• 제목/요약/키워드: nano composites

검색결과 644건 처리시간 0.027초

미소구체를 이용한 3차원 Sn-C 복합체 제조 (Fabrication of 3-dimensional Sn-C Composites Using Microsphere)

  • 박보건;김석범;박용준
    • 한국전기전자재료학회논문지
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    • 제23권9호
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    • pp.741-746
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    • 2010
  • Three-dimensionally ordered macro-porous Sn-C composites were prepared by using polystyrene microsphere as a template. The Sn-C composites were composed of well-interconnected pore with circular shape and wall structure with wall thickness of a few tens of nano-meters. This porous three-dimensional structure is readily and uniformly accessible to the electrolyte, which facilitates lithium ion diffusion during charge-discharge reactions. The wall thickness of the composites was increased as the increase of Sn content of the composite. From EDS analysis, it is confirmed that the Sn was dispersed uniformly in Sn-C composites. The capacity was increased as the Sn content increased, which is due to Sn anode with high capacity. The Sn-C composites with high Sn content showed superior cyclic performances. Such enhancement is ascribed to the thick wall thickness and small pore size of the sample with high Sn content. The Sn-C composite with Sn 30 wt% showed relatively high capacity and stable cycle life, however, the stability of the 3-dimensional structure should be enhanced by further work.

용액 및 용융 가공방법에 따른 PE 및 PE 공중합물의 PTC 서미스터 특성 연구 (A Study on the PTC Thermistor Characteristics of Polyethylene and Polyethylene Copolymer Composite Systems in Melt and Solution Manufacturing Method)

  • 김재철;박기헌;남재도
    • 폴리머
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    • 제26권6호
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    • pp.812-820
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    • 2002
  • 본 연구에서는 나노입자인 카본블랙을 고분자에 분산시킨 복합체를 각각 용액혼합과 용융혼합을 이용하여 positive temperature coefficient (PTC) 특성을 연구하였다. 전도성 나노입자인 카본블랙과 고분자 복합체의 저항 통전 (threshold)은 용융혼합하였을 때 카본블랙의 함량이 35wt% 이상에서 나타났으며. 용액혼합에서는 카본블랙 함량이 40 wt% 이상에서 나타났다. Ethyl-one vinylacetate copolymer (EVA)의 경우, 온도의 변화에 따라서 저항이 서서히 증가하다가 용융점 근처에서 극대값을 나타내었지만, high density polyethylene (HDPE)의 경우는 저항이 온도의 변화에 따라 일정하다가 용융점 근처에서 증가하기 시작하여 용융점에서 극대값을 나타내었다. 통전 후의 낮은 저항과, scanning electron microscopy (SEM)으로 관찰한 결과로부터 전도성 나노입자의 카본블랙 분산방법에서 용액혼합의 분산 정도가 용융혼합 못지않게 나타났다. PTC 소재에 전류인가시 큐리온도에서 1차적으로 저항이 증가하였으며, 고분자의 용융점에서 2차적으로 트립온도가 될 때까지 저항이 증가하다가 트립온도 이후에는 저항이 일정하게 유지됨을 알 수 있었다.

짧은 섬유상간의 접합을 가진 Silicon Carbide Web 복합재료의 분율별 열전도 거동 (Thermal Conducting Behavior of Composites of Conjugated Short Fibrous-SiC Web with Different Filler Fraction)

  • 김태언;배진철;조광연;이동진;설용건
    • 한국세라믹학회지
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    • 제49권6호
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    • pp.549-555
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    • 2012
  • Silicon carbide(SiC) exhibits many unique properties, such as high strength, corrosion resistance, and high temperature stability. In this study, a SiC-fiber web was prepared from polycarbosilane(PCS) solution by employing the electrospinning process. Then, the SiC-fiber web was pyrolyzed at $1800^{\circ}C$ in argon atmosphere after it was subjected to a thermal curing. The SiC-fiber web (ground web)/phenolic resin (resol) composite was fabricated by hot pressing after mixing the SiC-fiber web and the phenolic resin. The SiC-fiber web composition was controlled by changing the fraction of filler (filler/binder = 9:1, 8:2, 7:3, 6:4, 5:5). Thermal conductivity measurement indicates that at the filler content of 60%, the thermal conductivity was highest, at 6.6 W/mK, due to the resulting structure formed by the filler and binder being closed-packed. Finally, the microstructure of the composites of SiC-fiber web/resin was investigated by FE-SEM, EDS, and XRD.

등통로각압축공정을 이용하여 제조된 Cu-15 wt%Ag 복합재의 미세구조 (Microstructural Evolution of Cu-15 wt%Ag Composites Processed by Equal Channel Angular Pressing)

  • 이인호;홍순익;이갑호
    • 대한금속재료학회지
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    • 제50권12호
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    • pp.931-937
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    • 2012
  • The microstructure of Cu-15 wt%Ag composites fabricated by equal channel angular pressing (ECAP) with intermediate heat treatment at $320^{\circ}C$ was investigated by transmission electron microscopy (TEM) observations. Ag precipitates with a thickness of 20-40 nm were observed in the eutectic region of the Cu-15 wt%Ag composite solution treated at $700^{\circ}C$ before ECAP. The Cu matrix and Ag precipitates had a cube on cube orientation relationship. ECAPed composites exhibited ultrafine-grained microstructures with the shape and distribution dependent on the processing routes. For route A in which the sample was pressed without rotation between each pass, the Cu and Ag grains were elongated along the shear direction and many micro-twins were observed in elongated Cu grains as well as in Ag filaments. The steps were observed on coherent twin boundaries in Cu grains. For route Bc in which the sample was rotated by 90 degrees after each pass, a subgrain structure with misorientation of 2-4 degree by fragmentation of the large Cu grains were observed. For route C in which the sample was rotated by 180 degrees after each pass, the microstructure was similar to that of the route A sample. However, the thickness of the elongated grains along the shear direction was wider than that of the route A sample and the twin density was lower than the route A sample. It was found that more microtwins were formed in ECAPed Cu-15 wt%Ag than in the drawn sample. Grain boundaries were observed in relatively thick and long Ag filaments in Cu-15 wt%Ag ECAPed by route C, indicating the multi-crystalline nature of Ag filaments.

