• Title/Summary/Keyword: 필름압출

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A Study on the Elongation of Polymer Extrusion Film (고분자압출필름의 연신에 관한 연구)

  • Choi, Man-Sung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.2
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    • pp.660-665
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    • 2014
  • Optimization of process parameters in polymer extrusion is an important task to reduce manufacturing cost. To determine the optimum values of the process parameters, it is essential to find their influence on the elongation of polymer breathable thin film. The significance of six important process parameters namely, extruder cylinder temperature, extruder speed, extruder dies temperature, cooling roll temperature, stretching ratio, stretching roll temperature on breathable film elongation of polymer extrusion was determined. Moreover, this paper presents the application of Taguchi method and analysis of variance(ANOVA) for maximization of the breathable film elongation influenced by extrusion parameters. The optimum parameter combination of extrusion process was obtained by using the analysis of signal-to-noise ratio. The conclusion revealed that stretching ratio were the most influential factor on the film elongation. The best results of film elongation were obtained at lower stretching ratio.

A Study on Processing-Structure-Property Relationships of Extruded Carbon Nanomaterial-Polypropylene Composite Films (탄소나노튜브 및 그래핀 나노플레이트 폴리프로필렌 복합재 필름 압출 및 물성 평가)

  • Kim, Byeong-Joo;Deka, Biplab K.;Kang, Gu-Hyuk;Hwang, Sang-Ha;Park, Young-Bin;Jeong, In-Chan;Choi, Dong-Hyuk;Son, Dong-Il
    • Composites Research
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    • v.26 no.4
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    • pp.254-258
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    • 2013
  • Polypropylene films reinforced with multi-walled carbon nanotubes and exfoliated graphite nanoplatelets were fabricated by extrusion, and the effects of filler type and take-up speed on the mechanical properties and microstructure of composite films were investigated. Differential scanning calorimetry revealed that the addition of carbon nanomaterials resulted in increased degree of crystallinity. However, increasing the take-up speed reduced the degree of crystallinity, which indicates that tension-induced orientations of polymer chains and carbon nanomaterials and the loss of degree of crystallinity due to rapid cooling at high take-up speeds act as competing mechanisms. These observations were in good agreement with tensile properties, which are governed by the degree of crystallinity, where the C-grade exfoliated graphite nanoplatelet with a surface area of $750m^2/g$ showed the greatest reinforcing effect among all types of carbon nanomaterials used. Scanning electron microscopy was employed to observe the carbon nanomaterial dispersion and orientation, respectively.

Effect of Process Variables and Packaging on Vitamin C Content of Extruded Cornstarch Matrix (압출성형 옥수수 전분 매트릭스 내부의 비타민 C 함량에 미치는 압출성형 공정변수와 포장방법의 영향)

  • Han, Jae-Yoon;Kim, Mi-Hwan;Park, Jong-Hwan;Kim, Seok-Joong;Park, Hee-Yong;Koksel, Hamit;Ryu, Gi-Hyung
    • Food Science and Preservation
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    • v.14 no.5
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    • pp.451-456
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    • 2007
  • The vitamin C content in extruded comstarch matrix was shown to depend on extrusion process variables (barrel temperature and water content), the packaging method, and the storage period. In addition, loss rates of vitamin C under different processing conditions were calculated. Extrusion process variable were barrel temperature ($80^{\circ}C,\;90^{\circ}C,\;100^{\circ}C$ and $110^{\circ}C$), and water content (25% 30% both w/w). The vitamin C content decreased as barrel temperature increased from $80^{\circ}C$ to $110^{\circ}C$ and water content increased from 25% to 30% when either LDPE plastic film packaging or ON film vacuum packaging were employed. As barrel temperature and water content increased, vitamin C decreased in comstarch packed in either LDPE film or ON film. As temperature increased, vitamin C loss rate increased under both packaging conditions, but the loss tate was only 50% of the LDPE film packaging rate when ON film vacuum packaging was used. In conclusion, the higher the temperature, and the greater the water content, the less vitamin C was inactivated during extrusion cooking, although the loss rah of vitamin C became faster as temperature and water content rose. In conclusion, extrusion process could be applied for making vitamin C matrix to extend vitamin C preservation.

