• 제목/요약/키워드: tensile breaking

검색결과 94건 처리시간 0.034초

Properties of Wool/Spandex Core-Spun Yarn Produced on Modified Woolen Spinning Frame

  • Dang, Min;Zhang, Zhilong;Wang, Shanyuan
    • Fibers and Polymers
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    • 제7권4호
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    • pp.420-423
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    • 2006
  • Spandex has been successfully applied on modified worsted spinning system to produce spandex core spun yam. However it's difficult to produce wool/spandex core-spun yam on woolen spinning system with the same modified device because the drafting device of the two systems is quite different. A new method is introduced to apply spandex on woolen spinning system in this paper. Core-spun yam produced in this way has good appearance and quality by comparing with normal yam. A series of experiments were carried out to study the influence of spandex drafting ratio and yam twist factor on tensile' properties and elasticity of core-spun yams. The results indicate that core-spun yam with spandex drawing ratio of 2.5 and twist factor of 13.63 has highest value of tenacity and breaking elongation.

Reinforcing effect of Single Wall Carbon Nanotubes on Acrylic Fibers

  • Min, Byung G.;Sreekumar, T.V.;Kumar, Satish
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2003년도 The Korea-Japan Joint Symposium
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    • pp.11-12
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    • 2003
  • The reinforcing effect of single wall carbon nanotubes (SWNTs) on polyacrylonitrile (PAN) fiber were investigated. The tensile fracture images of the composite fibers demonstrate that SWNTs are well dispersed in PAN matrix as bundles (ropes) ca. 20nm in thickness. It was found that SWNTs play a role not only to reinforce but also to toughen the PAN fiber by increasing breaking strain as well as modulus and strength of the fiebrs. The composite fibers exhibited improved dimensional stability at elevated temperature compared to the neat PAN fiber.

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An Alternative Fiber Processing Method

  • Seo, Yung-Bum;Lee, Chun-Han
    • 펄프종이기술
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    • 제43권5호
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    • pp.34-42
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    • 2011
  • A fiber processing method, which might be an alternative for conventional refining process, was introduced. The method consists of repetitive, gentle, mechanical impacts on fibers, followed by fiber uncurling process. This method was very effective for OCC and BCTMP for increasing WRVs (water retention value) while keeping fiber lengths from shortening. For OCC and BCTMP, gentle mechanical impacts on fibers using Hobart mixer increased breaking lengths and tear strengths simultaneously at fast drainage level, and straightening fibers using kady mill increased those strength properties further. For SwBKP and HwBKP, only mechanical impacts using the Hobart mixer were effective on increasing tensile and tear strength at fast drainage, but there were no further increase by kady mill treatment. The strength increases of BCTMP by this alternative fiber processing method were exceptionally high. An extensive engineering development should be followed to actualize this fiber processing mechanism in an energy-effect way.

폴리메틸 히드로 실록산과 폴리디메틸 실록산으로 처리한 견섬유의 물성에 관한 연구 (A Study on the Physical Properties of Silk Fabrics Treated with Polymethylhydrosiloxane and Polydimethylsiloxane)

  • 장병호;신광호;이병학
    • 한국염색가공학회지
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    • 제5권1호
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    • pp.1-9
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    • 1993
  • The polymethylhydrosiloxane(PMHS) was synthesized by the co-hydrolysis of methyldichlorophydrosilane and ethyl ether, also polydimethylsiloxane(PDMS) was synthesized by the hydrolysis of dimethyl dichlorosilane and ethyl ether. The silk fabrics were treated with PMHS and PDMS in order to improve the water repellency and the wrinkle recovery. Also the effect of PMHS concentration, PDMS concentration and cure temperature on the physical properties of silk fabrics were studied. The maximum water repellency and maximum wrinkle recovery were obtained from the fabrics treated under the conditions 5%-PMHS and PDMS at 16$0^{\circ}C$, and 3%-PMHD and PDMS at 16$0^{\circ}C$, respectively. The tensile strength, the breaking elongation, the reflection and the bending properties of silk fabrics were not degraded severely by the treatment of PMHS or PDMS.

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액화목재복합체(LWPC)의 제조 및 물성 (Preparation and Properties of Liquefied-Wood Polymer Composite)

  • 김철현;김강재;엄태진
    • Current Research on Agriculture and Life Sciences
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    • 제27권
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    • pp.29-33
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    • 2009
  • Liquefied-wood polymer composite was prepared and mechanical properties was evaluated to develop potential utility of liquefied wood. The liquefied wood was made from waste wood and chemical modified with acetic anhydride and maleic anhydride (MA), phtalic anhydride (PA). The composite sheet was prepared from modified liquefied-wood and polymer(PE). The mechanical, chemical and microscopical properties composite sheet were investigated. The results were summarized as follows, 1. The tensile strength was increased and breaking elongation of composite sheet was decreased with the time of acetylation and the dosage of MA. 2. The Young's modulus of composite sheet was gradually decreased with the dosage of PA. 3. The peak intensity of 1737cm-1 in FT-IR spectra of chemical modified liquefied woods was increased. 4. The dispersity of liquefied woods with PE was improved with chemical modification.

