• Title/Summary/Keyword: LDPE

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Surface Modification of Low Density Polyethylene and Adhesion Characteristics of Low Density Polyethylene/Aluminum Laminate (저밀도 폴리에틸렌의 표면개질과 이를 이용한 저밀도 폴리에틸렌/알루미늄 라미네이트의 접착특성)

  • Jung, B.Y.;Ryu, S.H.
    • Elastomers and Composites
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    • v.36 no.3
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    • pp.195-200
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    • 2001
  • Ultraviolet photografting of acrylic acid onto low density polyethylene was characterized using XPS and contact angle measurement. Effects of surface modification at LDPE and aluminum on LDPE/Al laminate were also investigated. Contact angle decreased significantly at initial state arid tends to level off with increasing UV irradiation time. The improvement of hydrophilicity was due to the presence of acrylic acid on LDPE surface. Graft of acrylic acid onto LDPE was also identified from O1s/C1s ratios in XPS spectrum. Adhesion strength of LDPE-g-AAc/Al laminate showed about 30 times higher than LDPE/A1 system and it could be attributed to the increase of polarity of LDPE surface. Chemical treatment of Al surface using sulfuric acid/sodium dichromate also increased the adhesion strength of LDPE/Al laminate. Adhesion strength of LDPE/Al laminate decreased significantly under acetic acid.

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Rheological Properties and Film Fabrication of LLDPE/LDPE Blends (LLDPE/LDPE 혼합물의 유변 물성과 필름 제조)

  • 오장훈
    • The Korean Journal of Rheology
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    • v.7 no.3
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    • pp.173-180
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    • 1995
  • LLDPE/LDPE 혼합물의 유변 물성과 필름가공특성 필름 물성 및 LLDPE의 extrudate 표면상태를 살펴보았다. LLDPE에 LDPE를 혼합함으로써 용융 강도가 크게 향상 되는 것을 볼수 있었으며 혼합비에 따라 필름의 기계적 물성이 변화하는 것을 볼수 있었다. 즉 최고의 물성을 나타내는 적절한 혼합비율이 존재하였다. 본논문에 사용된 LLDPE/LDPE 혼합물에 있어서는 LDPE의 함량이 15∼30wt%일 때 가장 우수한 기계적 물성을 얻을수 있 었다. LLDPE 필름의 표면 불량 문제를 보기위하여 capillary를 이용하여 LLDPE extrudate 의 표면 튀틀림(distortion)의 진행순서를 살펴본 결과, 전단 응력이 0.23MPa 일때 sharkskin이 발현함을 볼수 있었다.

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Effects of a Compatibilizer on the Tensile Properties of Low-Density Polyethylene/Modified Starch Blends

  • Park, Jin-Woo;Kim, Gue-Hyun;Moon, Jin-Bok
    • Journal of Environmental Science International
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    • v.22 no.10
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    • pp.1287-1294
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    • 2013
  • In this study, thermoplastic starch (TPS), cross-linked starch (CS), and cross-linked starch modified with glycerol (CTPS) were prepared, and the mechanical properties of the compatibilized low-density polyethylene (LDPE) blends (LDPE/TPS, LDPE/CS, and LDPE/CTPS) were investigated and compared with those of uncompatibilized LDPE/TPS, LDPE/CS, and LDPE/CTPS blends. Maleic-anhydride-grafted polyethylene was used as the compatibilizer. The enhanced tensile strength and elongation at break for the compatibilized LDPE/modified starch blends are a result of the improved compatibility between LDPE and the modified starch, which was confirmed by torque measurements and scanning electron microscopy.

A Study of Functionality and Stability of LDPE-Nano TiO2 Composite Film (LDPE-나노 TiO2 복합 필름의 기능성 및 재질안정성 평가)

