• 제목/요약/키워드: Silicate fiber

검색결과 52건 처리시간 0.02초

폴리프로필렌/점토 나노복합체의 하이브리드 나노구조에 따른 기계적 성질 및 결정화거동 변화 (Hybrid Nanostructure-dependent Mechanical Properties and Crystallization Behaviors of Polypropylene/Clay Nanocomposites)

  • 최기운;이한섭;강복춘;양회창
    • 폴리머
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    • 제34권4호
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    • pp.294-299
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    • 2010
  • 아미노실란 처리된 점토를 제조하여, 이를 분자량이 서로 다른 폴리프로필렌(140 kg/mol과 410 kg/mol) 과 상용화제인 무수말레인산 그래프트 폴리프로필렌(50 kg/mol)과 함께 $170^{\circ}C$$190^{\circ}C$에서 용융혼합법으로 각각의 폴리프로필렌/점토 나노복합체를 제조하였다. 무수말레인산 그래프트 폴리프로필렌과 용융혼합과정에서 낮은 분자량의 폴리프로필렌은 점토 층 사이로 쉽게 침투하여 층간 거리를 58 $\AA$ 이상으로 증가시키지만, 첨가된 점토는 60~80 nm 두께의 응집체로 나노복합체 내에 분산상을 이룬다. 이와 달리 높은 분자량의 폴리프로필렌 기반 나노복합체에서는 점토는 27 $\AA$로 낮은 박리 정도를 보이며, 전반적으로 고른 점토 분산상을 형성한다. 분자 량 및 용융혼합공정의 차이에 따른 폴리프로필렌/점토 나노복합체의 미세 모폴로지 차이로 기계적 물성 및 결정 화거동이 관찰되었으며, 분자량 410(kg/mol)인 폴리프로필렌은 개질된 점토를 1~3 wt% 첨가함으로써 순수 폴 리프로필렌의 연성특성을 유지하면서 향상된 인장강도와 탄성률을 보였다.

SOFC용 유리-세라믹섬유 복합기밀재의 고온 기체누설 거동 (High Temperature Gas Leak Behavior of Glass-Ceramic Fiber Composite Seals for SOFC Applications)

  • 이재춘;권혁천;권영필;박성;장진식;이종호;김주선;이해원
    • 한국세라믹학회지
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    • 제42권12호
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    • pp.842-845
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    • 2005
  • Glass composites containing ceramic fiber have been developed for Solid Oxide Fuel Cell (SOFC) seals. Effect of glass type, loading pressure and thermal cycle the leak rates of composite seals was investigated. Seal performance of two commercial glasses was compared with that of $SiO_2BaO-B_2O_3$ glass synthesized in this work. The leak rate for seals made of pyrex(R) increases from $\~0.0005\;to\;\~0.004sccm/cm$ as the gas pressure increases from 10 to 50 kPa. The soda lime silicate glass seal shows the leak rate two times higher than the one made of pyrex(R) or $SiO_2BaO-B_2O_3$ glass. The viscosity of glass at the seal test temperature is presumed to affect the leak rate of the glass seal. As the applied loading pressure increases from 0.4 to 0.8 MPa at $750^{\circ}C$, the leak rate decreases from 0.038 to 0.024 sccm/cm for composite seals. It has been found that during 50 thermal cycles between $450^{\circ}C\;to\;700^{\circ}C$ leak rates remained almost constant, ranging from 0.025 to 0.03sccm/cm. The results showed an excellent thermal cycle stability as well as sealability of the glass matrix ceramic fiber composite seals.

실리카의 입자 크기와 Aging 시간이 지오폴리머 섬유 복합체의 기계적 물성 향상에 미치는 효과 (Effect of Silica Particle Size and Aging Time on the Improvement of Mechanical Properties of Geopolymer-Fiber Composites)

  • 이윤주;장석훈;오민경;신동근;최두현;이지은;오창빈
    • 한국재료학회지
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    • 제34권3호
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    • pp.175-183
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    • 2024
  • Geopolymer, also known as alkali aluminum silicate, is used as a substitute for Portland cement, and it is also used as a binder because of its good adhesive properties and heat resistance. Since Davidovits developed Geopolymer matrix composites (GMCs) based on the binder properties of geopolymer, they have been utilized as flame exhaust ducts and aircraft fire protection materials. Geopolymer structures are formed through hydrolysis and dehydration reactions, and their physical properties can be influenced by reaction conditions such as concentration, reaction time, and temperature. The aim of this study is to examine the effects of silica size and aging time on the mechanical properties of composites. Commercial water glass and kaolin were used to synthesize geopolymers, and two types of silica powder were added to increase the silicon content. Using carbon fiber mats, a fiber-reinforced composite material was fabricated using the hand lay-up method. Spectroscopy was used to confirm polymerization, aging effects, and heat treatment, and composite materials were used to measure flexural strength. As a result, it was confirmed that the longer time aging and use of nano-sized silica particles were helpful in improving the mechanical properties of the geopolymer matrix composite.

