• Title/Summary/Keyword: coated fabric

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Fabrication of Electroconductive Textiles Based Polyamide/Polyurethan Knitted Fabric Coated with PEDOT:PSS/Non-oxidized Graphene (PEDOT:PSS/그래핀 코팅된 폴리아미드/폴리우레탄 혼방 편직물 기반의 전기전도성 텍스타일 제조)

  • Luo, Yuzi;Cho, Gilsoo
    • Fashion & Textile Research Journal
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    • v.24 no.1
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    • pp.146-155
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    • 2022
  • We proposed a simple process of creating electroconductive textiles by using PEDOT:PSS(Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate))/non-oxidized graphene to coat polyamide or polyurethane knitted fabric for smart healthcare purposes. Electroconductive textiles were obtained through a coating process that used different amounts of PEDOT:PSS/non-oxidized graphene solutions on polyamide/polyurethane knitted fabric. Subsequently, the surface, electrical, chemical, weight change, and elongation properties were evaluated according to the ratio of PEDOT:PSS/non-oxidized graphene composite(1.3 wt%:1.0 wt%; 1.3 wt%:0.6 wt%; 1.3 wt%:0.3 wt%) and the number of applications(once, twice, or thrice). The specimens' surface morphology was observed by FE-SEM. Further, their chemical structures were characterized using FTIR and Raman spectroscopy. The electrical properties measurement (sheet resistance) of the specimens, which was conducted by four-point contacts, shows the increase in conductivity with non-oxidized graphene and the number of applications in the composite system. Moreover, a test of the fabrics' mechanical properties shows that PEDOT:PSS/non-oxidized graphene-treated fabrics exhibited less elongation and better ability to recover their original length than untreated samples. Furthermore, the PEDOT:PSS/non-oxidized graphene polyamide/polyurethane knitted fabric was tested by performing tensile operations 1,000 times with a tensile strength of 20%; Consequently, sensors maintained a constant resistance without noticeable damage. This indicates that PEDOT:PSS/non-oxidized graphene strain sensors have sufficient durability and conductivity to be used as smart wearable devices.

Condition of R/F(release fabric) for Knit coating and Their Property Changes of Coated kint(2) (니트 코팅을 위한 R/F(release fabric) 조건설정 및 조건별 코팅성능 변화에 따른 연구(2))

  • Song, Sun-Hye;Yoon, Ho-Jung;Yang, Sung-Yong;Bea, Soo-Jung
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2011.03a
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    • pp.98-98
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    • 2011
  • 직물의 경우 드레이프성을 줄이고 KOSHI감(stiffness)을 부여하기 위해 일반적으로 나이프(knife) 코팅가공을 주로 사용한다. 하지만 니트는 워낙 신축성이 뛰어나기 때문에 큰 장력을 요구하는 일반 코팅공정을 적용할 경우 원단이 나이프에 밀리는 현상과 신장 상태에서 경화되어 니트 특유의 신축성을 완전히 읽어버리는 문제가 발생한다. 따라서 니트 코팅 가공을 위해 원단에 장력이 걸리지 않으며 니트 원단에 직접 수지를 도포하는 방식이 아닌 간접 도포가 가능한 장비를 고안하였다. 즉, 아래에 나타낸 모식도와 같이 프로팅이나 over roll 나이프 방식을 사용하여 전사에 필요한 수지를 R/F에 코팅하고 이를 니트와 붙인 후 열풍 건조기와 열실린더를 통과시켜 수지가 니트에 전사되도록 하는 것이다. 본 연구에서는 고신축성과 탁월한 포면 터치감을 가지는 니트를 겉옷 및 다양한 용도로 전개하기 위해 R/F(releas fabric)의 조건을 설정 및 코팅 조건 설정을 통해 니트 가공 직물의 성능 변화를 살펴보기로 한다.

