• Title/Summary/Keyword: Black-dyed PET

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Colour Change of Black-dyed PET Fabrics by Sputter Coloration and Their Physical Properties (Sputter 착색에 의한 Black-dyed PET 직물의 색상 및 물성변화)

  • Koo, Kang;Won, Eun-Hee;Park, Young-Mi
    • Textile Coloration and Finishing
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    • v.18 no.4
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    • pp.11-19
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    • 2006
  • Black-dyed PET fabrics were sputtered with stainless steel through DC-magnetron type device to investigate the possibility of coloration effect, and then considered the morphological structure and physical characteristics such as water permeation ability and washing fastness. Change in color was estimated on the basis of CIELAB color system. The color coordination of metal plated PET was shifted to yellow-red from red-blue. Colour difference$({\Delta}E^*)$ was increased by sputtering conditions with increasing ion current and treatment time. Especially, $Lightness(L^*)$ value of PET was remarkably increased by sputtering, whereas $Chroma(C^*)$ increased gradually. From SEM analysis, rough and uneven craters were found and thickened on the fiber surfaces with longer sputtering time. And washing fastness was a little poor and absorption ability slightly decreased. There were little changes of breaking load and breaking extension. It was evident that observed uneven craters in the plated thin layer resulted in the colour change of PET fabrics by sputtering treatments.

PET Dyeing in Black Shade with Disperse Dyes of Three Primary Color

  • Kim, Hae-Rim;Lee, Jung-Jin
    • Textile Coloration and Finishing
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    • v.21 no.5
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    • pp.27-34
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    • 2009
  • PET fabric was dyed in black shade with disperse dyes of three primary color. The effect of combination ratio of dye concentration and energy type of disperse dye on dyeing and color property of black dyed PET fabric was investigated. Dyeing compatibility of disperse dyes of three primary color on PET was evaluated by comparison of dyeing rates of them. From the results, color property was dependent upon the combination ratio of dye concentration. In order to obtain low lightness ($L^*$) and black color, blue dye should be added enough. S-type disperse dye and $130^{\circ}C$ dyeing was suitable rather than SE-type dyes or $120^{\circ}C$ dyeing. Disperse dyes of three primary color used showed good dyeing compatibility at high dye concentration. Washfastness was fair to moderate and lightfastness was moderate.

The Effect of Combination Ratio of Dye Concentration on Black Dyeing Property of PET Fabric (분산염료의 농도조합이 PET 섬유의 Black 염색성에 미치는 영향)

  • Lee, Jeong-Jin;Kim, Hye-Rim;Jang, Hye-Gyeong
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2008.10a
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    • pp.13-14
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    • 2008
  • In black dyeing of PET fabric, high concentrations of disperse dyes of three primary color are generally used, which leads low exhaustion level of dye and discharge of a large amount of unfixed dye into dyehouse effluent. In this study, the effect of combination ratio of dye concentration, liquor ratio, and dyeing pH on dyeing and color property of black dyed PET fabric was investigated.

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Increase in Color Depth of Black Dyed PET Fabrics Treated by Sputter Etching (Sputter etching에 의한 PET직물의 심색성 향상)

  • Shim, Yu Bong;Lee, Mun Cheul
    • Textile Coloration and Finishing
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    • v.9 no.1
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    • pp.15-22
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    • 1997
  • The alkali treated and black dyed PET fabrics were sputter etched under Ar gas atmosphere. The color depth of PET fabrics were increased with sputter etching time only under some limits of discharge power. And above that limits of discharge power the color depth of PET fabrics was decreased by increasing discharge power and treatment time. Minute cracks were made by sputter etching in the whole surface of fabrics to the direction of perpendicular to the longitudinal side of yarns. The fineness and density of minute crack were increased with lowering discharge power. And the size of crack was far smaller than that of microcrater which was obtained by alkali treatment. It is considered that the increase of color depth is related to the minute crack. The water permeation time of sputter etched fabrics was increased with increasing discharge power and treating time. The increase of color depth attained by sputter etching was fully kept through repeated laundering.