Evaluation on mechanical enhancement and fire resistance of carbon nanotube (CNT) reinforced concrete

  • Yu, Zechuan;Lau, Denvid
    • Coupled systems mechanics
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    • 제6권3호
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    • pp.335-349
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    • 2017
  • To cope with the demand on giant and durable buildings, reinforcement of concrete is a practical problem being extensively investigated in the civil engineering field. Among various reinforcing techniques, fiber-reinforced concrete (FRC) has been proven to be an effective approach. In practice, such fibers include steel fibers, polyvinyl alcohol (PVA) fibers, polyacrylonitrile (PAN) carbon fibers and asbestos fibers, with the length scale ranging from centimeters to micrometers. When advancing such technique down to the nanoscale, it is noticed that carbon nanotubes (CNTs) are stronger than other fibers and can provide a better reinforcement to concrete. In the last decade, CNT-reinforced concrete attracts a lot of attentions in research. Despite high cost of CNTs at present, the growing availability of carbon materials might push the usage of CNTs into practice in the near future, making the reinforcement technique of great potential. A review of existing research works may constitute a conclusive reference and facilitate further developments. In reference to the recent experimental works, this paper reports some key evaluations on CNT-reinforced cementitious materials, covering FRC mechanism, CNT dispersion, CNT-cement structures, mechanical properties and fire safety. Emphasis is placed on the interplay between CNTs and calcium silicate hydrate (C-S-H) at the nanoscale. The relationship between the CNTs-cement structures and the mechanical enhancement, especially at a high-temperature condition, is discussed based on molecular dynamics simulations. After concluding remarks, challenges to improve the CNTs reinforcement technique are proposed.

Concentration optimization of Tb/Yb co-doped alumino-germanosilicate optical fiber for upconversion visible laser applications

  • Lin, Aoxiang;Watekar, Pramod R.;Liu, Xueming;Cho, Hye-Jin;Chung, Young-Joo;Han, Won-Taek
    • 한국광학회:학술대회논문집
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    • 한국광학회 2008년도 동계학술발표회 논문집
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    • pp.249-250
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    • 2008
  • We report on the visible photoluminescence of the Tb/Yb co-doped alumino-germano-silicate fibers for visible fiber laser application. By changing the concentration ratios of $Tb^{3+}$ to $Yb^{3+}$, we optimized the solution doping conditions and obtained the highest emission efficiency at 546nm. The luminescence intensity at 546nm was found to increase with the relative increase of $Tb^{3+}$ ions.

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콘크리트내 표면매립보강된 FRP의 내화단열방법과 연단거리에 따른 온도변화 (Temperature Variation Corresponding to the Protection Method and Edge Distance in Near-Surface-Mounted FRP in Concrete with Fire Protection)

  • 임종욱;서수연
    • 대한건축학회논문집:구조계
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    • 제35권11호
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    • pp.137-146
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    • 2019
  • Recently, the Near-Surface-Mounting method using Fiber reinforced polymer (FRP) has been developed and applied to the reinforcement of many concrete structural members. However, as a part of the fire resistance design, there is a lack of research related to fire insulation for the areas reinforced with FRP. In case of NSM reinforcement, there is a difference in the transferred temperature from the external surface to the groove corresponding to the location of the groove where the FRP is embedded, and the effect of this should be reflected in the fireproof insulation design. Therefore, in this study, after forming grooves for surface embedding in concrete blocks, fireproof insulation reinforcement was performed using Calcium Silicate (CS) fireproof board and an experiment to evaluate the temperature transfer was performed. By observing the temperature at these groove positions, the reduction of temperature transfer according to fireproof insulation detail was studied. As a result, when the NSM-FRP is properly fire-insulated using the CS-based fireproof board, the epoxy inside the groove does not reach its glass transition temperature until the external temperature reaches $800^{\circ}C$.

