• 제목/요약/키워드: EVA Copolymer

검색결과 42건 처리시간 0.021초

에너지함유 열가소성탄성체 적용을 위한 아지드화 폴리부타디엔/에틸렌-비닐아세테이트 공중합체 블렌드 제조 (Preparation of Azidated Polybutadiene(Az-PBD)/Ethylene-Vinyl Acetate Copolymer(EVA) Blends for the Application of Energetic Thermoplastic Elastomer)

  • 윤상원;최명찬;장영욱;노시태;권순길
    • Korean Chemical Engineering Research
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    • 제53권3호
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    • pp.282-288
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    • 2015
  • 에틸렌-비닐아세테이트(EVA)와 아지드화 폴리부타디엔(Az-PBD)를 블렌드 함으로써 새로운 에너지함유 열가소성탄성체를 제조하고, 이들의 미세구조 및 제반물성을 SEM, DSC, DMA, 인장실험 및 연소시험으로부터 조사하였다. Az-PBD는 1,2-비닐기를 갖는 폴리부타디엔(PBD)을 첨가반응에 의해 비닐기를 브롬화시킨 후, $NaN_3$를 이용하여 브롬기를 아지드기($-N_3$)로 치환시킴으로써 제조하였다. EVA/Az-PBD 블렌드는 EVA/Az-PBD 비율이 무게비로 각각 90/10, 80/20, 70/30이 되도록 용액 블렌딩으로 제조하였다. SEM, DSC, DMA 분석 결과 이들 블렌드는 부분적으로 상용성이며, EVA가 연속상을 이루고 Az-PBD가 분산상을 이루는 미세구조를 갖는 것을 알 수 있었다. 인장실험으로부터 Az-PBD 함량이 증가될수록 인장모듈러스 및 영구신장변형율이 증가되고 파단신율이 감소되는 경향을 보였으나, 제조된 모든 블렌드들은 700% 이상의 파단신율과 5% 이하의 영구인장변형율을 나타내어, 일반적인 탄성고무소재와 같은 특성을 나타내었다. 또한, 연소 시 Az-PBD 함량 증가함에 따라 더 큰 불꽂이 발생되어 연소 시 더 높은 에너지를 발생시킬 수 있음을 확인할 수 있었다.

Mechanical Properties and Thermal Stability of Waste PVC/HDPE Blend Prepared by Twin-screw Extruder

  • Lee, Rami;Park, Se-Ho;Baek, Jong-sung;Kye, Hyoungsan;Jhee, Kwang-Hwan;Bang, Daesuk
    • Elastomers and Composites
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    • 제54권1호
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    • pp.7-13
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    • 2019
  • Recycling of waste polyvinyl chloride plastics has attracted much attention due to environmental problems, but the poor mechanical properties, low thermal stability, frequent breakage of strands, and melt cracking of the waste plastics have limited their widespread use. To overcome these disadvantages of waste PVC (W-PVC), recycled PVC powder blend was prepared by adding high-density polyethylene (HDPE) and ethylene vinyl acetate (EVA) as a heat stabilizer and compatibilizer, respectively. An intermeshing co-rotating twin screw extruder was used to prepare the blend, and the characteristics of the blend were analyzed by SEM and TGA, and by using a UTM and Izod impact tester. The impact strength was improved as the EVA content increased for the W-PVC/HDPE (80/20 wt%) blend. As the HDPE and EVA contents increased in the W-PVC/HDPE/EVA blend, the impact strength increased. SEM observations also revealed the improved interfacial adhesion for the EVA-containing blend.