세미나-필름 코로나 처리 효과와 주사 전자현미경 고찰

  • Kim, Yang-Pyeong;Kim, Byeong-Sam
    • The monthly packaging world
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    • no.6 s.182
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    • pp.108-117
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    • 2008
  • 본 고에서는 플라스틱 소재의 인쇄나 코팅, 핫멜트 라미네이팅 필름 제조에 있어서 코로나 처리가 계면 접착에 미치는 영향에 어떤 현상으로 나타나는가를 2가지 방법으로 관찰하였다. 첫째, Tandem 압출기에서 코로나 바의 방전 극(Electrode)수를 각각 4개 1조 전극수인 것과 9개 1조 전극수인 2가지 방전 바 시스템으로 다르게 구성하여 코로나 방전의 효과가 경시 변화되는 경향과 구간별 표면장력이 지속되는 관계를 확인하기 위해 144시간 동안 Dynes를 측정 관찰한 결과 4개 전극수보다는 9개 전극 수 구성이 초기 Dynes도 높고, 48 Dynes 에서의 지속 기간이 길어져 방전밀도가 표면장력의 지속성과 관계있음을 확인하였다. 둘째, 코로나 처리한 베이스 필름과 압출 핫멜트 수지 코팅 계면 사이의 접착 형상, 핫멜트 층 표면의 코로나 처리 후의 형상에 대하여 주사 전자현미경으로 관찰하여 화학적, 물리적, 기계적 작용의 3가지 기능을 확인하고 비코로나 처리 경우와 비교하였다. 한편 압출 1차 EVA층과 2차 EVA층은 코로나 처리 없이도 안정적 결합을 하는 것을 확인하였다.

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Investigation of Properties of the PET Film Dependent on the Biaxial Stretching (PET 필름의 이축연신에 따른 물성변화 연구)

  • Lee, Jung-Gyu;Park, Sang-Ho;Kim, Seong-Hun
    • Polymer(Korea)
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    • v.34 no.6
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    • pp.579-587
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    • 2010
  • To investigate the properties of PET films, PET films were extruded at various temperature above $T_m$ and quenched at $18^{\circ}C$ for amorphous sheet, and stretched along a direction defined as the machine direction (MD) with a transverse direction (TD) above $T_g$ at various stretching ratios and then annealed at various temperatures produced by SKC PET line. Thermal shrinkage of MD and TD increased with decreasing annealing temperature and extruding temperature, and increasing stretching ratio. The degree of crystallinity, density, heat of fusion (${\Delta}H$) and pre-melting point ($T_m'$) increased with increasing annealing temperature and extruding temperature. Number average molecular weight ($M_n$) and intrinsic viscosity decreased with increasing extruding temperature. Tensile strength and modulus increased with increasing stretching ratio, however decreased with increasing annealing temperature. Reflective index of both stretching and thickness direction increased with increasing stretching ratio and annealing temperature.

A Study on the Manufacture of Polypropylene Split Yarn and Tensile Property of Its Woven Fabric (폴리프로필렌 스플리트사의 제조와 이를 이용해 제조한 제직포의 인장특성 평가)

  • 박태영
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.126-129
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    • 2003
  • 폴리프로필렌(PP) 필름사는 크게 스플리트사(split yam)는 슬리트사(slit yarn)로 구분된다. 이러한 PP 필름사의 제조공정은 필름압출와 연신공정이 연속적으로 이루어져 있으며 고도로 연신되고 가공되기 때문에 전형적인 멀티필라멘트사 제조공정과 비교하여 압출공정이 간단하고 소규모로도 가능하므로 경제적이라 할 수 있다[1-3]. 스플리트사는 슬리트사 제조공정에서 연신과정에 새로이 해섬장치를 부착하여 기계적으로 슬리트된 필름사를 일정한 기하학적 구조로 미세화하여 제조한다[2]. (중략)

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Preparation and Characteristics of Biodegradable Polyurethane/Clay Nanocomposite Films (생분해성 폴리우레탄/클레이 나노복합 필름의 제조 및 특성 연구)

  • Kim, Seong Woo
    • Korean Chemical Engineering Research
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    • v.51 no.3
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    • pp.382-387
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    • 2013
  • Biodegradable polyurethane (PU)/clay nanocomposite films were prepared via extrusion compounding process followed by casting film process. Organically modified montmorillonite (denoted as C30B) with a large amount of hydroxyl groups on its surface was used for the formation of strong bonding with PU resin. From both XRD analysis and TEM observations, the intercalated and exfoliated structure, and dispersion state of silicate platelets in the compounded nanocomposite films were confirmed. In addition, the rheological and tensile properties, optical transparency, oxygen permeability of the prepared nanocomposites were investigated as a function of added nanoclay content, and moreover based on these results, the corelation between the morphology and the resulting properties of the nanocomposites could be presented. The inclusion of nanoclays at appropriate content resulted in remarkable improvement in the nanocomposite performance including tensile modulus, elongation, transparency, and oxygen barrier property, however at excess amount of nanoclays, reduction or very slight increase was observed due to poor dispersion. The biodegradability of the prepared nanocomposite film was evaluated by examining the deterioration in the barrier and tensile properties during degradation period under compost.