• Title/Summary/Keyword: Poly-disperse

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The Dyeing Properties of Poly(trimethylene terephthalate) by Disperse Dyes with Different Energy Level (Energy Level이 다른 분산염료를 이용한 Poly(trimethylene terephthalate)섬유의 염색성)

  • 백지연;김정렬;이난형;윤태희;김삼수
    • Textile Coloration and Finishing
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    • v.15 no.5
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    • pp.316-320
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    • 2003
  • In order to investigate the dyeing property of poly trimethylene terephthalate(PTT) fabric, the dyeing of PTT fabric was carried at under condition of different dyeing temperature by using several disperse dyes with different energy level. Particularly, this study discussed the PTT dyeing thermodynamically. Used disperse dyes were selected based on the their chemical structure and energy level. The obtained results were as followings; The dye adsorption of S type disperse dye such as C. I. Disperse Blue 79 increased with increasing dyeing temperature. In a exhaustion rate of PTT fabric with disperse dyes, C. I. Disperse Blue 56 showed higher values than that of C. I. Disperse Orange 29 and Blue 79. For the interpretation of thermodynamic dyeing behavior, the partition coefficient ( K ) and some several thermodynamic parameters such as standard affinity$(-\mu^\circ)$ and heat of dyeing$(\Delta{H}^\circ)$ calculated from the adsorption isotherm. From above results, as the energy level of disperse dye is small, the partition coefficient and standard affinity increased. But the heat of dyeing of PTT fabric with disperse dye showed high negative value in order of E type(C. I. Disperse Blue 56), SE type(C. I. Disperse Orange 29) and S type(C. I. Disperse 79).

Sorption Equilibria of C. I. Disperse Yellow 54 Dye between Supercritical Carbon Dioxide and PTT and PET Textiles (초임계이산화탄소와 PTT및 PET섬유 사이에서 C. I. Disperse Yellow 54 염료의 수착평형)

  • Ihm, Bang-Hyun;Choi, Jun-Hyuck;Shim, Jae-Jin
    • Clean Technology
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    • v.13 no.3
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    • pp.173-179
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    • 2007
  • In this study the amount of equilibrium sorption of C.I. Disperse Yellow 54 dye in the polymeric textiles such as PTT (poly(trimethylene terephthalate)) and PET (poly(ethylene terephthalate)) textiles was measured in the presence of supercritical carbon dioxide at different temperatures, pressures, and time. The amount of dye sorption increased with temperature and pressure in both PTT and PET textiles, but the increasing rate decreased with pressure. The PTT textile has much larger dye sorption than PET textile. The increasing rate of dye sorption decreased with time at same temperature and pressure for both PTT and PET textiles.

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Dyeing Properties of 4-Amino-4′-fluorosulfonylazobenzene Disperse Dyes on Poly(ethylene terephthalate)

  • Koh, Joonseok;Cho, Dae Hwan
    • Fibers and Polymers
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    • v.5 no.2
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    • pp.134-138
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    • 2004
  • Dyeing properties of a series of 4-amino-4'-fluorosulfonylazobenzene disperse dyes on poly(ethylene terephthalate) (PET) were investigated. Build-up properties and color properties on PET were examined. In particular, the 4-aminoazobenzene dyes containing a nitro group instead of a fluorosulfonyl group at 4'-position were also synthesized in order to compare their dyeing properties on PET with that of 4'-fluorosulfonyl analogues.

Coloration of Poly(lactic acid) with Disperse Dyes. 1. Comparison to Poly(ethylene terephthalate) of Dyeability, Shade and Fastness

  • Choi Jae-Hong;Seo Woon-Young
    • Fibers and Polymers
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    • v.7 no.3
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    • pp.270-275
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    • 2006
  • The dyeability of poly(lactic acid) [PLA] with a range of commercial disperse dye was examined and compared to that of poly(ethylene terephthalate) [PET] in addition to the colour and fastness of the resultant dyeings. A screening exercise in which twenty dyes of differing energy types and chemical classes were applied to PLA revealed a substantial variation between the dyes in terms of dye uptake (12-88 % at 4 % o.w.f.). Nine dyes exhausted above 70 % and were selected for further study, which involved comparison of shade and fastness of PLA dyeings with those of the corresponding PET dyeings. Differences in shade depended on hue while wet fastness of each of the PLA dyeings was either the same or 0.5-1.0 point lower than its PET counterpart. In all but one case, dye photostability in PLA was found to be very similar to that in PET. Dye build-up profiles on PLA were also investigated and from these results mixtures of compatible dyes identified.

Diffusion rate of C. I. Disperse Yellow 54 Dye in PTT and PET Textiles in the Presence of Supercritical Carbon Dioxide (초임계이산화탄소에 의한 PTT와 PET섬유 내에서의 C. I. Disperse Yellow 54염료의 확산속도)

  • Ihm, Bang-Hyun;Choi, Jun-Hyuck;Shim, Jae-Jin
    • Clean Technology
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    • v.13 no.4
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    • pp.244-250
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    • 2007
  • Sorption of C. I. Disperse Yellow 54 dye in poly(trimethylene terephthalate) (PTT) and poly (ethylene terephthalate) (PET) textile fibers were measured at various pressures, temperatures, and times in the presence of supercritical carbon dioxide and thereby the diffusivities of the dye in the fibers were calculated. The diffusivity of dye in the polymeric fibers was very low, only in the order of $10^{-12}\;cm^2/sec$, but increased with increasing temperature at constant pressure and with increasing pressure at constant temperature. The diffusivity in PTT fibers were about 1.5 to 3 times as large as that in PET fibers. As the fiber was very thin, the dye distribution in the fiber was almost uniform everywhere inside the fiber.