Tailoring and Control of The Micro (Nano) Structure of Functional CMSs and MMCs

  • Colomban
    • The Korean Journal of Ceramics
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    • 제5권1호
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    • pp.55-72
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    • 1999
  • A cheallenge in the aerospace field is to design new composites satisfying specific and sometimes conflicting properties. The key steps are ⅰ)the understanding and the control of the reaction between the reinforcement and the embedding matrix, ⅱ) the achievement of a coherent and robust matrix. The problems encountered to prepare particulate, 1D, 2D and 3D reinforced composites using polymeric are discussed. Emphasis is given to the control of the micro/nanostructure using Raman microspectrometry and depth-sensing microindentation, in order to get information on the micromechanics and fiber structure simultaneously, within ceramic (CMC's) and metal matrix (MMC's) composites.

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기능화된 다중벽 탄소나노튜브 복합재료의 제조 및 물성 평가에 대한 연구 (Manufacturing and Characterization of Nano-composites with Chemically Functionalized Multiwalled Carbon Nanotubes)

  • 박주혁;김태구
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 춘계학술대회
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    • pp.126-131
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    • 2004
  • Chemically modified multiwalled carbon nanotubes with acids were incorporated into a epoxy matrix by in situ polymerization process, to improve the transfer of mechanical load through chemical bonds, which were demonstrated by infrared spectroscopy. And the mechanical properties of epoxy/carbon nanotube composites were measured to investigate the role of carbon nanotubes. The epoxy/carbon nanotube composites shows higher tensile strength and wear resistance than existing epoxy, with 1 or 2 wt. % addition of functionalized carbon nanotubes. The tensile strength with 7 wt. % carbon nanotibes is increased by a 28% and the wear resistance in exceptionally increased by an outstanding 100 times.

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Effects of multi-walled carbon nanotubes on the hydration heat properties of cement composites

  • Ha, Sung-Jin;Rajadurai, Rajagopalan Sam;Kang, Su-Tae
    • Advances in concrete construction
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    • 제12권5호
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    • pp.439-450
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    • 2021
  • In recent years, nano-reinforcing materials are widely utilized in cement composites due to their unique multifunctional properties. This study incorporated multi-walled carbon nanotubes (MWCNTs) into the cementitious composites at ratios of 0.1%, 0.3%, and 0.5%, and investigated their influence on the flowability, mechanical strength, and hydration heat properties. The addition of MWCNTs enhanced the compressive and split tensile strengths approximately by 18-51%. In the semi-adiabatic temperature rise test, the internal hydration heat of the composites reduced by 5%, 9%, and 12% with the increase of MWCNTs in 0.1%, 0.3%, and 0.5%. This study further performed hydration heat analysis and estimated the adiabatic temperature rise, thermal stress, and thermal crack index. The internal hydration heat of the concrete decreased by 5%, 10%, and 13% with the increase of MWCNTs. The thermal stress of the concrete decreased with increase in the addition of MWCNTs, and the obtained temperature crack index was effective in controlling the thermal cracks.

미세역학시험법과 접촉각 측정을 통한 변형된 Jute와 Hemp섬유 강화 Polypropylene (PP)-Maleic Anhydride Polypropylene Copolymers (PP-MAPP) 복합재료의 계면 및 표면에너지 평가 (Interfacial and Surface Energies Evaluation of Modified Jute and Hemp Fibers/Polypropylene (PP)-Maleic Anhydride Polypropylene Copolymers (PP-MAPP) Composites using Micromechanical Technique and Contact Angle Measurement)

  • 박종만;트란콩손;정진규;김성주;황병선
    • 접착 및 계면
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    • 제7권2호
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    • pp.1-11
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    • 2006
  • 미처리 Jute와 Hemp섬유와 처리된 Jute와 Hemp섬유가 강화된 polypropylene-maleic anhydride-g-polypropylene copolymer (PP-MAPP) 복합재료의 계면 물성을 미세역학시험법과 동적접촉각 측정을 통해서 평가하였다. Jute와 Hemp섬유의 통계적인 인장강도의 경우 두 형태 와이블 분포가 단일 형태 분포보다 더 일치하는 것을 확인할 수 있었다. 천연섬유 복합재료의 계면전단강도(IFSS)에 대한 산-염기 상호작용변수는 접착일($W_a$)의 계산을 통해 그 특성을 기술 할 수 있다. 천연섬유에 대한 알칼리, 실란커플링제의 영향은 PP-MAPP 기지재의 MAPP 함량을 변화시킴으로써 얻을 수 있었다. 알칼리 처리된 Jute와 Hemp섬유의 경우 약한 계면층이 모두 제거되고 표면적이 증가됨으로 인해 표면에너지는 더 증가하였다. 반면 실란 커플링제를 이용하여 표면 처리된 Jute와 Hemp 섬유의 경우 차단된 높은 에너지의 기들로 인해 표면에너지는 감소하였다. PP-MAPP기지재속의 MAPP의 함량증가는 산-염기 기의 도입으로 인해 표면에너지는 증가하였다. 두 천연섬유 복합재료의 미세파괴 형상은 두 섬유의 인장강도가 다르기 때문에 명확히 구분되었다.

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