Permanent Shotcrete Tunnel Lining 구축을 위한 고성능 숏크리트 개발( I : 고강도 숏크리트 개발을 위한 새로운 급결제 적용) (Development of High Performance Shotcrete for Permanent Shotcrete Tunnel Lining(I : Application of New Type Accelerator for High Strength Shotcrete))

  • 박해균;이명섭;김재권;안병제
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 봄 학술발표회 논문집
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    • pp.1023-1030
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    • 2002
  • From the early 1980s, the New Austrian Tunnelling Method (NATM) has been developed as a one of the standard tunneling method in Korea. Approximately 10 years ago, wet-mix shotcrete with sodium silicate accelerator (waterglass) was introduced and widely used to tunnel lining and underground support. However, this accelerator had some disadvantages due to the decrease of long-term strength compared to plain concrete (without accelerator) and low quality of the hardened shotcrete. In order to compensate for these disadvantages, recently developed alkali-free accelerator has been successfully demonstrated in numerous projects and applications as a new material to make tunnels more durable and safer. An experimental investigation was carried out in order to verify the strength behavior of wet-mix Steel Fiber Reinforced Shotcrete (SFRS) with alkali-free accelerator. Compressive strength, flexural strength and equivalent flexural strength were measured by testing specimens extracted from the shotcrete panels. From the results, wet-mix SFRS with alkali-free accelerator exhibited excellent strength improvement compared to the conventional shotcrete accelerator.

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Processing of Microcellular Nanocomposite Foams by Using a Supercritical Fluid

  • Wee, Dongho;Seong, Dong Gi;Youn, Jae Ryoun
    • Fibers and Polymers
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    • 제5권2호
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    • pp.160-169
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    • 2004
  • Polystyrene/layered silicate nanocomposites were prepared by melt intercalation. To examine the distribution of the clay in polymer matrix, small angle X-ray scattering (SAXS) and transmission electron microscopy (TEM) were used. Intercalated nanocomposites were obtained and their rheological properties were investigated. Microcellular nanocomposite foams were produced by using a supercritical fluid. As clay contents increased, the cell size decreased and the cell density increased. It was found that layered silicates could operate as heterogeneous nucleation sites. As the saturation pressure increased and the saturation temperature decreased, the cell size decreased and the cell density increased. Microcellular foams have different morphology depending upon the dispersion state of nanoclays.

Degradation and Rheological Properties of Biodegradable Nanocomposites Prepared by Melt Intercalation Method

  • Lee, Su-Kyong;Seong, Dong-Gi;Youn, Jae-Ryoun
    • Fibers and Polymers
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    • 제6권4호
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    • pp.289-296
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    • 2005
  • Biodegradable nanocomposites were prepared by mixing a polymer resin and layered silicates by the melt intercalation method. Internal structure of the nanocomposite was characterized by using the small angle X-ray scattering (SAXS) and transmission electron microscope (TEM). Nanocomposites having exfoliated and intercalated structures were obtained by employing two different organically modified nanoclays. Rheological properties in shear and extensional flows and biodegradability of nanocomposites were measured. In shear flow, shear thinning behavior and increased storage modulus were observed as the clay loading increased. In extensional flow, strain hardening behavior was observed in well dispersed system. Nanocomposites with the exfoliated structure had better biodegradability than nanocomposites with the intercalated structure or pure polymer.

산업부산물을 사용한 강섬유보강 콘크리트의 장기변형 특성에 관한 연구(I) (A Study on the Long-term Deformation of Steel Fiber Reinforced Concrete Utilizing By-Products of Industry)

  • 박승범;김의성;윤의식;홍석주
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 봄 학술발표회 논문집
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    • pp.308-314
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    • 1997
  • Shrinkage and creep are the fundamental properties of concrete. These long term deformations can be seen as bothersome(increased deflection) or can be seen as reduction of compressive stress of prestressed concrete. Steel fibers advance the mechanical properties of concrete:tensile strength, ductility, flexural strength, fracture toughness, and post-cracking resistance, etc...Silica fume is pozzolanic material which combines with hydrated lime to generate silicate materials which increase the compressive strength and reduce somewhat the creep of concrete. This paper is the result of the long-term deformation by silica fume and steel fibers with varying percentages.

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