  • Lee, Wooseok;Ko, Seonghyuk
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.23 no.2
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    • pp.67-74
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    • 2017
  • In this work, the effects of nano $TiO_2$ on functionality and stability of low density polyethylene (LDPE) composite films were investigated for food packaging application. LDPE-nano $TiO_2$ composite films were prepared with various $TiO_2$ contents (0, 0.5, 1.0, 3.0 and 5.0wt%) by melt-extrusion and their basic properties such as crystallinity, chemical bonds and surface morphology were examined by XRD, FTIR and SEM. Ultraviolet (UV) light barrier property of as-prepared LDPE-nano $TiO_2$ composite films was also studied and the presence of nano $TiO_2$ resulted in significant improvement of UV light barrier compared to the pure LDPE film. To evaluate influence of nano $TiO_2$ on LDPE properties required as packaging material, thermal, mechanical, gas barrier and optical properties of LDPE-nano $TiO_2$ composite films were characterized with various analytical techniques including TGA, UTM, OTR, WVTR and UV-vis spectroscopy. As a result, except optical property of LDPE, no significant effects were found in other properties. Opacity of pure LDPE was greatly increased with increasing concentration of nano $TiO_2$.

A Study on the Functionality and Stability of LDPE-Nano ZnO Composite Film (LDPE-나노 ZnO 복합필름의 기능성 및 재질안정성 평가)

  • Lee, Wooseok;Ko, Seonghyuk
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.24 no.1
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    • pp.27-34
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    • 2018
  • In this work, nano ZnO was introduced into low density poly ethylene (LDPE) composites films with various contents (0, 0.5, 1.0, 3.0 and 5.0 wt%) by melt-extrusion. Their basic properties such as crystallinity, chemical bonds and surface morphology were examined by XRD, FTIR and SEM. XRD patterns and FTIR peaks intensity were increased in proportion to the ZnO contents. SEM images showed well dispersed nano ZnO in LDPE composite films. Antimicrobial functionality of LDPE-nano ZnO composite films was also studied and the presence of nano ZnO resulted in significant improvement of antimicrobial functionality compared to the pure LDPE film. To evaluate influence of nano ZnO on LDPE properties required as packaging material, thermal, mechanical, gas barrier and optical properties of LDPE-nano ZnO composite films were characterized with various analytical techniques including TGA, UTM, OTR, WVTR and UV-Vis spectroscopy. As a result, except optical and mechanical properties of LDPE, no significant effects were found in other properties. Opacity of pure LDPE was greatly increased with increasing concentration of nano ZnO and tensile strength was also improved at 0.5wt% ZnO content.

Modified Atmosphere Packaging of Leaf Lettuce (잎상치의 MA 포장)

  • Hong, Seok-In;Kim, Yun-Ji;Park, Noh-Hyun
    • Korean Journal of Food Science and Technology
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    • v.25 no.3
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    • pp.270-276
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    • 1993
  • Leaf lettuce (Lactuca sativa L., var. crispa) packed in $20{\mu}m$ LDPE (perforated), $20{\mu}m$ LDPE, $30{\mu}m$ HDPE, and $40{\mu}m$ LDPE pouches was stored at $4^{\circ}C,\;10^{\circ}C\;and\;20^{\circ}C$. The quality of leaf lettuce during the storage was investigated in terms of weight loss, color, soluble solids content, texture and sensory properties. Leaf lettuce exhibited the highest storage stability at $4^{\circ}C$. Shelf-life of the packed leaf lettuce was prolonged approximately $10{\sim}15$ times in comparision with that of the unpacked under all temperature conditions. Among the packed leaf lettuce, self-life in $20{\mu}m$ LDPE (perforated) and $20{\mu}m$ LDPE pouches was relatively short mainly due to discoloration and deterioration. On the other hand, the quality of the leaf lettuce packed in $30{\mu}m$ HDPE and $40{\mu}m$ LDPE pouches was kept well during the storage. Particularly, $40{\mu}m$ LDPE pouches conferred the shelf-life superior to other film pouches.

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Compatibilizing Effect of SEBS for Electrical Properties of LDPE/PS Blends (LDPE/PS 블렌드의 전기적 성질에 미치는 상용화제로서의 SEBS의 효과)

