이션을 사용하여 화재 취약성을 계산하는데, 이는 시간이 많이 소요된다. 따라서 머신러닝 알고리즘을 활용해 화재 취약성 분석을 예측함으로써 효율성을 높이고 정확성을 확보하려는 연구가 진행되고 있다. 이 연구에서는 화재 크기, 위치, 구조 재료 특성의 불확실성을 고려하여 철골 모멘트 골조 건물의 화재 취약성을 예측했다. 화재 시 비선형 구조 거동 결과를 기반으로 한 취약성 곡선은 로그 정규 분포를 따른다. 마지막으로 제안한 방법이 화재 취약성을 정확하고 효율적으로 예측할 수 있음을 보여주었다.

STRAIN AND TEMPERATURE CHANGES DURING THE POLYMERIZATION OF AUTOPOLYMERIZING ACRYLIC RESINS

  • Ahn Hyung-Jun;Kim Chang-Whe;Kim Yung-Soo
    • 대한치과보철학회지
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    • 제39권6호
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    • pp.709-734
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    • 2001
  • The aims of this experiment were to investigate the strain and temperature changes simultaneously within autopolymerzing acrylic resin specimens. A computerized data acquisition system with an electrical resistance strain gauge and a thermocouple was used over time periods up to 180 minutes. The overall strain kinetics, the effects of stress relaxation and additional heat supply during the polymerization were evaluated. Stone mold replicas with an inner butt-joint rectangular cavity ($40.0{\times}25.0mm$, 5.0mm in depth) were duplicated from a brass master mold. A strain gauge (AE-11-S50N-120-EC, CAS Inc., Korea) and a thermocouple were installed within the cavity, which had been connected to a personal computer and a precision signal conditioning amplifier (DA1600 Dynamic Strain Amplifier, CAS Inc., Korea) so that real-time recordings of both polymerization-induced strain and temperature changes were performed. After each of fresh resin mixture was poured into the mold replica, data recording was done up to 180 minutes with three-second interval. Each of two poly(methyl methacrylate) products (Duralay, Vertex) and a vinyl ethyl methacrylate product (Snap) was examined repeatedly ten times. Additionally, removal procedures were done after 15, 30 and 60 minutes from the start of mixing to evaluate the effect of stress relaxation after deflasking. Six specimens for each of nine conditions were examined. After removal from the mold, the specimen continued bench-curing up to 180 minutes. Using a waterbath (Hanau Junior Curing Unit, Model No.76-0, Teledyne Hanau, New York, U.S.A.) with its temperature control maintained at $50^{\circ}C$, heat-soaking procedures with two different durations (15 and 45 minutes) were done to evaluate the effect of additional heat supply on the strain and temperature changes within the specimen during the polymerization. Five specimens for each of six conditions were examined. Within the parameters of this study the following results were drawn: 1. The mean shrinkage strains reached $-3095{\mu}{\epsilon},\;-1796{\mu}{\epsilon}$ and $-2959{\mu}{\epsilon}$ for Duralay, Snap and Vertex, respectively. The mean maximum temperature rise reached $56.7^{\circ}C,\;41.3^{\circ}C$ and $56.1^{\circ}C$ for Duralay, Snap, and Vertex, respectively. A vinyl ethyl methacrylate product (Snap) showed significantly less polymerization shrinkage strain (p<0.01) and significantly lower maximum temperature rise (p<0.01) than the other two poly(methyl methacrylate) products (Duralay, Vertex). 2. Mean maximum shrinkage rate for each resin was calculated to $-31.8{\mu}{\epsilon}/sec,\;-15.9{\mu}{\epsilon}/sec$ and $-31.8{\mu}{\epsilon}/sec$ for Duralay, Snap and Vertex, respectively. Snap showed significantly lower maximum shrinkage rate than Duralay and Vertex (p<0.01). 3. From the second experiment, some expansion was observed immediately after removal of specimen from the mold, and the amount of expansion increased as the removal time was delayed. For each removal time, Snap showed significantly less strain changes than the other two poly(methyl methacrylate) products (p<0.05). 4. During the external heat supply for the resins, higher maximum temperature rises were found. Meanwhile, the maximum shrinkage rates were not different from those of room temperature polymerizations. 5. From the third experiment, the external heat supply for the resins during polymerization could temporarily decrease or even reverse shrinkage strains of each material. But, shrinkage re-occurred in the linear nature after completion of heat supply. 6. Linear thermal expansion coefficients obtained from the end of heat supply continuing for an additional 5 minutes, showed that Snap exhibited significantly lower values than the other two poly(methyl methacrylate) products (p<0.01). Moreover, little difference was found between the mean linear thermal expansion coefficients obtained from two different heating durations (p>0.05).

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