• Title/Summary/Keyword: Fibrous materials

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Influence of Metal Particles on the Melt Behavior of PET/PP Fiber Bundles by Microwave Heating (마이크로파 가열에 의한 PET/PP 섬유다발의 용융거동에 금속입자의 영향)

  • Shin, Dong-Ho;Lee, Seung-Goo;Joo, Chang-Whan
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.150-153
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    • 2003
  • Microwaves belong to the portion of the electromagnetic spectrum with frequencies between 300MHz and 300GHz.$\^$1)/ In microwave processing, the energy is delivered directly to materials through molecular interaction with the electromagnetic field. This result in rapid heating throughout the material thickness with the reduced thermal gradients. If microwave is applied to fibrous materials, it can be reduced processing time. (omitted)

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Electrospinning으로 제조된 PMMA/PVA Multilayer bone plate의 생체적합성에 관한 연구

  • Gwak, Gyeong-A;Thai, Van Viet;Lee, Byeong-Taek;Song, Ho-Yeon
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2009.11a
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    • pp.43.1-43.1
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    • 2009
  • Bone plate는 골절된 뼈의 골 유합을 지지하기 위해서 정형외과, 신경외과, 성형외과 및 치과 등에서 널리 사용되고 있다. 하지만 기존의 bone plate는 대부분 금속으로 제작되어 있어 장기간 이식에 따른 부식 및 천연골 강도저하 등으로 인해 1~2년 후 재수술을 해야 하는 문제점을 갖고 있다. 본 연구에서는이런 금속 bone plate의 단점을 개선하고자 생체적합성이 우수한 생분해성 고분자 bone plate를 제작하였다. 사용된 고분자는 생체적합성과 생분해성이우수한 PVA(polyvinly alcohol)와 강도를 유지하기 위한 PMMA(poly methyl methacrylate)를 사용였다. Electrospinning 법으로 PVA와 PMMA fibrous mat를 제작하여 각 mat를 적층시킨 후 열압착을 하여 강도를 증가시킨 PMMA/PVA Mutlilayer bone plate을 제작하였다. 제작된 PMMA/PVA Mutlilayer bone plate의 생체적합성 평가를 위해 MTT assay, 생분해 특성을 관찰하기 위해 Micro-CT와 SBF(simulated body fluid) 내에서의 용해도를 관찰하였다. 또한조골세포의 부착과 분화에 미치는 영향을 SEM(scanning electron microscope)을통해 관찰하였고, 조골세포의 유전자 발현에 미치는 영향을 RT-PCR을통해 확인하였다.

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Biomimetic Electrospun Fibers for Tissue Engineering Applications

  • Sin, Heung-Su
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2011.10a
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    • pp.2.2-2.2
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    • 2011
  • The central strategy in tissue engineering involves a biomaterial scaffold as a delivery carrier of cells and a depot to deliver bioactive molecules. The ability of scaffolds to control cellular response to direct particular repair and regeneration processes is essential to obtain functional tissue engineering constructs. Therefore, many efforts have been made to understand local interactions of cells with their extracellular matrix (ECM) microenvironment and exploit these interactions for designing an ideal scaffold mimicking the chemical, physiological, and structural features of native ECM. ECM is composed of a number of biomacromolecules including proteins, glycosaminoglycans, and proteoglycans, which are assembled together to form complex 3-dimensional network. Electrospinning is a process to generate highly porous 3-dimensional fibrous structure with nano to micro scaled-diameter, which can closely mimic the structure of ECM. In this presentation, our approaches to develop biomimetic electrospun fibers for modulation of cell function will be discussed.

