• Title/Summary/Keyword: 플라스틱필름

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생활속의 인쇄-판박이 인쇄

  • Yun, Jae-Ho
    • 프린팅코리아
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    • s.17
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    • pp.142-143
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    • 2003
  • 전사인쇄는 종이나 필름에 인쇄한 그림을 도자기.유리.금속.플라스틱.신체 등의 표면에 전사하는 인쇄방식이다. 전사지는 인쇄잉크나 안료를 사용해 백상지와 같은 대지에 풀칠을 한 다음 그 위에 그림이나 글씨를 인쇄한 것이다.

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Growth of Green Pepper(Capsicum annuum L.) in a Plastic Greenhouse Covered with Anti-dropping Plasma Film (방적성 Plasma 처리 필름으로 피복된 플라스틱온실의 풋고추 생육)

  • Chun, Hee;Kim, Kyung-Je;Kim, Jin-Young;Kim, Hyun-Hwan;Lee, Si-Young
    • Journal of Bio-Environment Control
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    • v.9 no.3
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    • pp.156-160
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    • 2000
  • The Plasma film treated with a high electric voltage was developed to enhance flow down of condensation drops on inside plastic film. Arch type greenhouse framed with iron pipe of 25mm diameter defand 1.5mm thickness were covered with either the developed plasma film or surfactant film(control). Green pepper seedlings raised for 40 days in plug trays were transplanted at a density of 110cm by 30cm in each greenhouse. The mount of condensational water on film surface, generated by 7$0^{\circ}C$ water bath chimney systems and flew down, was collected and measured. The amount of collected water after 150 minutes was 2.56 mL.100c $m^{-2}$ and 0.94mL.100c $m^{-2}$ , respectively, in the plasma film and surfactant film-covered greenhouses. The amount of condensational water drops attached on the cover at 08:20 a.m. at 60 days filter covering was 0.34mL.100c $m^{02}$ and 0.32mL.100c $m^{-2}$ , respectively, in the plasma film- and surfactant film-covered greenhouses. Solar irradiance transmitted into greenhouse was 2.0% higher in the greenhouse covered with the plasma film tan that in the greenhouse covered with the surfactant film. Air temperature in the plasma film-covered greenhouse was higher than the surfactant film-covered greenhouse by 0.5$^{\circ}C$. However, there was no difference in relative humidity between the two greenhouse. Plant height, leaf area, dry weight and early yield showed no significant differences.s.

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Development of Oxo-biodegradable Transparent Bio Films Using Biomass and Biodegradable Catalyst (바이오매스 및 생분해 촉매제를 이용한 산화생분해 투명 바이오 필름 개발)

  • You, Young-Sun;Kim, Young-Tae;Park, Dae-Sung;Choi, Sung-Wook
    • Clean Technology
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    • v.23 no.2
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    • pp.133-139
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    • 2017
  • Bio-based plastics containing the biomass content higher than 25 wt% have been considered as environment-friendly materials due to their effects on the reduction in the $CO_2$ emission and petroleum consumption as well as biodegradability after use. In this study, poly vinyl chloride, plant-derived plasticizers, by adding a biodegradable catalyst was observed a change in the biodegradability and physical properties. To produce the oxidative decomposition transparent bio film, which is broken down in the initial percent elongation and physical properties such as tensile strength, it was to test the safety of the product as a food packaging material. Poly vinyl chloride, primary plasticizer, secondary plasticizer, anti fogging agent, the combined stabilizer were mixed in a high speed mixer, then extruded using an extrusion molding machine, after cooling, winding, to produce a oxidative decomposition transparent bio film and the control film, with a thickness of $12{\mu}m$ through winder role. Mechanical properties tensile strength, elongation, and the maximum load elongation and biodegradation test. Transparent bio film produced by biodegradation catalyst is compared with the control film. Tensile strength and elongation of films were found to be no significant difference. Further, as a result of the biodegradation test for 45 days based on the ASTM D6954-04 method, biodegrability of film is 61.4%.

Quality Changes of Winter Chinese Cabbage by different Packing and Loading during Cold Storage (월동 배추의 저온 저장 중 포장 및 적재 방법에 따른 품질 변화)

  • 김병삼;김민정;김의웅;김건희
    • Food Science and Preservation
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    • v.8 no.1
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    • pp.30-36
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    • 2001
  • Quality changes of winter Chinese cabbage with different packing and loading methods were investigated during cold storage at 0$\^{C}$. Judging from the marketability of stored Chinese cabbage, winter Chinese cabbage could be above 4 months at 0$\^{C}$ cold store. Four Chinese cabbages were packed with 0.3mm polyethylene film and then loaded vertically in plastic container. During storage at 0$\^{C}$, gas composition in the plastic bags was indicated by 8.2∼19.5% O$_2$ and 0.35∼8.58% CO$_2$, respectively. Compared to the conventional storing method, packed with polypropylene net, the fresh1ess of Chinese cabbage was prolonged nearly 10 to 20% by MAP.

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Testing Methods for Permeability of Plastic Films (플라스틱 필름류의 투습도 측정방법)

  • Park, Hyung-Woo;Koh, Ha-Young;Kang, Tong-Sam;Shin, Dong-Hwa
    • Korean Journal of Food Science and Technology
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    • v.21 no.2
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    • pp.235-237
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    • 1989
  • Water vapor permeability of plastic films was measured by Electric tester and Cup tester and the data of the two were compared. Regardless of the testing method, water vapor permeability measured by two methods showed consistent results. By these methods, water vapor permeability of polyethylene film was $21.25g/m^2$. 24h and $5.4g/m^2$. 24h for 0.045mm and 0.08mm thickness, respectively. The water vapor permeability of casted polypropylene film was 14.93 and $14.90g/m^2$. 24h for Electric tester and Cup tester, respectively. In conclusion, the data obtained by Cup tester was consistent with those of the Electric tester. The Cup tester was certified to perform the water vapor pormeability testing method.