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Enviroment-Friendly Synthesis of Nanocrystalline Nickel Oxide and Its Antibacterial Properties (폐과일껍질을 이용한 친환경 NiO 나노분말 합성 및 향균특성 연구)

  • Yuvakkumar, R.;Song, Jae Sook;Hong, Sun Ig
    • Korean Journal of Materials Research
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    • v.28 no.1
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    • pp.24-31
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    • 2018
  • This study reports an environment-friendly synthetic strategy to process nickel oxide nanocrystals. A mesoporous nickel oxide nanostructure was synthesized using an environmentally benign biomimetic method. We used a natural rambutan peel waste resource as a raw material to ligate nickel ions to form nickel-ellagate complexes. The direct decomposition of the obtained complexes at $700^{\circ}C$, $900^{\circ}C$ and $1100^{\circ}C$ in a static air atmosphere resulted in mesoporous nickel oxide nanostructures. The formation of columnar mesoporous NiO with a concentric stacked doughnuts architecture was purely dependent on the suitable direct decomposition temperature at $1100^{\circ}C$ when the synthesis was carried out. The prepared NiO nanocrystals were coated on cotton fabric and their antibacterial activity was also analyzed. The NiO nanoparticle-treated cotton fabric exhibited good antibacterial and wash durability performance.

Changes in Waterproofness and Breathability after Repeated Laundering and Durability of Electrospun Nanofiber Web Laminates (전기방사한 나노섬유 웹 라미네이트 소재의 반복 세탁에 따른 투습방수 성능 변화 및 내구성)

  • Lee, Kyung;Yoon, Bo-Ram;Lee, Seung-Sin
    • Fashion & Textile Research Journal
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    • v.14 no.1
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    • pp.122-129
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    • 2012
  • To develop a waterproof breathable material, we fabricated three kinds of nanofiber web laminates using a massproduced electrospun nanofiber web with different substrates and layer structures. The waterproofness and breathability of nanofiber web laminates were evaluated after repeated launderings and compared with those of conventional waterproof breathable fabrics currently in use, including densely woven fabric, microporous membrane laminated fabric, and coated fabric. The durability of nanofiber web laminates, including adhesion strength, abrasion resistance, tensile strength, and tearing strength, was also assessed and compared with those of conventional waterproof breathable fabrics. The water vapor transmission of nanofiber web laminates increased slightly after repeated launderings, whereas the air permeability somewhat decreased after launderings but still maintained an acceptable level of air permeability. Laundering reduced the resistance to water penetration of nanofiber web laminates, which implies that laminating techniques or substrate materials that could support waterproofness of the laminated structure should be explored. The adhesion strength, abrasion resistance, tensile strength, and tearing strength of nanofiber web laminates were in a range comparable to conventional waterproof breathable materials.

Differences in Rectus Femoris Activation Among Skaters Wearing Fabric Speed Skating Suits with Different Levels of Compression

  • Moon, Young-Jin;Song, Joo-Ho;Hwang, Jinny
    • Korean Journal of Applied Biomechanics
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    • v.26 no.4
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    • pp.421-426
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    • 2016
  • Objective: The purpose of this study was to investigate how different levels of compression exerted on the femoral region (known as the power zone) by coated fabric influences the activation and anaerobic capacity of the rectus femoris. Method: Three different levels of compression on the rectus femoris of the participants, namely 0% (normal condition), 9% (downsize), and 18% (downsize), were tested. The material of the fabric used in this study was nonfunctional polyurethane. Surface electromyography test was used to investigate the activation of the rectus femoris, while the isokinetic test (Cybex, $60^{\circ}/sec$) and Wingate test were used to investigate the maximum anaerobic power. Results: The different compression levels (0%, 9%, and 18%) did not improve the strength and anaerobic capacity of the knee extensor. However, knee flexor interfered with activation of the biceps femoris, which is an agonist for flexion, during 18% compression. Conclusion: Compression garments might improve the stretch shortening cycle effect at the time of eccentric contraction and during transition from eccentric to concentric contraction. Therefore, future studies are required to further investigate these findings.

Flame-retardant Finish of Cotton Fabrics Using UV-curable Phosphorous-containing Monomers (자외선 경화형 인계 단량체를 이용한 면직물의 방염가공)

  • Jang, Jin-Ho;Jeong, Yong-Kyun
    • Textile Coloration and Finishing
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    • v.20 no.4
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    • pp.8-14
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    • 2008
  • Flame-retardant cotton fabrics were prepared by UV curing of photocurable aqueous formulations of phosphorous-containing methacrylate monomers and 2-hydroxy-2-methyl-1-phenyl-1-propanone as flame retardants and a photoinitiator respectively, which is an environmentally friendly and energy-saving process. The characterization of the UV-coated cotton fabric was made by ATR, TGA and limited oxygen index measurement. UV cured coating onto cotton fabrics reduced the first thermal decomposition temperature and mass loss as well as increase in the amount of char residue compared with the untreated cotton fabric presumably due to modified thermal decomposition process. The LOI values up to 28.5 and 27.2 were obtained by the UV curing of MMEP and TMEP respectively. The treatment was durable to five laundering cycles, which was more prominent in the case of trifunctional TMEP treatment.