혼합 폐포장 필름의 상용성 증진과 강인화 (Enhancement of Compatibility and Toughening of Commingled Packaging Film Wastes)

  • 전병환;윤호규;황승상;김정안;홍순만
    • 폴리머
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    • 제29권2호
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    • pp.127-134
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    • 2005
  • 포장용 필름 등으로 사용되는 폴리프로필렌(PP)계 필름[PP/polyethylene(PE)/aluminum(Al)poly(ethylene terephthalate)(PET)]과 나일론(Nylon)계 필름[Nylon/PE/linear-low density polyethylene(LLDPE)] 등 혼합 폐포장 필름의 상용성 증진과 강인화를 위해 시판되는 여러 가지 상용화제 중 ethylene vinylacetate(EVA), styrene-ethylene/butylene-styrene triblock copolymer(SEBS), styrene-ethylene/butylene-styrene-graft-maleic anhydride copolymer(SEBS-g-MA), polyethylene-graft-maleic anhydride (PE-g-MA), polypropylene-graft-maleic anhydride(PP-g-MA), polyethylene-graft-acrylic acid(PE-g-AA), polypropylene-araft-acrylic acid(PP-g-AA) 등을 사용하여 반응 압출 공정에 의한 기계적 물성, 유성학적 성질과 형태학적 변화를 살펴보았다. 단순 용융 블렌드와 비교하여 상용화제로 SEBS와 EVA를 사용하였을 때 약 $50\%$의 물성 향상을 보였으나 나일론의 말단기인 아민기와의 반응성 향상을 위해 무수말레인산이 그래프트된 열가소성 탄성체 SEBS-g-MA의 사용시 분산 입자의 감소 및 접촉면적의 증가에 의한 계면 접착력의 증가로 약 $200\%$ 이상의 내충격성의 향상을 이룰 수 있었다.

MCM-41을 이용한 LDPE-LLDPE-EVA 공중합체 혼합물의 접촉 열분해 반응에 미치는 Aluminium 첨가 효과 (Effect of Aluminium Addition to MCM-41 on Catalytic Cracking of an LDPE-LLDPE-EVA Copolymer Mixture)

  • 김민지;전종기;박영권;고영수;손정민
    • Korean Chemical Engineering Research
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    • 제45권2호
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    • pp.117-123
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    • 2007
  • 농업용 필름을 제조하는데 사용되는 EVA 공중합체, LDPE, LLDPE 혼합물의 접촉 열분해 반응에 있어서 MCM-41 촉매에 aluminium을 첨가가 생성물의 수율, 탄소 수 분포 등에 미치는 영향을 조사하였다. Aluminium은 direct 및 post 방법으로 첨가하였고, 열분해 반응은 액상 접촉과 기상 접촉 반응 결과를 비교하였다. Direct 또는 post 방법으로 aluminium이 첨가된 MCM-41에서 aluminium 첨가량이 증가할수록 Lewis 산점이 증가하여 전체 산점의 양이 증가하였는데 post 방법으로 제조된 촉매에서 산점의 양이 더 많이 증가하였다. 액상 접촉 반응에서 aluminium의 양이 증가하면 가벼운 탄화수소가 많이 생기는데, $C_5-C_{12}$ 범위의 탄소화합물의 생성에 Al-MCM-41-P 촉매가 더 효과가 컸다. 기상 접촉 반응에서는 Al-MCM-41-D와 Al-MCM-41-P사이의 차이가 액상 접촉 반응시보다 상대적으로 적게 나타났으나, 액상접촉 반응에 비해 $C_{13}-C_{32}$ 범위의 탄화수소가 크게 감소했음을 알 수 있다.

생분해성 지방족 폴리에스테르에 관한 연구(III) : Copolyesterethylene/EVA(VA15%) 블랜드의 상용성 (Study on the Biodegtadable Aliphatic Polyester(III) : Compatibility of Copolyesterethylene/EVA (VA15%) Blends)

