• 제목/요약/키워드: hybrid thermal loads

검색결과 6건 처리시간 0.022초

Ozonization of SWCNTs on thermal/mechanical properties of basalt fiber-reinforced composites

  • Kim, Seong Hwang;Heo, Young-Jung;Park, Soo-Jin
    • Steel and Composite Structures
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    • 제31권5호
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    • pp.517-527
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    • 2019
  • To move forward in large steps rather than in small increments, the community would benefit from a systematic and comprehensive database of multi-scale composites and measured properties, driven by comprehensive studies with a full range of types of fiber-reinforced polymers. The multi-scale hierarchy is a promising chemical approach that provides superior performance in synergistically integrated microstructured fibers and nanostructured materials in composite applications. Achieving high-efficiency thermal conductivity and mechanical properties with a simple surface treatment on single-walled carbon nanotubes (SWCNTs) is important for multi-scale composites. The main purpose of the project is to introduce ozone-treated SWCNTs between an epoxy matrix and basalt fibers to improve mechanical properties and thermal conductivity by enhancing dispersion and interfacial adhesion. The obvious advantage of this approach is that it is much more effective than the conventional approach at improving the thermal conductivity and mechanical properties of materials under an equivalent load, and shows particularly significant improvement for high loads. Such an effort could accelerate the conversion of multi-scale composites into high performance materials and provide more rational guidance and fundamental understanding towards realizing the theoretical limits of thermal and mechanical properties.

선박 발전기용 연료전지 시스템의 효율에 관한 연구 (A Study on the Efficiency of Fuel Cells for Marine Generators)

  • 이정희;곽재섭;김광희
    • 한국기계가공학회지
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    • 제17권5호
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    • pp.52-57
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    • 2018
  • Most current ships have adopted on-board diesel generators to produce electricity, but the overall efficiency of equipment is down to about 50% due to thermal losses from operations such as exhaust gas, jacket water cooler, scavenge air cooler, etc. Recently, fuel cells have been highlighted as a promising technology to reduce the effect on the environment and have a higher efficiency. Therefore, this paper suggested a solid oxide fuel cell (SOFC)-gas turbine (GT) using waste heat from a SOFC and SOFC-GT-steam turbine (ST) with Rankine cycle. To compare both configurations, the fuel flow rate, current density, cell voltage, electrical power, and overall efficiency were evaluated at different operating loads. The overall efficiency of both SOFC hybrid systems was higher than the conventional system.

다단계 온도프리스트레싱을 이용한 강거더교의 보강에 관한 연구 (A Study on Strengthening of Steel Girder Bridge using Multi-Stepwise Thermal Prestressing Method)

  • 김상효;김준환;김준환
    • 한국강구조학회 논문집
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    • 제18권6호
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    • pp.717-726
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    • 2006
  • 교량의 보강공법으로 주로 사용되는 외부강봉을 이용한 후인장공법은 적용범위가 넓고 교량의 극한 및 항복에 대한 강성을 증가시켜 휨 보강 효과가 뛰어나지만, 모재접합부의 응력집중, 비효율적인 하중분배, 고정앵커부설치, 유지관리의 어려움 등의 단점이 있다. 본 연구는 기존의 외부강봉을 이용한 후인장공법이 가지는 단점을 보완하고 강판접합공법의 장점을 접목한 새로운 개념의 보강공법으로 커버플레이트의 열변형 특성을 이용한 다단계 프리스트레싱 보강공법을 제안하고자 한다. 커버플레이트의 열변형 특성을 이용한 다단계 프리스트레싱 보강공법은 커버플레이트를 다단계로 가열하여 가열단계별로 거더의 하부플랜지에 고장력볼트로 접합한 뒤, 열원을 제거하여 발생하는 다단계 수축력을 보강에 필요한 프리스트레싱력으로 이용하는 보강공법이다. 커버플레이트의 다단계 프리스트레싱에 의한 보강효과는 커버플레이트의 온도분포와 가열구간에 따라 결정되므로 본 연구에서는 커버플레이트의 열전달 모형실험 및 강거더 모형 실험을 통하여 커버플레이트의 열전달해석과 프리스트레스 도입효과를 분석하였으며, 단경간 강거더 교량을 대상으로 제안된 보강공법의 효율성 및 적용성을 검토하였다.