Property Evaluation of Breathable Blend Fabric of MPCE Copolymer and Wet Coagulated Polyurethane (MPCE copolymer와 습식 폴리우레탄의 블렌드에 의한 투습방수 나일론 직물의 제반 물성변화에 관한 연구)

  • Yi, Jong-Woo;Chae, Ei-Jung;Bae, Jin-Seok
    • Textile Coloration and Finishing
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    • v.26 no.4
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    • pp.322-330
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    • 2014
  • The phospholipid-based MPCE(2-Methacryloxyethyl Phosphoryl Chlorine) copolymer was mixed with wet polyurethane for coating of nylon fabrics. The substitution rate of water in coagulation bath with DMF was changed under control of the size of formed hydrophilic microporous cell enable to manufacture excellent breathable, anti-bacterial and moisture control fabrics. Biocompatible property, vapor permeability, hydrostatic pressure, moisture management and anti-bacterial property were investigated for treated nylon fabrics. In result, increased moisture transmission rates, decreased water resistance and outstanding moisture control property could be confirmed by enhanced hydrophilicity of wet-coated nylon fabric with MPCE copolymer.

Radial Flow Type Bioreactor for Bioartificial Liver Assist System using PTFE Non-Woven Fabric Coated with Poly-amino Acid Urethane Copolymer

  • Miskon, Azizi;Yamaoka, Tetsuji;Uyama, Hiroshi;Kodama, Makoto
    • Proceedings of the Polymer Society of Korea Conference
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    • 2006.10a
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    • pp.259-259
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    • 2006
  • PAU is the block copolymer consists of a small amount of a small amount of poly(${\gamma}-methyl-L-glutamate$) (PMLG) and the polyurethane. The urethane segments are hydrophobic and then strongly interact with the other hydrophobic materials such as PTFE, and the PMLG segments with the ${\alpha}-helix$ structure possess the cytocompatibility. Therefore, PAU can be easily coated onto the PTFE fiber and acts as an artificial extracellular matrix with the high cytocompatibility Results shows, the immobilization, cultured and functions of porcine hepatocytes is greatly improved.

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Nitrogen oxide (NOX) and Sulfur Oxide (SOX) Removal Capacities of Textile FabricsCoated with Nano-pore Materials (나노 공극소재로 코팅된 모헤어의 질소산화물(NOX) 및 황산화물(SOX) 제거 성능평가)

  • Lee, Jae-Uk;Yang, Keun-Hyeok;Mun, Ju-Hyun
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2020.11a
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    • pp.157-158
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    • 2020
  • The present study examined the effectiveness of textile fabrics coated with nano-pore materials on removing the nitrogen oxide (NOX) and sulfur oxide (SOX) in the atmospheric environment. The tested approach is favorable for absorbing NOX and SOX, even under the washing condition.

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Pirntability of pigment coated PET fabric (안료 코팅처리된 PET직물의 인쇄적성)

  • 김수봉;정세관;정용식;박병기
    • Proceedings of the Korean Fiber Society Conference
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    • 2002.04a
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    • pp.429-432
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    • 2002
  • 잉크젯 프린팅 기술의 발전과 대형 플루터의 개발로 디지털 프린팅의 활용범위가 넓어지고 있으며, 특히 옥외광고용이나 배너용, 전시용으로의 사용이 확대되면서 종이와 같은 인쇄적성을 가지면서 사용목적에 맞는 물리적 특성을 지닌 다양한 제품들이 개발되고 있다. 이들 중 직물형태의 제품은 그 활용범위가 매우 넓지만 직물의 특성상 종이처럼 평활하지 못하고 직물 표면에서 잉크방울이 완전히 흡착되므로 잉크젯 프린터에 적합한 인쇄적성을 지니지 못해 최근에는 잉크젯 프린팅시 종이 표면과 근사한 최종 도트 사이즈를 얻기 위해 직물의 표면을 안료로 코팅하여 사용한다. (중략)

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