• Title/Summary/Keyword: black color fabrics

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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.

Fabric Dyeing with Myrobalan(Terminalia chebula Retz.) (미로발란을 이용한 직물염색)

  • Han, Mi-Ran;Lee, Jeong-Sook
    • Fashion & Textile Research Journal
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    • v.11 no.6
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    • pp.953-960
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    • 2009
  • The natural dyeing of fabrics with myrobalan extract was investigated. After dyeing of silk, cotton and rayon with myrobalan extract, the dyeability of myrobalan extract was evaluated with the conditions of concentration, temperature, time, repeat-numbers, pH, mordants variables, the changes of dyeability and surface colors by methods of mordanting and color fastness. The wavelength of maximum absorption of the colored solution from myrobalan extract appeared at 272 nm. Therefore, the substance of myrobalan extract was verified as tannin dyes. The optimum dyeing of fabrics was carried out at 30%(o.w.f) dye concentration. Silk fabrics dyed with myrobalan extract showed the highest K/S value at the temperature of $80^{\circ}C$ when it was dyed for seventy minutes, while cotton and rayon fabrics showed the highest K/S value at the temperature of $90^{\circ}C$ when they were dyed for seventy minutes and thirty minutes, respectively. Dyeing operation was carried out in acidic dyebath of pH 3. The K/S value of silk fabric was higher in pre-mordant stage than in post-mordant, while the K/S values of cotton and rayon fabrics were higher in post-mordant stage. The surface colors of dyed fabrics were different according to used mordants: Al and Cu mordanted fabrics were dyed in yellowish colors, while Fe mordanted fabric was dyed in khaki-black color. Light-fastness of the color fastness was improved in Fe-mordant. Washing-fastness was relatively good, and dry cleaning-fastness of dyed fabrics was excellent.

A Study on the Color Characteristics of Preferred Clothing Textiles of Female College Students - A Comparison of Blouses and Shirts -

  • Kim, Hee-Sook;Na, Mi-Hee;Cho, Shin-Hyun
    • International Journal of Human Ecology
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    • v.7 no.2
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    • pp.43-52
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    • 2006
  • This study analyzed and compared the color characteristics of preferred textiles for blouses and shirts of college students. After the survey of preference in fabrics for blouses and shirts of college students according to season, colors of preferred fabrics were analyzed. Spectral data were measured and a chromaticity diagram was drawn. The color of shirt fabric that college students preferred in the spring/fall was PB (Purple-Blue) and light shades, and in summer, PB color and pale shades. Generally achromatic black or a simple color that is close to an achromatic color, light and soft shades were preferred. For blouse fabric, PB, d (dull) and g (grayish) tones were preferred in spring/fall, G (Green) and It., d. were preferred in summer. Achromatic white and medium, soft shaded chromatic especially greenish colors were preferred. In spring fall, regardless of the clothing item, PB was the most preferred color. Y (Yellow) was the most preferred color for shirts, and for blouses, R (Red) was the most preferred. For achromatic color, black is preferred for shirts, white is preferred for blouses. In summer, the color of preferred shirt fabric was PB, and blouse fabric had a lot of G color. College students prefer simple colors which are close to achromatic colors, and light and soft color were preferred for shirt fabric and they preferred various, medium shaded and closer to pure colors for blouses because college students tend to consider the aesthetic side as important and usually wear blouses less often than shirts.

Increase in Color Depth of Polyester Fiber by Alkali Treatment and Analysis of the Surface Structure (알칼리 감량에 의한 폴리에스테르 섬유의 심색화와 표면구조분석)

  • 김태경;임용진;석정달;조광호
    • Textile Coloration and Finishing
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    • v.11 no.5
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    • pp.22-29
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    • 1999
  • The increase in color depth of polyester fiber dyed with black disperse dyes was investigated with respect to the kinds of resins and alkali treatment. The color depth of the dyed polyester fiber increased continuously according to the concentration of resins coated onto the fabrics. The alkali treatment to polyester fiber before dyeing also enhanced the color depth. It was thought that the polyester fiber was hydrolyzed by alkali resulting micropores on the sample. And the following treatment with a resin, Jet Black T-101, to the polyester fiber increased the color depth much higher. The successive process of alkali treatment, dyeing and Jet Black T-101 treatment could give the best color depth to polyester fiber. Although the alkali treatment reduced the tensile strength of polyester fiber, the color depth of polyester fiber enhanced sufficiently within the range of practically acceptable weight loss and strength. To analyze the micropore on the polyester fiber formed by alkali treatment, nitrogen porosimeter was used. As the weight loss of polyester fiber treated with alkali increased, the BET(Brunauer-Emmett-Teller) surface area, total pore volume, and average pore size of the sample increased.