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Directional Solidification of Fibrous Eutectic System (섬유상 공정계의 일방향응고)

  • 김신우
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2003.11a
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    • pp.42-42
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    • 2003
  • 두개의 다른 고상이 동시에 액상으로부터 응고되는 공정합금에 일방향응고를 적용함에 따라 응고방향으로 규칙적으로 잘 배열된 복합재료를 만들 수 있다. 이렇게 방향성을 가지고 응고된 공정조직은 여러 가지 기계적, 전기적, 자기적 특수분야에 이용될 수 있다. 그런데 공정조직의 상간격은 재료의 기계적, 물리적 성질과 밀접한 관계를 가지며 응고속도, 온도기울기와 같은 일방향응고의 변수에 따라 결정된다. 그래서 본 연구에서는 금속합금계와 유사한 섬유상 공정조직을 보이는 NaNO$_3$-NaCl계를 이용하여 공정조직의 미세구조와 일방향응고 변수와의 관계를 조사하였다. 또한 액상으로부터 시간에 따른 냉각곡선으로부터 공정온도와 공정조성부근의 부분상태도를 구하였다. 그리고 응고녹도(V)에 따른 섬유상간격(λ$_{E}$ )의 실험적 관계식을 두가지의 온도기울기에 대하여 구하여 금속재료의 결과식과 비교, 검토하였다.

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Studies of Purifying Waste Cotton for Esterification & Molecular Weight Distribution Curve of Cellulose Acetate (落綿의 精製 및 이를 原料로 하는 醋酸纖維素의 分子量 分配曲線에 關한 硏究)

  • Kim, Dong-Il;Noh, Ick-Sam
    • Journal of the Korean Chemical Society
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    • v.4 no.1
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    • pp.38-43
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    • 1957
  • Purified cellulosic materials suitable for the production of cellulose esters can be prepared from waste cotton (carding waste from textile mill). The most desirable conditions in purifying waste cotton were obtained. Waxy materials were removed by boiling in 2-3% soda ash solution for more than 30 minutes in open vessel at atmospheric pressure. As for bleaching, it is desirable to use the bleaching powder solution containing 1%, available chlorine for 60 minutes at 35 deg. C. Purified cellulosic material was acetylated to fibrous cellulose triacetate, which was fractionated in the solution of 70% monochloroacetic acid using water as a precipitant, and the degree of polymerizaion and molecular weight of each fraction were measured viscometrically, thereon, molecular weight distribution curve was drawn. Analyzing the shape of this curve, most of the polymers were concentrated on the part of higher degree of polymerization. Purified waste cotton was also analysed, the result was that this cellulosic material can be used as a raw material for cellulose esters and ethers.

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The Effects of Sc on the Microstructure of Hypoeutectic Al-Si Alloys (아공정 Al-Si합금 조직에 미치는 Sc의 효과)

  • Kim, Myung-Han;Lee, Jong-Tae
    • Journal of Korea Foundry Society
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    • v.24 no.3
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    • pp.145-152
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    • 2004
  • The eutectic Si in Al-8.5wt.%Si alloy was changed from large flake to fine lemellar(or fibrous) shape when the Sc amount in the Al-Si alloy reaches 0.2wt.%. The optimum amount of Sc for the best modification effect was 0.8wt.% and slight decrease of modification effect occurred over this value. The study on the distribution of the modifiers(Sr, Na, and Sc) and the measurement of the surface tension of the Al-8.5wt.%Si alloy melt added with Sr, Na, and Sc modifier, respectively, reveals that Sc modifies the eutectic Si by the decrease of surface tension, while Sr and Na modify the eutectic Si mainly by impurity induced twinning mechanism.

Mechanical Behavior of Shape Memory Fibers Spun from Nanoclay-Tethered Polyurethanes

  • Hong, Seok-Jin;Yu, Woong-Ryeol;Youk, Ji-Ho
    • Macromolecular Research
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    • v.16 no.7
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    • pp.644-650
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    • 2008
  • This study examined the effect of nanoclays on the shape memory behavior of polyurethane (PU) in fibrous form. A cation was introduced into the PU molecules to disperse the organo-nanoclay (MMT) into poly($\varepsilon$-caprolactone) (PCL)-based PU (PCL-PU). The MMT/PCL-PU nanocomposites were then spun into fibers through melt-processing. The shape memory performance of the spun fibers was examined using a variety of thermo-mechanical tests including a new method to determine the transition temperature of shape memory polymers. The MMTs showed an improved the fixity strain rate of the MMT /PCL- PU fibers but a slight decrease in their recovery strain rate. This was explained by the limited movement of PU molecules due to the presence of nanoclays. The shape memory performance of the MMT/PCL-PU fibers was not enhanced significantly by the nanoclays. However, their recovery power was improved significantly up to a strain of approximately 50%.