  • Kim Tae Young;Kim Dong Myung;Kim Won Jung;Lee Je Hyuk;Suh Kwang S.;Lee Tae Hee
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.54 no.3
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    • pp.114-119
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    • 2005
  • We investigated compatibilizing effects of electrical properties such as charge distributions and electrical breakdown in blends of low density polyethylene (LDPE) / polystyrene (PS) with poly [styrene-b-(ethylene-co-butylene)-b-styrene] (SEBS), the triblock copolymer. The blends with $70\;wt\%$ of LDPE and $30\;wt\%$ of PS were prepared through a melt blending in a batch type kneader at a temperature of $220^{\circ}C$ when the SEBS content increased up to $10\;wt\%$. Scanning electron microscopy (SEM) was investigated for observation of morphology of LDPE / PS blends increasing SEBS contents. The morphological observation showed that addition of SEBS results in the domain size reduction of the dispersed PS phase and a better interfacial adhesion between LDPE and PS phases. Measurements of space charge distributions for blends was carried out with pulsed electroacoustic (PEA) method. It was possible to observe that the amount of charge storage in the LDPE / PS blends decreased wiか increasing of SEBS content. The location of SEBS at a domain interface enables charges to move from one phase to the other via domain interface and results in a indicative decrease in the amount of space charge for the LDPE / PS blends with SEBS. Electrical breakdown strength of these blends was observed. It was found that the maximum breakdown strength of the blend was 51.55 kV/mm. These results were better than 38.38 kV/mm of LDPE used electrical insulator for cables and were caused by crystalinity of blends. Because the crystalinity of blends were lower than LDPE, electrical breakdown strength of LDPE / PS blends is higher than that of LDPE. We evaluated the possibility of these blends for insulating material substituted LDPE.

Properties of LDPE Composite Films Using Polyurushiol (YPUOH) for Functional Packaging Applications (폴리우루시올(YPUOH)을 이용한 기능성 패키징용 LDPE 복합필름의 특성분석에 관한 연구)

  • Jung, Suyeon;Kim, Dowan;Seo, Jongchul
    • Applied Chemistry for Engineering
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    • v.26 no.1
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    • pp.23-28
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    • 2015
  • Lacquer sap extracted from lacquer trees exhibits good thermal stabilities and antimicrobial properties. To apply these superior properties to functional packaging, polyurushiol (YPUOH) powders were prepared and blended into LDPE (low density polyethylene) to prepare three different LDPE/YPUOH composite films via a twin screw extruder system. Their morphology, thermal and antimicrobial properties as well as barrier properties of the LDPE/YPUOH composite films were thoroughly investigated to find out applicablities of the films as functional packaging materials. Although the interfacial interaction between LDPE and YPUOH was relatively weak, LDPE/YPUOH composite films exhibited good dispersion of YPUOH in LDPE, resulting in the enhanced thermal stability with YPUOH loading. Due to the good antibacterial property of as-prepared YPUOH, LDPE/YUOH composite films also showed an excellent antibacterial activity (R) of 99.9% against E. coli. Furthermore, the moisture barrier property of LDPE/YPUOH composite films increased with increasing YPUOH contents. Incorporating the relatively low amount of YPUOH in LDPE resulted in the apparent enhancement in thermal stabilities, antibacterial and moisture barrier properties, which made them promising candidates as a functional filler for packaging materials.

Low molecular weight components and space charge formation in LDPE (저분자량성분과 저밀도폴리에틸렌의 공간전하형성과의 관계)

  • 구중회;한재홍;서광석
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1994.05a
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    • pp.87-89
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    • 1994
  • The effects of low molecular weight components of LDPE and sample molding condition were investigated to find the orgins for heterocharge in LDPE without any addtives. Low molecular weight chains of LDPE encourages the formation of heterocharge by being charged and migrating the counter electrode. The formation of heteroohage in LDPE was also effected by sample preparation process and the kind of a moling film. When PET film is used as a molding layer, the carbonyl, which may lead to increase the heterocharge, formed at surface of LDPE.

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SPACE CHARGE IN LDPE OF DIFFERENT MOLECULAR CHARACTERISTICS (재료특성에 따른 LDPE의 전하형성)

  • Han, Jae-H.;Koo, Jung-H.;Lee, Kyung-Wan;Suh, Kwang-S.
    • Proceedings of the KIEE Conference
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    • 1994.07b
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    • pp.1262-1264
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    • 1994
  • Effects of molecular characteristics such as melt index and shapes of molecular weight distribution on the charge formation in LDPE have been investigated. Both homocharge and heterocharge were observed in LDPE depending on the value of melt index. It was found that the LDPE having intermediate melt indices shows heterocharge while the LDPE having small and high melt indecies shows homocharge. The shapes of molecular weight distributions were also found to affect the space charge in LDPE. These were explained by the role of short chains having low molecular weight in LDPE.

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