• 제목/요약/키워드: Composite Film

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라텍스 입자구조가 필름형성 및 필름물성에 미치는 영향 (III);모델 복합라텍스 입자의 필름물성 (Effect of Latex Particle Morphology on the Film Formation and Film Properties of Acrylic Coatings (III);Film Properties of Model Composite Latex)

  • 주인호;변자훈;우종표
    • 한국응용과학기술학회지
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    • 제21권3호
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    • pp.259-266
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    • 2004
  • Film properties of monodispersed model composite latexes with particle size of 190 nm, which consist of n-butyl acrylate as a soft phase monomer and methyl methacrylate as a hard phase monomer with different morphology was examined. Five different types of model latexes were used in this study such as random copolymer particle, soft-core/hard-shell particle, hard-core/soft-shell particle, gradient type particle, and mixed type particle. Tensile strength and tensile elongation at break of final films were evaluated. Those properties can be interpreted in terms of PBA/PMMA phase ratio and their morphology. The interfacial adhesion strength was also evaluated using $180^{\circ}$ peel strength measurement and cross hatch cutting test.

하이브리드 절연필름의 전동기권선 적용 특성 연구 (Technology and Application of Hybrid Insulation Film for Electric Magnet Wire)

  • 한세원;한동희;강동필
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2006년도 하계학술대회 논문집 Vol.7
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    • pp.210-211
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    • 2006
  • This study presents the technology and application of hybrid insulation film for electric magnet wire. In order to make the high efficient motor with high space factor, it is necessary to develop a self-lubrication heat-resistant insulation film that can be used when the space factor 70% or more. A key to achieving high windability is to increase the lubricity and bonding strength of vanish, which for a magnet wire generally determines the mechanical scratches characteristics. Effective ways to reduce scratches include improving insulation film prepared by organic and inorganic hybrid synthesis methods.

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폴리머-탄소나노튜브 복합체 에어로졸 입자의 생성 및 이를 이용한 하이브리드 복합체 박막 제조 (Synthesis of Polymer-Carbon Nanotubes Composite Nanoparticles and Their Applications into Forming Hybrid Composite Thin Films)

  • 김휘동;안지영;김수형
    • 한국입자에어로졸학회지
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    • 제6권2호
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    • pp.61-67
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    • 2010
  • In this paper, we describe a new method to form polymer thin films, in which carbon nanotubes (CNTs) are homogeneously distributed so that they can strengthen the mechanical property of resulting polymer film. To do so, we first homogeneously mixed CNTs with polymer in a DMF solvent. With the assistance of ultrasonic nebulizer, the polymer/CNT solution was then aerosolized into micro-sized droplets and finally turned into solidified polymer/CNT composite particles by gas-phase drying process. As the results of SEM and TEM analysis, CNTs were found to be homogeneously immobilized in the polymer matrix particles due to rapid drying process in the gas phase. For comparison purpose, (i) the polymer/CNTs composite particles prepared by aerosol processing method and (ii) polymer/CNTs sheets prepared by simple solution-evaporation method were employed to form polymer/CNTs composite thin films using a hot press. As the result, the aerosol processing of composite particles was found to be a much more effective method to form homogeneously distributed-CNTs in the polymer matrix thin film.

전도성 흑연을 포함하는 발열 필름의 열적 특성 (Thermal Characteristics of Heating Films Including Conductive Graphite)

  • 최규연;오원태
    • 한국전기전자재료학회논문지
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    • 제33권6호
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    • pp.500-504
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    • 2020
  • Heating films were prepared with composites of poly (methyl methacrylate) and conductive graphite. The as-prepared composite was deposited on a PET film and then fabricated using a bar coater to produce a film with uniform thickness. Copper electrodes were attached to both ends of the as-prepared film, and the heating characteristics of the film were analyzed while applying a DC voltage. The electrical conductivity and heating temperature of the heating films depended on the size, structure, content, and the dispersion characteristics of the graphite in the composite. The thermal energy was adjusted by controlling the electrical energy, based on the Joule heating theory. The electrical resistance of the film was altered in proportion to Ohm's law, and the heating temperature was changed according to the structure of the film (interelectrode spacing or electrode length) and the conductive graphite content. When the content of conductive graphite in the film increases, the electrical resistance decreases, and the heating temperature increases; however, there is no significant change above a certain content (50%).