ELECTROSPINNING OF ANTIMONY DOPED TIN OXIDE NANOPARTICLE DISPERSION FOR TRANSPARENT AND CONDUCTIVE FILMS

  • YOUNG-SANG CHO;MINHO HAN;SEUNG HEE WOO
    • Archives of Metallurgy and Materials
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    • v.65 no.4
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    • pp.1345-1350
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    • 2020
  • Stable dispersion of antimony-doped tin oxide nano-powder was prepared by wet attrition process by comminuting aggregated ATO nano-powder using the titanate coupling agent as a dispersant to form the chemisorbed layer on the particle surface. The feed solution of the ATO dispersion and PVP was prepared for electro-spun fibers on the glass substrate. The surface resistance of the fibrous ATO film after electrospinning for 30 minutes was in the order of 105 Ω/□, which is sufficient for anti-static coating. The optical transmittance of ATO fibers was confirmed by measuring the visible light transmittance.

Electrospun Tin Oxide Nanofibers with a Controlled Diameter and Morphology (전기방사된 주석산화물 나노섬유의 공정 변수에 따른 직경 및 형상 제어 연구)

  • Jang, Dae-Hwan;Lee, Jae-Eun;Choa, Yong-Ho;Lee, Young-In
    • Korean Journal of Materials Research
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    • v.24 no.12
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    • pp.663-670
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    • 2014
  • Diameter-controlled tin oxide nanofibers have been successfully prepared using electrospinning and a subsequent calcination process; their diameters, morphologies, and crystal structures have been characterized. The diameters of the as-spun nanofibers can be decreased by lowering the concentration of a polymer and a tin precursor in the electrospinning solution because of the decrease in the solution viscosity. The crystal structure of the nanofibers calcined at various temperatures from $200^{\circ}C$ to $800^{\circ}C$ has been proved to be the tetragonal rutile of tin oxide; crystallinity is improved by increasing the temperature. However, nanofibers with lower concentrations of tin precursor do not maintain their fibrous structures after calcination at high temperatures. In this study, the effect of the relationship between the precursor concentration and the calcination temperature on the diameter and the morphology of the tin oxide nanofiber has been systematically investigated and discussed.

Residual Stress on Concentric Laminated Fibrous Al2O3-ZrO2 Composites on Prolonged High Temperature Exposure

  • Sarkar, Swapan Kumar;Lee, Byong Taek
    • Korean Journal of Materials Research
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    • v.23 no.9
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    • pp.531-536
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    • 2013
  • This paper investigates the effect of prolonged high temperature exposure on concentric laminated $Al_2O_3-ZrO_2$ composites. An ultrafine scale microstructure with a cellular 7 layer concentric lamination with unidirectional alignment was fabricated by a multi-pass extrusion method. Each laminate in the microstructure was $2-3{\mu}m$ thick. An alternate lamina was composed of 75%$Al_2O_3$-(25%m-$ZrO_2$) and t-$ZrO_2$ ceramics. The composite was sintered at $1500^{\circ}C$ and subjected to $1450^{\circ}C$ temperature for 24 hours to 72 hours. We investigated the effect of long time high temperature exposure on the generation of residual stress and grain growth and their effect on the overall stability of the composites. The residual stress development and its subsequent effect on the microstructure with the edge cracking behavior mechanism were investigated. The residual stress in the concentric laminated microstructure causes extensive micro cracks in the t-$ZrO_2$ layer, despite the very thin laminate thickness. The material properties like Vickers hardness and fracture toughness were measured and evaluated along with the microstructure of the composites with prolonged high temperature exposure.