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조림묘목 멀칭매트 제조용 고분자의 물성 및 생분해성 (Properties and Biodegradation of Polymer for Afforestation Seedling Mulching Mat)

  • 김강재;김형진;엄태진
    • 펄프종이기술
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    • 제41권4호
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    • pp.8-14
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    • 2009
  • Characteristics of biodegradable polymers for mulching mat for seedling were investigated. The solvent solubility of polymers is highest in methylene chloride and chloroform. Tensile strength and breaking elongation of polymer dipped paper were increased to the 0.43-1.46 kN/m and the 0.03-0.26%, respectively. PLAs had showed lower glass transition temperature and melting point than those of polyester. As a result, PLA should be most suitable polymer for mulching mat manufacturing. After biodegradation of polymers by lipase, surface of polymers was change to more flat due to enzymatic degradation.

생분해성 고분자와 멀칭매트의 물성 (Properties of Biodegradable Polymer and Afforestation Seedling Mulching Mat)

  • 김강재;김형진;엄태진
    • 펄프종이기술
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    • 제42권2호
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    • pp.75-81
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    • 2010
  • Characteristics of mixing biodegradable polymers and polymer impregnated paper for mulching mat for seedling were investigated. The mixed film of 70% PLA was most easily biodegradable. The surface of polymer films were changed to more rough due to enzymatic degradation of lipase. Tensile strength and breaking elongation of PLA mixed films were increased to the 0.04-0.31 kN/m and the 0.17-0.96%, respectively. With higher PLA contents, intensities of ester originated carboxyl group(about $1,748cm^{-1}$) were increased. Physical properties of prepared mulching mats were increased with PLA contents and stiffness of mulching mat was not so much changed.

Study on Thermal Treatment of Hybrid Technical Yarns

  • Ishtiaque, S.M.;Das, A.
    • Fibers and Polymers
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    • 제5권1호
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    • pp.25-30
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    • 2004
  • The present paper reports the impact of thermal treatment on the characteristics of core-sheath type hybrid technical yarns. The core-sheath type hybrid yams are prepared using DREF-III technology. Polyester and glass multifilaments are used as core components whereas the cotton and polyester staple fibers are the sheath components wrapped around the core filament with different proportions to form a hybrid structure. The thermal treatment is carried out both in dry and in wet state under relaxed condition and the thermal shrinkage, sheath-slipping resistance and tensile and bending properties of hybrid yarns have been studied. Thermal treatment markedly increases the thermal shrinkage and sheath-slipping resistance of hybrid yarns with polyester multifilament in core, but insignificant effect for yarns with glass multifilament in core. Breaking elongation of hybrid yams with polyester multifilament in core increases with treatment temperature. The hybrid yarns with glass multifilament in core are least affected by thermal treatment.

CLSM을 이용한 어저귀 섬유의 형태학적 특성과 물성 연구(제1보) -인피 및 목질부 섬유를 이용한 한지제조- (Study of Morphology and Physical Properties of Indian Mallow(Abutilon avicennae Gaertner) Fibers by CLSM( I ))

  • 정선화;조남석
    • 펄프종이기술
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    • 제34권2호
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    • pp.61-66
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    • 2002
  • This study was carried out to investigate sheet properties of Indian mallow hanji, made by different pulping methods such as alkali and sulfomethylated pulpings, and different stock compositions, various mixing ratios of bast fiber and woody core fibers. Effect of morphological properties of pulp stocks on the sheet formation and their optical properties were also evaluated using an image analyzer and confocal laser scanning microscope(CLSM). In addition, the effect of fiber distribution index(FDI), which was calculated based on the image in a z-direction of a sheet from CLSM, on the sheet properties of Indian mallow hanji was discussed. The proposed FDI had a good correlation with various properties of paper, such as apparent density, opacity, tear index, breaking length and zero-span tensile strength. Especially, sulfomethylated pulp sheets'FDI was higher than alkali pulp sheets.

A New Fiber Processing Method

  • Seo, Yung-Bum;Lee, Chun-Han
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2006년도 PAN PACIFIC CONFERENCE vol.2
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    • pp.433-440
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    • 2006
  • A fiber processing method, which might be an alternative for conventional refining process, was introduced. The method consists of repetitive, gentle, mechanical impacts on fiber, and ensued fiber uncurling process. This method was very effective for OCC and BCTMP for increasing WRVs (water retention value) while keeping fiber lengths from shortening. For OCC and BCTMP, gentle mechanical impacts on fibers using Hobart mixer increased breaking lengths and tear strengths simultaneously at fast drainage level, and straightening fibers using kady mill increased those strength properties further. For SwBKP and HwBKP, only mechanical impacts using the mixer were effective on increasing tensile and tear strength at fast drainage, but not kady mill treatment. The strength increases of BCTMP by this alternative fiber processing method were exceptionally high. An extensive engineering development should be followed to actualize this fiber processing mechanism in an energy-effect way.

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