• 제목/요약/키워드: Carbon Foam

검색결과 139건 처리시간 0.027초

건축물 외단열재의 열전달평가를 통한 화재 억제 방안 연구 (Study on the Fire Suppression by Heat Transfer of Thermal Insulation Materials)

  • 류화성;신상헌;송성용;김득모
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2018년도 춘계 학술논문 발표대회
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    • pp.277-278
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    • 2018
  • Improvement of insulation performance of buildings is a major part. Adiabatic method The adiabatic method minimizes the heat loss of the building. External insulation uses insulation to prevent fire. Ambient air hazards are less prone to fire. When a fire occurs, a phenolic pattern is formed and bond strength with the wall increases. EPS insulation and phenol foam were used to compare external heat transfer and external heat transfer. The heat transfer properties of phenolic foam and styrofoam were evaluated as follows. In the mortar and styrofoam structure, the problem of styrofoam reaching the burning point occurred before the collapse of the mortar, and the phenol foam had a problem in that when the direct fire was continued on the phenol foam. The characteristics of continuous infiltration appeared. In the case of mortar and phenol foam + styrofoam, the heat penetrated into the interior due to the shrinkage due to the shrinkage of the carbon screen on the phenol foam. However, when reinforced with glass mesh on the outer surface, And to reduce infiltration.

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평직 탄소섬유 복합재료-고분자 포움 샌드위치 구조의 성형 중 미소변형에 관한 연구 (A Study on the Micro-deformation of Plain Weave Carbon/Epoxy Composite-Polymer Foam Sandwich Structures during Curing)

  • 김용수;장승환
    • Composites Research
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    • 제17권6호
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    • pp.28-36
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    • 2004
  • 복합재료의 성형조건과 재료의 변형간의 관계를 규명하기 위해 PVC 포움-직물 복합재료 샌드위치 구조의 성형공정 중 토우 구조의 미소 변형을 고찰하였다. 실험에 사용한 포움은 4가지 밀도를 가지는 PVC 포움이며, 면재로는 탄소섬유게폭시 프리프레그(3k)를 사용하였다. 디지털 현미경과 이미지 분석 도구를 사용하여 직물 복합재료의 굴곡 각과 토우 진폭 등의 토우 파라메터를 측정하여 서로 비교하였다. 성형 중 포움의 변화가 직물 복합재료 구조의 변형에 미치는 영향을 파악하기 위해 세 가지 온도 조건($25^{\circ}C$, $80{\circ}C$, $125^{\circ}C$)에서 포움의 압축 실험을 수행하였다. 복합재료 토우 구조의 현미경 관찰 결과 토우의 미소 변형은 포움의 밀도와 성형 압력에 따라 서로 다른 경향을 나타내었으며. 특히 포움의 변형 거동에 큰 영향을 받는 것을 확인하였다.

Increasing the attractiveness of physical education training with the involvement of nanotechnology

  • Jinyan Ge;Yuxin Hong;Rongtian Zeng;Yunbin Li;Mostafa Habibi
    • Advances in concrete construction
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    • 제16권6호
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    • pp.291-302
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    • 2023
  • As the first part of the body that strikes the ground during running, sports shoes are especially important for improving performance and reducing injuries. The use of new nanotechnology materials in the shoe's sole that can affect the movement angle of the foot and the ground reaction forces during running has not been reported yet. It is important to consider the material of the sole of the shoe since it determines the long-term performance of sports shoes, including their comfort while walking, running, and jumping. Running performance can be improved by polymer foam that provides good support with low energy dissipation (low energy dissipation). Running shoes have a midsole made of ethylene propylene copolymer (EPP) foam. The mechanical properties of EPP foam are, however, low. To improve the mechanical performance of EPP, conventional mineral fillers are commonly used, but these fillers sacrifice energy return. In this study, to improve the magnificence of physical education training with nanotechnology, carbon nanotubes (CNTs) derived from recycled plastics were prepared by catalytic chemical vapor deposition and used as nucleating and reinforcing agents. As a result of the results, the physical, mechanical, and dynamic response properties of EPP foam combined with CNT and zinc oxide nanoparticles were significantly improved. When CNT was added to the nanocomposites with a weight percentage of less than 0.5 wt%, the wear resistance, physical properties, dynamic stiffness, compressive strength, and rebound properties of EPP foams were significantly improved.