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Studies on the Development of Biodegradable Plastics and Their Safety and Degradability (생붕괴성 플라스틱 포장재의 제조 및 제조된 소재의 안전성과 분해성 연구)

  • You, Young-Sun;Han, Jung-gu;Lee, Han-na;Park, Su-il;Min, Sea-Cheol
    • Food Engineering Progress
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    • v.15 no.3
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    • pp.257-261
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    • 2011
  • Biodegradable plastics were developed using biodegradable pellets made of corn stalk and rice husk and their safety as food packages and their biodegradability against light (ultraviolet (UV)), heat, and fungi were evaluated. Four kinds of 50-${\mu}m$ biodegradable plastics were produced by extruding the mixtures of the biodegradable pellets, low-density polyethylene (LDPE), high-density polyethylene (HDPE), and linear low-density polyethylene (LLDPE) with different compositions. Developed biodegradable plastics were safe to be used as food packages. The initial tensile strength and percentage elongation of the plastics were similar to those of LDPE, but the values decreased with increased their exposure time to UV and heat. The fungal biodegradability of the biodegradable plastics was higher than that of LDPE. The biodegradability of the biodegradable plastics shows the potential for them to be used as sustainable food packages.

The prospects and the present condition of Plastic Industry in Japan (세미나 - 일본의 사출성형기 기술개발 동향)

  • 등 영부
    • The monthly packaging world
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    • s.216
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    • pp.128-134
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    • 2011
  • 1869년 미국의 Hyatt 형제는 상아 당구공의 대체 재료로서 셀룰로이드(질산섬유계 플라스틱)를 발명하고, 1872년에는 이 재료들을 성형하기 위해 세계 최초로 사출성형기를 개발했다. 하지만 유감스럽게도 성형된 셀룰로이드는 단단하면서도 약해 당구공으로는 사용할 수 없었으나, 브러시나 빗의 손잡이, 양복의 칼라, 사진의 필름, 탁구공 등으로 실용화되었다. 그 후 여러 기능을 가진 다양한 종류의 플라스틱이 잇따라 발명되었다. 이와 같은 플라스틱의 기능을 활용한 제품을 성형하기 위해 사출성형기는 끊임없는 기술개발을 통해 진화를 거듭해 왔다. 일본의 사출성형기 업계는 구미의 기술을 도입하며 발전해 왔다. 그 후 세계에서 제일 먼저 전동식 사출성형기를 개발해 실용화함으로써 최첨단 수준의 성능 및 기능을 달성해, 현재 많은 신기술제품의 중요한 수지부품생산에 공헌하고 있다. 아래에 항상 높은 수준을 추구하는 플라스틱업계의 니드에 부응하기 위해 계속되어 온 일본의 사출성형기의 기술개발 동향에 대해 그 개요를 소개한다.

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New Automotive Surface Finishing process (자동차 관련 신규 표면처리 소개)

  • Kim, Chang-Ryeol
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.208-208
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    • 2015
  • 자동차 및 관련회사에서 표면처리 관련하여 품질 및 디자인 개선을 위한 제품을 지속적으로 요구 하고 있으며 각국의 환경규제에 대응하기 위한 방법을 연구 중에 있습니다. 이런 요구에 부합하는 신규제품을 소개하고자 합니다. 1. Chrome Free Etch: 6가크롬을 사용하지 않는 친환경 플라스틱 에칭 프로세스 2. Niflex: 휨성을 향상 시킨 아연니켈 합금도금 3. Electrolac UV: 저온경화및 플라스틱에 적용가능한 칼라 증착 도금 4. Xtra-form film: 눈부심방지 및 3D 디스플레이 개선을 위한 하드코팅필름

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Biodegradation effect of cross-cultivated fungi and edible mushrooms on plastic films (식용버섯과 진균 교차 배양을 활용한 플라스틱 필름의 생물학적 분해효과)

  • Doo-Ho Choi;Eunji Lee;Gi-Hong An;Kang-Hyo Lee
    • Journal of Mushroom
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    • v.22 no.1
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    • pp.31-36
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    • 2024
  • Plastics are widely used in industries in human society and because of their structural stability, degradation is a serious global issue. To estimate the degradation of plastic, 31 edible mushrooms were cultured with the selected plastic films (polyethylene [PE], polystyrene [PS], and poly(ethylene terephthalate) [PET]) for 3 months at 25 ℃. Measuring the weight of the films showed that four species of mushrooms, namely Porostereum spadiceum, Ganoderma lucidum, Coprinellus micaceus, and Pleurotus ostreatus, exhibited the highest degrees of plastic degradation. In addition, the mushrooms and fungi that exhibited the most significant plastic degradation were cross-cultured to promote this degradation. As a result, cross-cultivation of G. lucidum and Aspergillus niger showed a weight loss of 2.49% for the PET film. For the PS film, Aspergillus nidulans showed a weight loss of 4.06%. Cross-cultivation of A. nidulans and C. micaceus, which showed a weight loss of 2.95%, was noted as an alternative for PS biodegradation, but is harmful to humans. These bio-degradation effects of edible mushroom will contribute to the development of alternatives for eco-friendly plastic degradation.