PTFE-폴리이미드 복합 재료의 마찰과 마모 특성 (Friction and Wear Characteristics of PTFE-Polyimide Composite)

  • 심현해;권오관
    • Tribology and Lubricants
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    • 제11권4호
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    • pp.28-34
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    • 1995
  • PTFE has good mechanical and chemical stability at wide temperature range, and more over, shows a low value of friction coefficient. On the other hand, it shows cold flow and high wear rate. However, these short comings can be overcome by adding various fillers. In this experiment, PTFE and polyimide powder were mixed into composite and its tribological characteristics was investigated. 100% polyimide was also tested for comparison. The countefface material was a stainless steel (SUS304). Friction and wear tester of ring-on-block type was used at room temperature and under atmosphere. After the wear test, the worn surfaces were examined by optical microscope. The test results show that PTFE-polyimide composite generates. the wear transfer film on both sides of the friction surfaces, and, the friction coefficient and the wear rates are relatively low. 100% polyimide generated little wear transfer films, showed high friction and wear rates, and also showed some problems of vibration and noise. It even damaged the stainless steel countefface. It was concluded that 100% polyimide does not generate transfer film well because its shear resistanbe is high and it stickslips, thus, friction coefficients and wear rates are high. In case of PTFE-polyimide composite, on the other hand, transfer film containing sufficient PTFE adheres and remains on both wear surfaces well enough because PTFE has low shear resistance. Polyimide particles in the composite were proved to be able to bear normal load and does not show stick-slip because they are covered with transfer film containing much PTFE.

포도씨박 단백질을 이용한 가식성 필름의 제조 (Preparation of Defatted Grape Seed Meal Protein Composite Films)

  • 송혜연;조완신;송낙범;송경빈
    • 한국식품영양과학회지
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    • 제41권9호
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    • pp.1274-1280
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    • 2012
  • 포도씨박으로부터 추출된 단백질에 다양한 가소제를 첨가하여 포도씨박 단백질(DGP) 필름을 제조하였고, 또한DGP 필름의 물성을 개선시키기 위해 nanoclay나 젤라틴을 첨가하여 복합필름을 제조하였다. 사용된 가소제 fructose(FRU), sucrose(SUC), polypropylene glycol(PPG) 가운데SUC와 PPG를 2.5, 0.5% 비율로 첨가한 DGP 필름이 가장필름 물성이 좋았다. DGP 복합필름의 경우, nanoclay(Cloisite$Na^+$)를 첨가함으로써 필름의 물성이 향상되었는데 5% Cloisite $Na^+$를 첨가한 인장강도와 신장률이 각각 1.45 MPa, 71.91%였다. 또한 DGP와 젤라틴의 복합필름에서는 젤라틴의 첨가량이 증가할수록 인장강도와 투습도는 증가하였고, 신장률은 감소하였다. 특히 DGP와 gelatin 비율이 각각 2%일 때 인장강도와 신장률이 20.95 MPa와 12.25%로 물성이 가장 좋았다. 본 연구결과, 미활용 되고 있는 포도씨박을 이용하여 제조한 가식성 필름은 식품포장재로써의 사용이 가능하다고 판단된다.

전기화학적 중합으로 제조된 ABS/PPy 복합 박막의 전도특성 (Conducting Characteristics of ABS/PPy Composite Film Prepared by Electrochemical Polymerization)

  • 김진;윤도영;김대흠;한춘;김상용
    • 전기화학회지
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    • 제5권3호
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    • pp.164-167
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    • 2002
  • 본 연구에서는 ABS(Acrylonitrile-Butadiene-Styrene)을 주-고분자로 사용하여 산화안정성이 개선된 ABS/Polypyrrole 복합박막을 전기화학적 방법으로 합성하였다 우선 acetonitrile계의 용매로 주-고분자를 팽창시켰으며, pyrrole과 지지전해질이 백금전극에 미리 코팅된 ABS내부로 투과하여 백금 전극표면에 ABS/PPy복합체가 형성되도록 하였다. 결과적으로 전도성 ABS/PPy 복합박막은 polypyrrole과 비교하여 일정한 저항을 유지하였으며, 산화안정성도 향상되는 것으로 나타났다.