스테인리스 스틸 AOD 슬래그를 이용한 폼 콘크리트의 탄소포집 성능 (Carbon-capture Performance of foam Concrete Using Stainless Steel Slag)

  • 김병준;유성원;최영철
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권4호
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    • pp.18-25
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    • 2020
  • 본 연구에서는 스테인리스 스틸 AOD 슬래그를 이용한 폼 콘크리트의 역학적 및 탄소포집 성능을 조사하였다. AOD 슬래그 바인더로 사용하며 기포율이 69 ± 0.5%이고, 슬러리 밀도는 573.2 ~ 578.6 kg/㎥인 폼 콘크리트를 제작하였다. 탄산화에 의한 영향을 살펴보기 위해 배합을 마친 폼 콘크리트는 일반 양생 및 탄산화 양생 두 가지로 하였다. 압축강도 측정결과 Plain 시편에 비해 AOD 슬래그를 30% 치환한 ST30 시편은 탄산화 양생에 따라 강도가 증가하였다. 폼 콘크리트의 이미지 분석결과에서도 ST30시편이 Plain시편 보다 공극률이 낮으며 평균 공극 크기도 작아 압축강도가 높음을 확인할 수 있었다. 또한 SEM 분석을 통하여 AOD 슬래그의 탄산화에 의한 탄산칼슘의 생성을 확인하였다. TGA분석을 통해 AOD 슬래그의 혼입으로 CO2 uptake의 증가를 확인하였다. 폼 콘크리트는 일반 콘크리트에 비해 공극률이 높으므로 AOD 슬래그를 이용하면 탄산화 속도가 빨라 탄소 포집 성능 향상을 기대할 수 있을 것으로 판단된다.

슈퍼커패시터용 멜라민 폼으로부터 질소가 자가 도핑된 다공성 탄소 재료의 제조 (Fabrication of Nitrogen Self-Doped Porous Carbons from Melamine Foam for Supercapacitors)

  • 이병민;장형석;최재학;홍성권
    • 한국재료학회지
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    • 제31권5호
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    • pp.264-271
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    • 2021
  • Porous carbons have been widely used as electrode material for supercapacitors. However, commercial porous carbons, such as activated carbons, have low electrochemical performance. Nitrogen-doping is one of the most promising strategies to improve electrochemical performance of porous carbons. In this study, nitrogen self-doped porous carbon (NPC) is prepared from melamine foam by carbonization to improve the supercapacitive performance. The prepared NPC is characterized in terms of the chemical structures and elements, morphology, pore structures, and electrochemical performance. The results of the N2 physisorption measurement, X-ray diffraction, and Raman analyses reveal that the prepared NPC has bimodal pore structures and pseudo-graphite structures with nitrogen functionality. The NPC-based electrode exhibits a gravimetric capacitance of 153 F g-1 at 1 A g-1, a rate capability of 73.2 % at 10 A g-1, and an outstanding cycling ability of 97.85 % after 10,000 cycles at 10 A g-1. Thus, the NPC prepared in this study can be applied as electrode material for high-performance supercapacitors.

셀 가스분석을 이용한 우레탄폼의 열전도도 장기변화 예측 (The Prediction of Time-Dependent Thermal Conductivity of Polyurethane Foam with Cell Gas Analysis)

  • 이효진;전종한;김진석;이진복;강남구
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2009년도 하계학술발표대회 논문집
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    • pp.1367-1372
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    • 2009
  • A proprietary device is adopted to break out the membrane of cell in the rigid polyurethane foam. As it is known, the membrane of cell is hardly tearing-off thoroughly in a mechanical way due to both its elastic characteristic and micro sized pores. In this study, a novel experimental approach is introduced to burst out all gases inside the cells of the rigid polyurethane foam by abrasively grinding micro-cells completely into fine powder. The biggest advantage of this approach is to be capable of releasing all gases out from the cell even in the micro pores. As clearly reflected from the repeatability, the accuracy of the result is highly improved and high confidence in the data sets as well. For the measurements of not only gas composition but partial pressure for each gas simultaneously as well, a precision gas mass spectrometer is used in-line directly to the abrasive grinding device. To control the starting point of the polyurethane foam, all samples were prepared on site in the laboratory. Manufactured time is one of the most critical factors in characterization of cell gas composition because it is known that one of gas composition, especially, carbon dioxide, is diffused out dramatically in a short period of time as soon as it is foamed.