  • 박태욱;강혜정;김용주;이치규
    • 공업화학
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    • 제5권5호
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    • pp.889-898
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    • 1994
  • 생분해성 고분자의 실용화 검토를 위하여 생분해성 copolyesterethylene(CPEE)과 vinlyacete(VA)기가 15%인 범용 ethylene vinylacetate(EVA)를 0~100%까지 10% 간격으로 전조성에 걸쳐 용융 블랜드하였다. 용융 블랜드한 시료의 녹는점 변화와 결정화 온도를 시차 주사 열량계로 측정하여 miscibility에 관하여 고찰하였으며 만능시험기를 이용하여 인장강도 및 신장률을 측정하였다. 녹는점 변화와 결정화 온도로부터 CPEE 조성이 10%와 90%일 때 약간의 miscibility를 보였으며, 인장강도값으로부터는 CPEE 조성이 50~80%를 제외한 조성에서 유용한 compatibility를 갖는 것을 알았다. SEM 관찰을 통한 각조성에서의 형태학적 모습으로부터 이들 상용성의 결과를 확인하였으며, 또한 CPEE/EVA 블랜드의 생분해성은 미생물접종 전후의 시편의 변화를 Image analyzer로 관찰함으로써 확인하였다.

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EVA/Clay Nanocomposite by Solution Blending: Effect of Aluminosilicate Layers on Mechanical and Thermal Properties

  • Pramanik, M.;Srivastava, S.K.;Samantaray, B.K.;Bhowmick, A.K.
    • Macromolecular Research
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    • 제11권4호
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    • pp.260-266
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    • 2003
  • Ethylene vinyl acetate (EVA)/clay nanocomposites were synthesized by blending a solution of ethylene vinyl acetate copolymer containing 12% vinyl acetate abbreviated as EVA-12 in toluene and dispersion of dodecyl ammonium ion intercalated montmorillonite (l2Me-MMT) in N,N-dimethyl acetamide (DMAc). X-ray patterns of sodium montmorillonite ($Na^+$-MMT) and 12Me-MMT exhibited $d_{001}$ peak at $2{\theta}=7.4^{\circ}$ and $2{\theta}=5.6^{\circ}$ respectively; that is, the interlayer spacing of MMT increased by about 0.39 nm due to intercalation of dodecyl ammonium ions. The XRD trace of EVA showed no peak in the angular range of $3-10^{\circ}(2{\theta})$. In the XRD patterns of EVA/clay hybrids with clay content up to 6 wt% the basal reflection peak of 12Me-MMT was absent. leading to the formation of delaminated configuration of the composites. When the 12Me-MMT content was 8 wt% in the EVA-12 matrix, the hybrid revealed a peak at about $2{\theta}=5.6^{\circ}$, owing to the aggregation of aluminosilicate layers. Transmission electron microscopic photograph exhibited that an average size of 12-15 nm clay layers were randomly and homogeneously dispersed in the polymer matrix, which led to the formation of nanocomposite with delaminated configuration. The formation of delaminated nanocomposites was manifested through the enhancement of mechanical properties and thermal stability, e.g. tensile strength of an hybrid containing only 2 wt% 12Me-MMT was enhanced by about 36% as compared with neat EVA-12.

EVA개질 투명시트와 부직포를 열풍 점융착한 일체형 방수시트를 이용한 터널방수공법에 관한 연구 (A study on the EVA reforming processes transparency sheet and nonwoven warm air point adhesion using of tunnel waterproofing method.)

  • 선윤숙;김점술;김수련;오상근
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2005년도 춘계 학술기술논문발표대회 논문집
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    • pp.185-190
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    • 2005
  • Safe, economical and environment-friendly tunnel construction are required again along with social continuous development, the importance of waterproof work that is portion that actually all of user and builder can find that is embossed by tunnel construction's one of important construction. Also, ECB (Ethylen Copolymer Bitumen) sheet that is used in existing tunnel waterproofing method (ECB waterproofing method) being black because asphalt (Bitumen) is added, by purpose that make illumination of tunnel interior brightly and scar discovery eases in sheet with coating white film, but ECB that is used present according as ECB that asphalt is added does not satisfy high tensile strength of construction field, quality standard of extension. Also ECB denigrates color of black M/B that asphalt is excepted.

