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      PU-나노 웹과 필름 처리한 투습방수 자카드 직물의 성능 = Performances of Breathable & Waterproof Jacquard Fabric with PU-Nanofiber Web and PU-Film

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      https://www.riss.kr/link?id=A101372742

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      The aim of this study was to measure the functional properties of a nanofiber web laminate, microporous film laminate, and nonporous coating fabric and then compare their performances as a breathable waterproof fabric. We focused on the performance of the nanofiber web laminate as a breathable waterproof fabric. A PU nanofiber web was prepared by electrospinning. The measured functional properties included the water vapor permeability, air permeability, waterproofness, adhesive strength, and water vapor resistance, as well as the property of a warm/cool feeling. The measurement results showed that the nanofiber web laminate fabric provided excellent moisture permeability as well as sufficient waterproofness and water vapor resistance in comparison to the microporous film laminate and nonporous coating fabric. We concluded that the performance of the nanofiber web laminate is sufficient for use as cloth in outdoor wear if an optimum electrospinning and lamination process is used in its production.
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      The aim of this study was to measure the functional properties of a nanofiber web laminate, microporous film laminate, and nonporous coating fabric and then compare their performances as a breathable waterproof fabric. We focused on the performance of...

      The aim of this study was to measure the functional properties of a nanofiber web laminate, microporous film laminate, and nonporous coating fabric and then compare their performances as a breathable waterproof fabric. We focused on the performance of the nanofiber web laminate as a breathable waterproof fabric. A PU nanofiber web was prepared by electrospinning. The measured functional properties included the water vapor permeability, air permeability, waterproofness, adhesive strength, and water vapor resistance, as well as the property of a warm/cool feeling. The measurement results showed that the nanofiber web laminate fabric provided excellent moisture permeability as well as sufficient waterproofness and water vapor resistance in comparison to the microporous film laminate and nonporous coating fabric. We concluded that the performance of the nanofiber web laminate is sufficient for use as cloth in outdoor wear if an optimum electrospinning and lamination process is used in its production.

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      참고문헌 (Reference)

      1 양정한, "투습방수성 Polyurethane 나노섬유 Multi-Membrane의 제조" 한국염색가공학회 23 (23): 107-117, 2011

      2 윤보람, "전기방사한 나노섬유 웹 처리소재와 상용 투습방수소재의 역학적 특성 비교" 한국감성과학회 13 (13): 391-402, 2010

      3 이경, "전기방사한 나노섬유 웹 라미네이트 소재의 반복 세탁에 따른 투습방수 성능 변화 및 내구성" 한국의류산업학회 14 (14): 122-129, 2012

      4 강연경, "전기방사 폴리우레탄 웹의 멤브레인 특성과 응용에 관한 연구" 서울대학교 대학원 2007

      5 강인형, "발한써멀마네킨을 이용한 투습방수의류의 착용쾌적성 평가" 한국의류학회 37 (37): 1095-1106, 2013

      6 김정화, "레인코트용 자카드 직물의 소비자 요구도 및 패턴 이미지 감성 평가" 한국의류산업학회 16 (16): 645-652, 2014

      7 C. J. Painter, "Waterproof, Breathable Fabric Laminates: A Perspective from Film to Market Place" 26 (26): 107-130, 1996

      8 J. Manjeet, "Waterproof Breathable Polymeric Coatings Based on Polyurethan" 33 (33): 269-280, 2004

      9 B. Farnworth, "Variation of Water Vapor Resistance of Microporous and Hydrophilic Films with Relative Humidity" 61 : 50-53, 1993

      10 H. K. Rouette, "Trends in Coating and Laminating" 26 (26): 241-251, 1997

      1 양정한, "투습방수성 Polyurethane 나노섬유 Multi-Membrane의 제조" 한국염색가공학회 23 (23): 107-117, 2011

      2 윤보람, "전기방사한 나노섬유 웹 처리소재와 상용 투습방수소재의 역학적 특성 비교" 한국감성과학회 13 (13): 391-402, 2010

      3 이경, "전기방사한 나노섬유 웹 라미네이트 소재의 반복 세탁에 따른 투습방수 성능 변화 및 내구성" 한국의류산업학회 14 (14): 122-129, 2012

      4 강연경, "전기방사 폴리우레탄 웹의 멤브레인 특성과 응용에 관한 연구" 서울대학교 대학원 2007

      5 강인형, "발한써멀마네킨을 이용한 투습방수의류의 착용쾌적성 평가" 한국의류학회 37 (37): 1095-1106, 2013

      6 김정화, "레인코트용 자카드 직물의 소비자 요구도 및 패턴 이미지 감성 평가" 한국의류산업학회 16 (16): 645-652, 2014

      7 C. J. Painter, "Waterproof, Breathable Fabric Laminates: A Perspective from Film to Market Place" 26 (26): 107-130, 1996

      8 J. Manjeet, "Waterproof Breathable Polymeric Coatings Based on Polyurethan" 33 (33): 269-280, 2004

      9 B. Farnworth, "Variation of Water Vapor Resistance of Microporous and Hydrophilic Films with Relative Humidity" 61 : 50-53, 1993