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Effect of Chitosan and Mordant Treatments on the Color Change of Cotton and Nylon Fabrics Dyed using Rhusjara ica (면과 나일론 직물의 오배자 염색 시 Chitosan 처리와 매염이 색상에 미치는 영향)

  • Hong Shin-Jee;Jeon Dong-Won;Kim Jong-Jun;Choi In-Ryu
    • The Research Journal of the Costume Culture
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    • v.13 no.3 s.56
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    • pp.380-390
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    • 2005
  • The effect of high purity chitosan was studied on its application to the natural dyeing using Rhusjara ica. In the dyeing experiment, examinations were introduced on the difference between the chitosan treated fabrics and chitosan untreated fabrics, and on the difference according to the type of mordanting agents and the mordanting methods. Dyeing was carried out for the chitosan treated and untreated fabrics under the conditions of non-mordanting and Al, Sn, Fe mordanting. As a result, we found that, in the case of cotton, chitosan untreated fabrics were not dyed enough, and the dyeing effect was not developed even though the mordanting was introduced. However, the chitosan treated fabrics developed excellent dyeing result even in the non-mordanting case. Through the results of cotton fabric dyeing, it was presumed that the dyeing affinity of the chitosan toward the Rhusjara ica, which prefer specific dyestuff (mainly black color), is selectively high. In the case of nylon, the dyeing effect is not developed easily under all conditions regardless of the chitosan treatment or the mordant treatment. It was inferred that a certain portion of the Rhusjara ica dyestuff made direct bonding with the functional elements in the nylon molecules without the help of the mordant. Through the results of nylon fabrics, it was presumed that some functional elements of the nylon molecules had selective affinity toward the specific colorant (mainly yellow color) of the Rhusjara ica.

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Characteristics of Artificially Soiled Fabrics Containing Ferric Oxinate as a Tracer (Ferric Oxinate를 標職物質로 사용한 人工汚染布의 洗滌特性)

  • Ahn, Kyung Cho;Kim, Sung Reon
    • Textile Coloration and Finishing
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    • v.8 no.1
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    • pp.83-89
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    • 1996
  • Carbon black has been used as a particulate soil to prepare artificial soiled fabrics for detergent study but it has two major defects. The one is the difficulty of quantitative analysis of carbon black for evaluate the detergency, the other is that there is no reliable correlation between the removal of carbon black and oily soil which is the major component of natural soil. In this study ferric oxinate was used as a particulate soil since it is in black color and can be soiled on fabric by suspension in water or by solution in chloroform and it is easily analysed quantitatively by extracting it from soiled fabric with chloroform to get correct value of soil removal. The characteristics of soil removal of ferric oxinate were compared with that of carbon black and Sudan black, an oil soluble dye, which had been proved that it's detergency correlated with that of oily soil The soil removal of ferric oxinate and Sudan black estimated from quantitative analysis and from K/S value were in good agreement whereas the result calculated by simple reflectance was consistently low. The soil removal of ferric oxinate was exceeded from that of carbon black without regard to surfactants, Triton and Las, but the effect of washing conditions such as temperature and washing time on soil removal of both soils with different suffactants showed no considerable difference. Though the soil removal of Sudan black was little effected by the conditions, the soil removal in Triton exceeded considerably that of in Las, which is the characteristic of oily soil. Thus the soil removal of Sudan black was in good agreement with ferric oxinate in Triton, a non-ionic surfactant, and with carbon black in Las, an artionic surfactant. We concluded that ferric oxinate is a more realistic model particulate soil for artificial soiled cotton fabric washed with non-ionic surfactant than carbon black.

