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국회도서관 홈으로 정보검색 소장정보 검색

초록보기

In this study, the interfacial adhesion between polyurethane (PU) resin and ultrahigh- molecular-weight polyethylene (UHMWPE) fiber, which was coated with low-concentration PU after plasma treatment, was investigated. First, the UHMWPE fiber was treated with nitrogen plasma. Subsequently, it was coated with extremely low-concentration PU resin for improving its interfacial adhesion with the PU resin. The effects of plasma treatment and low-concentration PU coating were analyzed using XPS, FTIR-ATR, SEM, and AFM. Furthermore, the interfacial shear strength between the plasma-treated UHMWPE fiber and PU resin was measured using the microdroplet test. Consequently, the interfacial adhesion was improved by the low-concentration PU coating after the plasma treatment, due to the increase in mechanical interlocking and molecular diffusion of PU resin.

권호기사

권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
LDPE/TPEE 블렌드 필름으로 보강된 아라미드 방검패드의 제조와 방검 성능 = Preparation of LDPE/TPEE blend film laminated aramid anti-stab pads and their anti-stab properties 이일재, 최진현, 김지현, 백두현 p. 1-9
상전이물질 마이크로캡슐의 표면에 초음파화학 코팅법으로 항균성 구리 나노입자의 도입 = Embedding of antibacterial copper nanoparticles on the surface of PCM microcapsules through the sonochemical coating process 이지헌, 채하늘, 민병길 p. 10-16
인체 마네킨 조각의 최적 3D 프린팅 출력 배향 정보에 대한 정량적 분석 = Quantitative analysis on optimal 3D printing orientation information of human manikin pieces 정진영, 설인환 p. 17-23
시스/코어 단면 구조를 갖는 하이브리드 사이로스펀 방적사 제조 조건에 따른 양모 방적사의 물리적 특성 변화에 관한 연구 = A study on the changes in the physical characteristics of wool spun yarns according to the manufacturing conditions of hybrid sirospun yarns with sheath/core cross-sectional structures 정재석, 김미경, 강후창 p. 24-35
경도별 TPU 필라멘트의 3D 프린팅 압출 온도 조건에 따른 모폴로지 특성 = Morphological characteristics according to the 3D printing extrusion temperature of TPU filaments for different hardnesses 정임주, 신은주, 이선희 p. 36-46
아세틸화 키토산 표면에서 의사체액에 의한 수산화인회석 결정의 생성 = In-situ crystalline formation of nano-hydroxyapatite using simulated body fluids on the surface of acetylated chitosan 김홍성 p. 47-54
시스-코어형 LM PET를 바인더로 한 PET 부직포의 제조 조건에 따른 물성 변화 연구 = Changes in the physical properties of PET nonwovens using sheath-core-type LM PET as a binder based on manufacturing conditions 이재민, 김동은, 최지범, 허정우, 권미연, 이승구 p. 55-62
창상피복재용 어피 콜라겐 복합섬유 및 부직포 제조 = Preparation of fish-skin-based conjugated collagen fibers and nonwovens for wound dressings 곽현중, 안현철, 배영환, 이원준, 여상영 p. 63-71
UHMWPE 섬유의 플라즈마 처리와 저농도 Polyurethane(PU) 코팅을 통한 PU 수지와의 계면접착성 연구 = Interfacial adhesion between polyurethane resin and ultra-high-molecular-weight polyethylene fiber with plasma treatment and low-concentration polyurethane coating 최지범, 강은혜, 이필규, 이재민, 김종희, 이지은, 이승구 p. 72-78

참고문헌 (13건) : 자료제공( 네이버학술정보 )

참고문헌 목록에 대한 테이블로 번호, 참고문헌, 국회도서관 소장유무로 구성되어 있습니다.
번호 참고문헌 국회도서관 소장유무
1 S. I. Moon and J. Jang, “The Effect of the Oxygen-plasma Treatment of UHMWPE Fiber on the Transverse Properties of UHMWPE-fiber/vinylester Composites”, 1999, 59, 487−493. 미소장
2 S. G. Lee, J. I. Yuck, C. W. Joo, and T. J. Kang, “Effect of the Oxygen Plasma Treatments on the Surface Morphology of the Ultra-high Molecular Weight Polyethylene Fiber”, J. Korean Fiber Soc., 1996, 33, 376−385. 미소장
3 S. G. Lee, D. C. Kim, and T. J. Kang, “The Effect of Oxygen Plasma Treatment on the Physico-Chemical Properites and Interfacial Strength of UHMWPE Fibers”, J. Korean Fiber Soc.,1997, 34, 459−465. 미소장
4 J. S. Won, H. Y. Choi, J. J. Yoo, H. N. Choi, D. K. Young, and S. G. Lee, “Interfacial Adhesion Properites of Oxygen Plasma Treated Polyketone Fiber with Natural Rubber”, J. Adhesion and Interface, 2012, 13, 45−50. 미소장
5 S. J. Seop, “Polyurethane Materials for Coating”, The Rubber Society of Korea, 1992, 27, 39−45. 미소장
6 S. H. Yoo, H. J. Song, and C. K. Kim, “Surface Treatment of Silica Nanoparticles and the Characteristics of Their Composites with Thermoplastic Polyurethane Elastomer”, Polymer(Korea), 2012, 36, 721−726. 미소장
7 T. Zhang, Y. Zhao, H. Li, and B. Zhang, “Effect of Polyurethane Sizing on Carbon Fibers Surface and Interfacial Adhesion of Fiber/polyamide 6 Composites”, J. Appl. Polym., 2018, 135, 46111. 미소장
8 T. S. Lee, B. S. Kim, H. N. Choi, K. Y. Lee, and S. G. Lee, “Interfacial Adhesion Properties of Plasma Treated Aramid Fiber with Chloroprene Rubber”, Text. Sci. Eng., 2010, 47, 205−211. 미소장
9 A. Vesel and M. Mozetic, “Modification of PET Surface by Nitrogen Plasma Treatment”, J. Phys.: Conference Series, 2008, 100, 1−4. 미소장
10 I. Bertoti, M. Mohai, and K. Laszlo, “Surface Modification of Graphene and Graphite by Nitrogen Plasma: Determination of Chemical State Alterations and Assignments by Quantitative X-ray Photoelectron Spectroscopy”, ScienceDirect, 2015, 84, 185−196. 미소장
11 I. Junkar, A. Vesel, U. Cvelbar, M. Mozetic, and S. Strnad, “Influence of Oxygen and Nitrogen Plasma Treatment on Polyethyleneterephthalate (PET) Polymers”, Vaccum, 2010, 84, 83−85. 미소장
12 M. K. Sim and S. D. Seul, “Surface Modification of Polymeric Material Using Atmospheric Plasma”, Polymer(Korea), 2008, 32, 433−439. 미소장
13 E. Abdel-Fattah and M. Alshaer, “Polyimide Surface Modification Using He-H2O Atmospheric Pressure Plasma Jet-Discharge Power Effect”, Coatings, 2020, 662, 1−11. 미소장