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FOAM CORE SANDWICH 구조재의 Mode I 층간분리 파괴인성의 해석에 관한 연구 (A Study on Analysis of Mode I interlaminar Fracture Toughness of Foam Core Sandwich Structures)

  • 손세원;권동안;홍성희
    • 한국정밀공학회지
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    • 제17권9호
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    • pp.81-86
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    • 2000
  • This paper was carried out to investigate the characteristics of interlaminar fracture toughness of foam core sandwich structures under opening loading mode by using the double cantilever beam (DCB) specimens in Carbon/Epoxy and foam core composites. instead of using symmetric geometry of DCB specimen non-symmetric DCB specimen was used to calculate the interlaminar fracture toughness. Three approaches for calculating the energy release rate({{{{ {G }_{IC } }}}}) were compared. Fracture toughness of foam core sandwich structures by autoclave vacuum bagging and hotpress were compared and analyzed. Experiment nonlinear beam bending FEM method were performed. Suggested bonding surface compensation and equivalent area inertia moment was used to calculate the energy release rate in nonlinear analytical results. The conclusions among experimental nonlinear analytical and FEM results was observed. The vacuum bagging method was shown to be able to substitute method in stead of autoclave without serious loss of Mode I energy release rate({{{{ {G }_{IC }}}}}) to be able to substitute method in stead of autoclave without serious loss of Mode I energy release rate({{{{ {G }_{IC }}}}}).

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Phenol/formaldehyde-derived macroporous carbon foams prepared with aprotic ionic liquid as liquid template

  • Byun, Hae-Bong;Nam, Gi-Min;Rhym, Young-Mok;Shim, Sang-Eun
    • Carbon letters
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    • 제13권2호
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    • pp.94-98
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    • 2012
  • Herein, macroporous carbon foams were successfully prepared with phenol and formaldehyde as carbon precursors and an ionic liquid, 1-butyl-3-methylimidazolium hexafluorophosphate ($BMIPF_6$), as a pore generator by employing a polymerization-induced phase separation method. During the polycondensation reaction of phenol and formaldehyde, $BMIPF_6$ forms a clustered structure which in turn yields macropores upon carbonization. The morphology, pore structure, electrical conductivity of carbon foams were investigated in terms of the amount of the ionic liquid. The as-prepared macroporous carbon foams had around 100-150 ${\mu}m$-sized pores. More importantly, the electrical conductivity of the carbon foams was linearly improved by the addition of $BMIPF_6$. To the best of the author's knowledge, this is the first result reporting the possibility of the use of an ionic liquid to prepare porous carbon materials.

콘칼로리미터와 적외선분광계(FTIR)를 이용한 폼블럭의 연소특성에 대한 실험적 연구 (A Study on the Fire Characterization of Foam block using Cone-calorimeter and FTIR)

  • 한봉훈;서동호;권영희;민세홍
    • 한국화재소방학회논문지
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    • 제31권6호
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    • pp.23-32
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    • 2017
  • 폼블럭은 셀프 인테리어 용품으로 새롭게 유행하고 있는 건축마감재로 폴리에틸렌을 주성분으로 하여 제조되고 있어 화재에 취약할 것으로 판단된다. 시중에 판매되고 있는 폼블럭 2종(일반, 난연)을 KS F ISO 5660-1(연소성능시험)의 기준에 따라 화재시 발생되는 연소특성을 파악하였다. 또한 적외선분광계(FTIR)를 이용하여 시편의 연소로 발생하는 가스중 대표적 독성가스를 측정한 후 기존의 독성모델에 적용하였다. 콘칼로리미터 시험 결과 2종의 시편 모두 복사열 차단장치를 제거하자마자 인화 및 불꽃연소가 시작되어, 화재시 화염의 급속한 전파 요인이 될 수 있음을 확인하였으며, 적외선분광계를 통한 연소가스 분석 결과, 일반적인 연소가스인 이산화탄소와 일산화탄소뿐만 아니라 인체에 심각한 위해를 주는 아크롤레인, 암모니아 및 시안화수소 등이 다량 검출되었다. 본 연구를 통해 폼블럭 제품은 착화성과 발열량이 높으며 유해가스가 다량 방출될 수 있음을 실험을 통해 확인하였다. 따라서 폼불럭 사용에 따른 재료의 연소특성, 즉 착화성 저감, 최대 열방출률 제한 및 주요 유해가스의 농도를 제한하는 기준마련도 시급히 요구된다.