• Title/Summary/Keyword: blend fiber

검색결과 168건 처리시간 0.034초

SMA가 PC/SAN 블렌드와 유리섬유간의 계면결합력에 미치는 영향 (Effect of SMA on the Interfacial Shear Strength for Single Glass Fiber and PC/SAN Blends)

  • 이의환;남기준;이재욱
    • 폴리머
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    • 제25권4호
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    • pp.512-520
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    • 2001
  • 섬유강화 복합재료의 물성을 결정하는 주요 인자중 하나는 계면결합력이다. 본 연구에서는 유리섬유와 PC/SAN 블렌드를 대상으로 하여 계면결합력을 측정하였으며 SAN함량을 0-30 wt%까지 변화시켜 실험하였다. 계면결합력 측정에는 Single Fiber Fragmentation Test법을 사용하였는데 SAN 함량이 증가할수록 계면결합력이 증가하였다. 한편 계면결합력을 증가시키기 위해 PC/SAN 혼련물을 개질하고자 소량의 SMA를 혼합하였으며, 유리섬유 표면을 실란 커플링제로 처리하여 관능기를 도입하였다. 계면결합력은 SAN/SMA계의 상용성에 크게 영향을 받았으며, 비상용성 SAN/SMA계보다 상용성 SAN/SMA계에서 계면결합력이 증가하였다. 또한 상용성 SAN/SMA계에서는 계면결합력이 SMA 내의 MA 함량이 아닌 전체 계내의 MA 함량에 의존하였으며 그 최적 함량은 0.4wt%였다.

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Investigation of Inter Fiber Cohesion in Yarns. II. Influence of Fiber and Process Parameters on the Cohesion in Man Made and Blended Yarns

  • Gokarneshan N.;Ghosh Anindya;Anbumani N.;Subramaniam V.
    • Fibers and Polymers
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    • 제7권1호
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    • pp.70-72
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    • 2006
  • This paper discusses the inter fiber cohesion in man made and blended yarns. The fiber parameters such as fiber length and fineness influence the cohesion. Studies have been focused on polyester and viscose spun yarns. Though polyester and viscose yarns show similar trend in cohesion, viscose yarns exhibit better cohesion clue to their serrated cross section. Studies on the effect of blend proportion of polyester cotton and polyester viscose yarns reveal that increase of polyester and viscose in the respective blends improve the inter fiber cohesion.

PET, Tencel, Cotton MVS 혼방사의 섬도와 혼용률에 따른 물성 특성 (Physical Properties of Polyester, Tencel and Cotton MVS Blended Yarns with Yarn counts and Blend Ratio)

  • 사아나;이정순
    • 한국의류산업학회지
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    • 제17권2호
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    • pp.287-294
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    • 2015
  • This study investigates the physical properties of Murata Vortex Spinning (MVS) blended yarn with yarn count(20's, 30's, 40's) and blend ratio(Polyester 100, Polyester70:Cotton30, Polyester50:Cotton50, Polyester30:Cotton70, and Polyester50:Tencel40:Cotton10). This study evaluated tenacity, elongation, bending rigidity, bending hysteresis, hairiness coefficient, irregularity and twist number. The structure of MVS blended yarn influenced stress, strain, bending rigidity, bending hysteresis and the hairiness coefficient of MVS blended yarn decreased as the yarn count increased. MVS blended yarn consists of core and sheath. The core of MVS blended yarn is composed of a parallel fiber with a wrapping fiber that covers thecore fiber. This special structure of the MVS blended yarn effects the physical properties of the yarn; in addition, the mechanical properties of the component fibers influenced the stress, strain, bending rigidity, bending hysteresis and hairiness coefficient of MVS blended yarn with the blend ratio. Polyester decreases and cotton increases resulted in decreased physical properties. A similar polyester content increased the tencel and physical properties. Appropriate physical properties and a variety of touch expression can be realized through a correct blend ratio.

견/Polyester 혼방직물의 염색에 관한 연구 (A Study on the Dyeing Method of Silk/Polyester Blend Fabrics)

  • Park, Hyun-Tea;Song, Mi-Kyoung;Kim, Gong-Ju
    • 한국염색가공학회지
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    • 제3권2호
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    • pp.16-24
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    • 1991
  • The textile fabric have the functions of sanitation, decoration, wearing style and washing in the practical use. Among various texitle fiber, silk has less utilities than synthetic fiber in practical use although silk has good benefits of the high quality. Thus no textile fiber, neither natural nor synthetic, has all the functions. In this sence, many blend yarns have been improved various functions of fabric. However, this has been disturbed with the problem of dyeing, especially in the case of blend fabric of silk. In this study, we dyed silk/PET blend fabric in one step useing one bath dyeing method by acid dyes/disperse dyes. The results of the experiments can be summarized as follows; 1) Yellow index of silk fabric treated at $130^{\circ}C$ increased about 7.8 (color difference 4.5 NBS) and whiteness decrease about 5%. 2) Both elongation and tensile strength of silk fabric treated at $130^{\circ}C$ of pH 5-6 decreased about 10% and tensile strength of silk spun yarn treated at $60^{\circ}C$ of pH 10 have little changed. 3) While silk/PET blend frbric dyeing, silk soiling of disperse dyes causes from difference of dyeing rate and degree of silk soiling with dyes. 4) Fastness and soiling of silk/PET blend fabric dyed by one bath dyeing method of acid dyes/disperse dyes was same as two bath dyeing method.

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