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Study on Property Modification with Polymer Compositions in the Manufacture of Compounds for Cable Sheath

  • Li, Xiang Xu;Lee, Sang Bong;Cho, Ur Ryong
    • Elastomers and Composites
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    • 제54권3호
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    • pp.220-224
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    • 2019
  • Herein, three polymer compounds were manufactured using three polymer combination methods, ethylene-vinyl acetate/ethylene-propylene-diene-copolymer (EPDM), ethylene-vinyl acetate (EVA)/polyethylene-A (PE-A; density: 0.870), and ethylene-vinyl acetate (EVA)/polyethylene-B (PE-B; density: 0.885), for making cable sheath for use in the shipping industry. In this study, EVA, EPDM, PE-A, and PE-B were used as matrix polymers, and EVA-grafted maleic anhydride was used as a coupling agent for compounding with various compounds such as a fire retardant, cross-linking agent, filler, and other additives, besides the plasticizer. ${\Delta}T$, Mooney viscosity, and tensile strength increased in order of EPDM < PE-A < PE-B, the probable reason is due to the different crosslinking effect. The three compounds showed similar results for fire resistance and aging resistance after compounding process, but they showed excellent cold resistance owing to the non-polarity of the polymers and sufficient plasticizer content.

A Study on Composites of Ethylene-Vinyl Acetate Copolymer and Ethylene-Propylene-Diene Rubber with Aluminum Hydroxide as a Fire Retardant

  • Lee, Yu Jun;Lee, Su Bin;Jung, Jae Young;Lee, Dam Hee;Cho, Ur Ryong
    • Elastomers and Composites
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    • 제51권2호
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    • pp.93-98
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    • 2016
  • The composites of EVA/EPDM including aluminum trioxide (ATH) as a fire retardant were manufactured for the purpose of improving low temperature property and flame resistance in the rubbery materials. The ratio of EVA to EPDM didn't affect the flame resistance of the rubber composites. The addition of ATH resulted in increase of the flame resistance. In the evaluation of the cold resistance, the increasing EPDM content showed enhancement of cold resistance in the composites due to increasing low Tg EPDM. It was found out that tensile strengths of the composites showed a maximum value at 100 phr of ATH by reinforcing effect, but a minimum value at 200 phr of ATH owing to slippage between the flame retardant by the external stress. In the measurement of solvent resistance in tetrahydrofuran, the increasing ATH content yielded enhancement of solvent resistance by reducing swelling of the composite, and increasing EPDM content also resulted from increase of the solvent resistance by reduction of polarizability as well as increase of crosslink in the composites.

Polarity-tuned Gel Polymer Electrolyte Coating of High-voltage LiCoO2 Cathode Materials

  • Park, Jang-Hoon;Cho, Ju-Hyun;Kim, Jong-Su;Shim, Eun-Gi;Lee, Yun-Sung;Lee, Sang-Young
    • 전기화학회지
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    • 제14권2호
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    • pp.117-124
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    • 2011
  • We demonstrate a new surface modification of high-voltage lithium cobalt oxide ($LiCoO_2$) cathode active materials for lithium-ion batteries. This approach is based on exploitation of a polarity-tuned gel polymer electrolyte (GPE) coating. Herein, two contrast polymers having different polarity are chosen: polyimide (PI) synthesized from thermally curing 4-component (pyromellitic dianhydride/biphenyl dianhydride/phenylenediamine/oxydianiline) polyamic acid (as a polar GPE) and ethylene-vinyl acetate copolymer (EVA) containing 12 wt% vinyl acetate repeating unit (as a less polar GPE). The strong affinity of polyamic acid for $LiCoO_2$ allows the resulting PI coating layer to present a highly-continuous surface film of nanometer thickness. On the other hand, the less polar EVA coating layer is poorly deposited onto the $LiCoO_2$, resulting in a locally agglomerated morphology with relatively high thickness. Based on the characterization of GPE coating layers, their structural difference on the electrochemical performance and thermal stability of high-voltage (herein, 4.4 V) $LiCoO_2$ is thoroughly investigated. In comparison to the EVA coating layer, the PI coating layer is effective in preventing the direct exposure of $LiCoO_2$ to liquid electrolyte, which thus plays a viable role in improving the high-voltage cell performance and mitigating the interfacial exothermic reaction between the charged $LiCoO_2$ and liquid electrolytes.