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Synthesis and Application of Color Depth Black Disperse Dyes for PET Fabric (PET 직물용 심색성 분산염료의 합성과 Black 염색)

  • Kim, Hye-Jin;Kim, Jae-Ho;Kim, Dong-Uk;Hong, Seung-Pyo;Kim, Sang-Jin;Kim, Hee-Dong;Kim, Hyun-Ah;Huh, Man-Woo
    • Textile Coloration and Finishing
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    • v.26 no.4
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    • pp.290-296
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    • 2014
  • In order to produce black disperse dye which has high heat resistance and depth color for polyester(PET), an orange disperse dye was designed and synthesized with pyridine based derivatives to get high heat resistance. Disperse blue dye adopts heterocycles structure for high molar extinction coefficient and long wavelength absorption. Synthesized disperse dye is micronized to an particle size of $0.7{\mu}m$. The mixing condition for black color using commercial disperse violet 93 is blue dye 30%, red dye 21%, and orange dye 21%, respectively. Dyed PET fabric with synthesized dye has quiet good color fastness to sublimation(grade 3-4) and has excellent rubbing, washing and light fastness grade 4-5.

Increase in Color Depth of Polyester Fabric by Resin Treatment (수지처리에 의한 PET직물의 심색화)

  • Kim, Jae-Ho;Kim, Hye-Jin;Kim, Dong-Uk;Hong, Seung-Pyo;Kim, Sang-Jin;Kim, Hee-Dong;Kim, Hyun-Ah;Huh, Man-Woo
    • Textile Coloration and Finishing
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    • v.26 no.3
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    • pp.187-194
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    • 2014
  • To improve the deep coloring effect of PET fabrics, the alkali treated and black dyed PET fabrics were treated with 2 kinds of low refractive compounds such as acrylic resin and silicone resin. The color depth effect of treated PET fabrics was evaluated as lightness(L) change by UV-visible spectrophotometer. As the weight loss of PET fiber treated with alkali increased, the color depth of PET fabrics increased. Lightness(L) of PET fabrics treated with deep coloring agent was lower than that of untreated PET fabrics. The optimum concentration of treated PET with deep coloring agent was 4% o.w.s. The deep coloring effect of PET fabrics treated with silicone resin was higher than one treated with acrylic resin. PET fabrics treated with silicone resin only might be more appropriate process than PET fabrics treated with acrylic and silicone resin for giving deep coloring effect for polyester fabrics.

The Bathochromic Effect of Polyester Fabric Treated with Low Refractive Compounds (저굴절률 화합물 처리에 의한 PET직물의 심색화)

  • 박민식;장철민;서말용;김삼수;유승춘
    • Textile Coloration and Finishing
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    • v.10 no.5
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    • pp.48-55
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    • 1998
  • Polyester fabric is widely used in textile material though it has some problems such as low colour value, high refractive ratio(1.62) and etc. In order to give Z-black colour of polyester fabric, this study has selected several disperse dyes by measuring of absorbance, dyed in their optimum conditions and treated with 4 kinds of low refractive compounds such as silicone, fluorine, urethane and silicone-fluorine mixed compounds. The bathochromic effect of treated PET fabric evaluated as lightness(L) change by uv-visible spectrophotometer. This study also investigated that the effect of used bathochromic agents on the washing and lightfastness of treated PET fabric.