      10 H. K. Rouette, "Trends in Coating and Laminating" 26 (26): 241-251, 1997

      11 J. M. Deizel, "The Effect of Processing Variables on the Morphology of Electrospun Nanofibers and Textiles" 24 : 261-272, 2001

      12 K. W. Kim, "The Effect of Molecula Weight and the Linear Velocity of Drum Surface on the Properties of Electrospun Poly(ethylene terephthalate) Nonwovens" 5 : 122-127, 2004

      13 S. Lee, "The Effect of Laundering on the Thermal and Water Transfer Properties of Mass-produced Laminated Nanofiber Web for Use in Wear" 80 (80): 99-105, 2010

      14 S. Lee, "The Effect of Laundering on the Mechanical Properties of Mass-produced Nanofiber Web for Use in Wear" 79 (79): 1085-1090, 2009

      15 S. Lee, "The Effect of Laundering on the Mechanical Properties of Mass-produced Laminated Nanofiber Web for Use in Wear" 79 (79): 1085-1090, 2009

      16 M. H. Min, "Tendency of Functional Finishing Technology for Outdoor-Wear Fabric" 18 (18): 108-119, 2014

      17 A. L. Yarin, "Taylor Cone and Jetting from Liquid Droplets in Electrospinning of Nanofibers" 90 : 4836-4846, 2001

      18 X. Zong, "Structure and Process Relationship of Eletrospun Bioabsorbable Nanofiber Membranes" 43 : 4403-4412, 2002

      19 H. Fong, "Structure Formation in Polymeric Fiber" Hanser 225-246, 2001

      20 S. J. Kim, "Preparation and Characterization of Antimicrobial Polycarbonate Nanofibrous Membrane" 43 : 3146-3152, 2007

      21 T. Graf, "Polymeric Nanofibers and Nanofiber Webs : A New Class of Nonwovens" 2002

      22 강태진, "PANI/PAN 나노웹의 제조와 전기전도성" 한국섬유공학회 43 (43): 166-171, 2006

      23 K. Krishnan, "New Applications for Breathable Hydrophilic and Non-hydrophilic Coatings" 25 (25): 103-114, 1995

      24 L. Qian, "Nanotechnology in Textiles: Recent Developments and Future Prospects" 4 (4): 14-16, 2004

      25 I. Holme, "Nanotechnologies for Textiles, Clothing, and Footwear" 32 (32): 7-11, 2005

      26 G. Lomax, "Hydrophilic Polyurethane Coating" 20 : 88-107, 1990

      27 T. Uyar, "Electrospinning of Uniform Polystyrene Fibers : The Effect of Solvent Conduvtivity" 49 : 5336-5343, 2008

      28 D. Li, "Electrospinning of Nanofibers : Reinventing the Wheel?" 16 (16): 1151-1170, 2004

      29 D. H. Reneker, "Electrospinning Jets and Polymer Nanofibers" 49 : 2387-2425, 2008

      30 P. W. Gibson, "Effect of Temperature on Water Vapor Transport Through Polymer Membrane Laminates" 19 (19): 673-691, 2000

      31 S. H. Moon, "Development of Waterproof & Breathable Coated Fabric for Outdoor Wear" 18 (18): 120-126, 2014

      32 E. A. Kim, "Development of Human-Clothing-Environment Simulator for Dynamic Heat and Moisture Transfer Properties of Fabrics" 4 : 215-221, 2003

      33 B. Yoon, "Designing Waterproof Breathable Materials Based on Electrospun Nanofibers and Assessing the Performance Characteristics" 12 : 57-64, 2011

      34 G. Lomax, "Design of Waterproof, Water-vapor Permeable Fabrics" 15 : 115-125, 1985

      35 J. M. Deizel, "Controlled Deposition of Electrospun Poly(ethylene oxide)Fibers" 42 : 8163-8170, 2001

      36 H. Fong, "Beaded Nanofibers Formed during Electrospinning" 40 : 4585-4592, 1999

      37 Y. K. Kang, "Application of Electrospun Polyurethane Web to Breathable Water-proof Fabrics" 8 : 564-570, 2007

      38 E. J. Yi, "An Analysis of Effective Variables on Clothing Wear Comfort Using Linear Structural Equation" A47-52, 1997

      39 정원영, "A Study on Physical and Mechanical Properties of Breathable Waterproof Fabrics Manufactured with PTEE Membrane-Fabric Composite" 한국의류학회 26 (26): 1685-1693, 2002

      40 A. Mukhopadhyay, "A Review on Designing the Breathable Waterproof Fabrics Part Ι: Fundamental Principles and Designing Aspects of Breathable Fabrics" 37 (37): 224-262, 2008

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 계속평가 신청대상 (등재유지)
      2017-01-01 평가 우수등재학술지 선정 (계속평가)
      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-09-03 학술지명변경 외국어명 : The Korean Fiber Soceity -> Textile Science and Engineering KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-03-05 학술지명변경 외국어명 : The Korean Fiber Soceity -> Textile Science and Engineering KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      1998-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.13 0.13 0.15
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.17 0.17 0.29 0.02
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