The Phase Transition and Thermochromic Characteristics of W/Mg-codoped Monoclinic VO2 Nanoparticle and Its Composite Film

  • Park, Heesun;Kim, Jongmin;Jung, Young Hee;Kim, Yeong Il
    • 대한화학회지
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    • 제61권2호
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    • pp.57-64
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    • 2017
  • Monoclinic $VO_2(M)$ nanoparticles codoped with 1.5 at. % W and 2.9 at. % Mg were synthesized by the hydrothermal treatment and post-thermal transformation method of $V_2O_5-H_2C_2O_4-H_2O$ with $Na_2WO_4$ and $Mg(NO_3)_2$. The composite thin film of the W/Mg-codoped $VO_2(M)$ with a commercial acrylic block copolymer was also prepared on PET substrate by wet-coating method. The reversible phase transition characteristics of the codoped $VO_2(M)$ nanoparticles and the composite film were investigated from DSC, resistivity and Vis-NIR transmittance measurements compared with the undoped and Wdoped $VO_2(M)$ samples. Mg-codoping into W-doped $VO_2(M)$ nanoparticles synergistically enhanced the transition characteristics by increasing the sharpness of transition while the transition temperature ($T_c$) lowered by W-doping was maintained. The codoped composite film showed the prominently enhanced NIR switching efficiency compared to only W-doped $VO_2(M)$ film with a lowered $T_c$.

Relationship between Moisture Barrier Properties and Sorption Characteristics of Edible Composite Films

  • Ryu, Sou-Youn;Rhim, Jong-Whan;Lee, Won-Jong;Yoon, Jung-Ro;Kim, Suk-Shin
    • Food Science and Biotechnology
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    • 제14권1호
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    • pp.68-72
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    • 2005
  • Moisture sorption characteristics of edible composite films were determined and compared against moisture barrier properties. Edible composite films were Z1 (zein film with polyethylene glycol(PEG) and glycerol), Z2 (zein film with oleic acid), ZA1 (zein-coated high amylose corn starch film with PEG and glycerol), and ZA2 (zein-coated high amylose corn starch film with oleic acid). Z2 film showed the lowest equilibrium moisture content (EMC), monolayer value ($W_m$), water vapor permeability (WVP), and water solubility (WS). Surface structure of Z2 was relatively denser and finer than that of other edible films. GAB $W_m$ and C values decreased, while K values increased with increasing temperature. Correlation coefficients of WS:EMC and WVP:EMC at Aw 0.75 were higher than those of WS: $W_m$ and WVP: $W_m$, respectively. EMC values at Aw 0.75 appeared useful for evaluating or predicting moisture barrier properties of edible films.

Failure Mechanism of Cu/PET Flexible Composite Film with Anisotropic Interface Nanostructure

  • Park, Sang Jin;Han, Jun Hyun
    • 한국재료학회지
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    • 제30권3호
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    • pp.105-110
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    • 2020
  • Cu/PET composite films are widely used in a variety of wearable electronics. Lifetime of the electronics is determined by adhesion between the Cu film and the PET substrate. The formation of an anisotropic nanostructure on the PET surface by surface modification can enhance Cu/PET interfacial adhesion. The shape and size of the anisotropic nanostructures of the PET surface can be controlled by varying the surface modification conditions. In this work, the effect of Cu/PET interface nanostructures on the failure mechanism of a Cu/PET flexible composite film is studied. From observation of the morphologies of the anisotropic nanostructures on plasma-treated PET surfaces, and cross-sections and surfaces of the fractured specimens, the Cu/PET interface area and nanostructure width are analyzed and the failure mechanism of the Cu/PET film is investigated. It is found that the failure mechanism of the Cu/PET flexible composite film depends on the shape and size of the plasmatreated PET surface nanostructures. Cu/PET interface nanostructures with maximal peel strength exhibit multiple craze-crack propagation behavior, while smaller or larger interface nanostructures exhibit single-path craze-crack propagation behavior.