Dynamic response of functionally gradient austenitic-ferritic steel composite panels under thermo-mechanical loadings

  • Isavand, S.;Bodaghi, M.;Shakeri, M.;Mohandesi, J. Aghazadeh
    • Steel and Composite Structures
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    • 제18권1호
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    • pp.1-28
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    • 2015
  • In this paper, the dynamic response of functionally gradient steel (FGS) composite cylindrical panels in steady-state thermal environments subjected to impulsive loads is investigated for the first time. FGSs composed of graded ferritic and austenitic regions together with bainite and martensite intermediate layers are analyzed. Thermo-mechanical material properties of FGS composites are predicted according to the microhardness profile of FGS composites and approximated with appropriate functions. Based on the three-dimensional theory of thermo-elasticity, the governing equations of motionare derived in spatial and time domains. These equations are solved using the hybrid Fourier series expansion-Galerkin finite element method-Newmark approach for simply supported boundary conditions. The present solution is then applied to the thermo-elastic dynamic analysis of cylindrical panels with three different arrangements of material compositions of FGSs including ${\alpha}{\beta}{\gamma}M{\gamma}$, ${\alpha}{\beta}{\gamma}{\beta}{\alpha}$ and ${\gamma}{\beta}{\alpha}{\beta}{\gamma}$ composites. Benchmark results on the displacement and stress time-histories of FGS cylindrical panels in thermal environments under various pulse loads are presented and discussed in detail. Due to the absence of similar results in the specialized literature, this paper is likely to fill a gap in the state of the art of this problem, and provide pertinent results that are instrumental in the design of FGS structures under time-dependent mechanical loadings.

콘크리트 교량의 보강을 위한 온도 프리스트레싱 공법의 실험적 연구 (An Experimental Study on Thermal Prestressing Method for Strengthening Concrete Bridge)

  • 안진희;김준환;최규태;김상효
    • 콘크리트학회논문집
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    • 제19권4호
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    • pp.483-490
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    • 2007
  • 현재 콘크리트 교량의 보강 공법으로 주로 사용되는 외부 강봉을 이용한 후 인장 공법은 적용 범위가 넓고 교량의 극한 및 항복에 대한 강성을 증가시켜 휨보강 효과가 뛰어나지만, 모재 접합부의 응력집중, 비효율적인 하중 분배, 고정앵커부 설치, 유지관리의 어려움 등의 단점이 있다. 본 연구는 기존의 외부 강봉을 이용한 후 인장 공법이 가지는 단점을 보완하고 강판 접합 공법의 장점을 접목한 새로운 개념의 보강 공법으로 온도 프리스트레싱 보강 공법을 제안하고자 한다. 온도 프리스트레싱 보강 공법은 프리스트레싱 보강 강판을 다단계로 가열하여 가열 단계별로 콘크리트 교량의 하부에 접합한 뒤, 열원을 제거하여 발생하는 다단계 수축력을 보강에 필요한 프리스트레싱력으로 이용하는 보강 공법이다. 본 연구에서 제안된 온도 프리스트레싱 보강 공법의 적용을 위한 기초적인 연구로 프리스트레싱 보강 강판을 콘크리트 교량에 설치하기 위한 고정장치의 마찰저항 강도 실험과 온도 프리스트레싱에 의하여 콘크리트 교량에 도입되는 프리스트레싱 효과의 확인을 위한 응력 도입 실험을 실시하여 제안된 공법을 검증하였다.

부하 변화에 따른 리니어엔진의 동적·연소특성에 대한 연구 (A Study About Effects of Changed Load on Dynamic·Combustion Characteristics of Linear Engine)

  • 이재완;임옥택;김강출
    • 한국수소및신에너지학회논문집
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    • 제24권3호
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    • pp.206-215
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    • 2013
  • A linear engine has advantages in terms of volume and weight, because there are no rotating parts. Thus, it is considered that linear engines might be suitable in hybrid vehicles. However, the linear engine has challenges in terms of the engine ignition timing and efficiency, so the engine has not been commercialized yet. In this study, the dynamic and combustion characteristics of the linear engine might be specified by various loads which are changed by conductance. The engine used in this experiment consists of two combustion chambers, four compressors, two linear alternators and a mover with a piston head and magnets. The way fuel is supplied in the experiment is by propane fuel being mixed with air in the carburetor, then being delivered into combustion cylinders via compressors. In the experiment, conductance is altered from 0.04 to 0.16mho, and the ignition timing is ahead by just 5.0mm from the maximum stroke. As a result of the experiment, frequency, stroke, input calories and maximum pressure are decreased when the conductance is increased. Meanwhile, IMEP, generation efficiency and electric power are increased when the conductance is increased. Therefore, it might confirm that high conductance generates more efficient electric power, but that thermal efficiency is the highest in the state of 0.08mho.