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The Carrier Mechanism in the Disperse Dyeing of Poly(ethylene terephthalate) (폴리에스테르 섬유의 분산염색에 있어서 캐리어의 작용기구)

  • 이일건;윤남식;임용진
    • Textile Coloration and Finishing
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    • v.2 no.4
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    • pp.231-236
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    • 1990
  • The diffusion coefficient of C.I. Disperse Red 4 in the dyeing of carrier-pretreated poly (ethylene terephthalate) film was Investigated by Sekido's film-rolled method. From the result it was shown that the diffusion coefficient increases exponentially with the content-ration of carrier in the film, and, for the films containing same concentration of carrier, the carrier effect was enhanced with the molar volume of the carriers. The greater carrier effect was accompanied by the decrease in diffusion activation energy and entropy, which shows that the carrier with larger molar volume plasticizes PET film to more extent.

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The Interpretation of Dyeing Behavior of Poly(trimethylene terephthalate) Fiber with a Disperse Dye (분산염료에 의한 Poly(trimethylene terephthalate) 섬유의 염색거동의 해석)

  • 윤석한;김태경;임용진;조규민
    • Textile Coloration and Finishing
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    • v.13 no.4
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    • pp.249-255
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    • 2001
  • To interpret the dyeing behavior of PTT fiber with C. I. Disperse Violet 1, the thermodynamic Parameters of dyeing, such as standard affinity, heat of dyeing(enthalpy change), entropy change, diffusion coefficient, and activation energy of diffusion, were obtained from isotherms and dyeing rates at various temperatures and compared with those of PET fiber. The heat of dyeing(enthalpy change) and the entropy change of PTT fiber showed smaller negative values than those of PET fiber. This means that the dye molecules in the PTT fiber are combined more loosely than in the PET fiber and that is due to the flexibility of polymer chains of PTT fiber. The diffusion coefficients of C. I. Disperse Violet 1 into the PTT fiber were larger than those for PET fiber, and the activation energy of diffusion on PTT fiber was smaller than that on PET fiber.

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Preparation and Application of Functional Microsphere (II) Formation and Characteristics of Poly(ethylene-co-vinylacetate) Microsphere with Disperse Dye (기능성 마이크로스피어의 제조와 응용(II) 분산염료를 함유한 에틸렌-비닐아세테이트 중합체의 마이크로스피어 제조와 특성)

  • Lee, Shin-Hee;Cho, Hyun;Park, Soo-Min
    • Fashion & Textile Research Journal
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    • v.10 no.3
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    • pp.371-376
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    • 2008
  • Poly(ethylene-co-vinylacetate) (EVA) microspheres were prepared by thermally induced phase separation (TIPS) in toluene. The microsphere formation occurred by the nucleation and growth mechanism in metastable region. The effects of the concentration and component of the polymer and cooling rate on microsphere formation were investigated. The microsphere formation and growth were followed by the cloud point of the optical microscope measurement. The microsphere size distribution, which was obtained by particle size analyzer, became broader when the polymer concentration was higher, the content of vinyl acetate in EVA copolymer was higher, the cooling rate of EVA copolymer solution were lower. The content of disperse dye in EVA microsphere was obtained by TGA thermal analysis, the dye content of EVA15 and EVA18 were 3.5 and 2.0 wt% respectively.

A Study on the Dyeing of PTT(polytrimethylene terephthalate)/Silk Mixture Fabrics with Disperse Dyes/Acid Dyes (분산염료/산성염료에 의한 PTT(polytrimethylene terephthalate)/견 교직물의 염색에 관한 연구)

  • Sung, Woo-Kyung
    • Fashion & Textile Research Journal
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    • v.12 no.1
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    • pp.94-102
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    • 2010
  • The dyeing of poly(trimethylene terephthalate)(PTT)/silk mixture fabrics can be accomplished by a two bath dyeing method with separate application of the disperse dyes on the PTT, reduction cleaning of the stained silk and then dyeing the silk with the acid dyes, or by one bath dyeing method with mixed dye ranges, possibly followed by a cleaning treatment. The two bath dyeing method has the advantage of better results with respect to dry cleaning fastness properties thanks to the possibility of an intermediate reduction clear. On the other hand, as compared with the two bath dyeing method, one bath dyeing method with a mixed dye range permits rapid and more reproducible dyeing, without the risk of great difference with respect to the shade of the strike on both substrates as well as savings of time, energy and water usage. This study was carried out to investigate dyeing characteristics of PTT/silk mixture fabrics with disperse dyes/acid dyes by one bath dyeing method in comparison with two bath dyeing method in the interests for rationalization of the dyeing process.

The Dyeing Behavior of PET Bulky Yarn with Disperse Dyes (분산염료에 의한 폴리에스터 Bulky Yarn의 염색거동)

  • Lee, Bum Hoon
    • Textile Coloration and Finishing
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    • v.30 no.2
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    • pp.70-76
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    • 2018
  • The dyeing behaviors of poly(ethylene terephthalate)(PET) bulky yarns, DTY(draw textured yarn) and SSY(latent crimped yarn), were investigated with different energy type disperse dyes compared with those of SDY(spin draw yarn). The maximum exhaustions of E-type disperse Red 60, Blue 56 and Yellow 54 on SSY were 99%, 94% and 93%, respectively. The maximum exhaustions of S-type disperse Red 179, Blue 79 and Orange 30 on SSY were 96%, 97% and 97%, respectively. The K/S values of SSY were significantly higher than those of DTY and SDY in all energy type of disperse dyes. The knit fabric composed of SSY became bulky at the end of high temperature dyeing process because of their thermal shrinkage property due to melt viscosity difference.