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Bathochromic Finish of Dyed Fabrics by Low-Temperature Plasma and Sputter Etching Treatment (저온 플라즈마 및 Sputter Etching 처리에 의한 염색직물의 심색화 가공)

  • Pak, Pyong Ki;Lee, Mun Cheul;Park, Geon Yong
    • Textile Coloration and Finishing
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    • v.8 no.2
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    • pp.56-63
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    • 1996
  • Low-temperature plasma treatment or sputter etching is of interest as one of the techniques to modify polymer surface. In this study, poly(ethylene terephthalate)(PET), nylon 6 and cotton fabrics dyed three black dyes were subjected to low-temperature argon plasma and also sputter etching. In relation to bathochromic effect, the surface characteristics of the treated fabrics and films were investigated by means of critical surface tension, SEM and ESCA measurement. The depth of shade of fabrics more increased by the sputter etching technique than argon plasma treatment. Many microcraters on the fiber surface formed by the sputter etching resulted in increase of surface area of the fiber and wettability, but the hydrophobic group was increased by the results of ESCA analysis. In particular the change in reflective index of the fibers was much more effective than the chemical composition of the fiber surface on increasing of the depth of shade.

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Weight Reduction and Dyeing Characteristics of Sea-Island Type Ultramicrofiber PET Tricot Fabric with Black Color (해도형 PET 극세사 트리코트 편성물의 감량 가공 및 블랙 색상의 염색성 평가)

  • Kang, Jeong Min;Kim, Min Gu;Lee, Ji Eun;Ko, Jae Wang;Kim, Il Jin;Lee, Jae Yeon;Lee, Dong Jin;Ko, Seong Ik;Jung, Dae Ho;Lee, Seung Geol
    • Textile Coloration and Finishing
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    • v.32 no.1
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    • pp.9-18
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    • 2020
  • In this study, we conducted alkali hydrolysis on sea-island type PET ultramicrofiber tricot fabric and dyeing according to the various conditions with black disperse dye. Herein, we evaluated the weight loss rate and tensile strength according to the NaOH contents. The optimal alkali hydrolysis treatment conditions were set to 25 %omf NaOH with a treatment time of 60 min at 110 ℃, and average weight loss rate of the PET ultramicrofiber tricot fabric is about 23 %. The dyeing conditions were investigated with different dyeing temperatures(95-135 ℃), dyeing time(20-60 min), dye contents(2-10 %omf), dispersant contents(1-9 g/ℓ), pH buffer solution contents(1-9 g/ℓ), UV-absorbent contents(5-25 %omf) and reduction cleaning process conditions for black color. We obtained the optimum conditions of the dyeing with the dye contents of 8 %omf, the dispersant contents of 1 g/ℓ, the pH buffer solution contents of 1 g/ℓ, the UV-absorbent contents of 10 %omf, the dyeing temperature of 135 ℃ and the dyeing time of 40 min. The light colorfastness of dyed ultramicrofiber PET tricot fabric was good to excellent in the range of 4 to 5.

Alkaline Dyeing and Color Fastness of Polyester Fiber (폴리에스테르 섬유의 알칼리 염색과 견뢰도)

  • 정동석;오준석;이문철
    • Textile Coloration and Finishing
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    • v.12 no.4
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    • pp.248-255
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    • 2000
  • Polyester fibers and fabrics have been dyed with disperse dyes in alkaline dyebath such as alkaline buffer and alkaline auxiliary(JPH-95) comparing a traditional acidic dyeing. After dyeing the samples were extracted with 100% DMF, and washing and rubbing fastnesses were measured. In dyeing at $100^\circ{C}$ the dyeing rate increased with decreasing fiber denier, regardless of dye baths, whereas the dyeing rates of the same denier fiber increased in the order of alkaline dyeing>acidic dyeing>JPH-95 dyeing. In dyeing at $130^\circ{C}$ the dyeing rate of PET fiber in JPH-95 dye bath decreased compared with the other two types of dye baths. In the time and temperature curve the dye uptake of JPH-95 dyeing was higher than the other two types of dye baths in the range of low temperature$(95~115^\circ{C})$. The equilibrium dye uptake increased in the order of 0.52d>2.04d>0.05d fiber. Washing fastness had no change in all three types of dye baths. But rubbing fastness was not good for alkaline dyeing except black dyes.

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