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A Study on the Scouring Effect and Dye-ability of Cotton Scoured and Dyed in A Single-bath (일욕 정련 염색에 따른 정련성 및 염색성 연구)

  • Kim, Ju-Hea;Kwan, Mi-Yeon;Choe, Eun-Kyung;Lee, Suk-Young
    • Textile Coloration and Finishing
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    • v.19 no.3
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    • pp.1-5
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    • 2007
  • The advantage of enzyme scouring over alkali scouring is that the enzymatic process can be carried in a neutral pH, resulting in less damage on the fibers and a drastic reduction of wastewater. Since the pH of scouring bath is neutral, dyeing can be carried in the same bath. Four different types of scouring and dyeing in a single-bath were performed in this work: continuous scouring and dyeing in one-bath I and II, simultaneous scouring and dyeing in one-bath I and II. The difference between process I and II is the existence of an after-treatment process in the scouring. Dyeing was performed with three major colors(red, blue, yellow) and black to investigate the dye-ability. The absorbency of scoured and dyed fabrics was measured using gravimetric absorbency testing system. The fabric weight loss was measured after the treatment. Although the color depth for the three major colored fabrics treated in a single-bath was lower than the fabric scoured and dyed separately, the fabrics dyed with black did not show much difference. In addition, the absorbency of fabric treated in a single-bath was higher than the fabric treated separately.

Natural dyeing with aqueous Extracts of Black bean seed coat (검정팥 종피 추출물에 의한 천연염색)

  • Cha, Hae-Suk;Jung, Yang-Sook;Bae, Do-Gyu
    • Current Research on Agriculture and Life Sciences
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    • v.30 no.2
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    • pp.76-81
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    • 2012
  • In this study the natural colorant was extracted from black bean seed coat in aqueous solution and used to dye silk and cotton fabrics. To obtain the optimal dyeing conditions it was examined at various dyeing condition (temperature, pH, time and liquor ratio). The dyeing behavior and the depths of shade which were evaluated in terms of K/S and CIELAB color difference values of the dyed and mordanted fabrics were also investigated. The dyeing fastness evaluated standard light and wash fastness tests. The obtained results were as follows ; The most K/S value of silk and cotton fabrics were obtained when the pH was 4.0 and 4.8, respectively and it increased slightly with dyeing time passes when the dyeing temperatures were at $40^{\circ}C$ and $60^{\circ}C$ but, it increased at $80^{\circ}C$. The color of silk fabrics changed from yellowish red to yellow at only Fe mordanting among various mordanting. Sn and Ti mordanting of silk fabric and only Ni mordanting of cotton fabric increased the $L^*$ values, but the others decreased. The light fastness of silk fabrics showed 4-6 grade without mordant, 4-5 grade with Al, 3-4 grade with Cu and Sn, and 2-3 grade with Fe as mordant, and that of cotton fabrics showed 1-2 grade without mordant, 2-3 grade with Fe, 2 grade with Cu, 1-2 grade with Al and Sn as mordants. All mordanting coluld not improve the light fastness of fabrics. Washing fastness(fade) of silk fabrics showed 2 grade without mordants and 2-3 grade with mordants and those of cotton fabrics showed 4 grade with Cu, 3 grade without mordant and with Al, Sn and Fe. All of the washing fastness(stain) of both fabrics showed 4-5 grade.

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The color characteristics of preferred clothing textiles of college students in spring and fall - A comparison of clothing textiles for top and bottom - (대학생의 춘추용 의복품목별 선호소재의 색 특성 연구 - 상의와 하의용 의복소재의 비교 -)

  • Kim, Hee-Sook
    • Journal of the Korean Home Economics Association
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    • v.44 no.10
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    • pp.47-55
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    • 2006
  • The purpose of this study was to analyze and compare the color characteristics of preferred clothing textiles of college students. One hundred nine male and female college students were evaluated for their preference to clothing textiles in previous research. To analyze the color characteristics, spectral data were measured. Color, color tone, and values of $L^*,\;a^*,\;b^*$ according to clothing item were compared. In addition, chromaticity diagram was drawn. The results of this study were as following. 1. The color of the shirts textile that college student preferred most in spring/fall was PB(purple blue) color, lt(light) tone. In general, the preferred textiles for shirts represented a simple color that is close to achromatic color with light and soft shade. The color of the blouse textiles that college student preferred most was PB color, d(dull), g(grayish) and W(white) tone. 2. The most frequently shown color of upper garment was PB, followed by Y(yellow) for shirt and R(red) for blouses. College students prefer a simple color which is close to achromatic color, and a light and soft color was preferred for shirts fabric and they preferred various, medium shades, but closer to pure colors for blouses because college students tend to consider that the aesthetic side is important and usually wear blouses less often than shirts. 3. For slacks, the colors of the preferred textiles were B(blue), PB color and lt.g.(light grayish), g, d and bk(black) tone. Therefore, the preferred textiles for slacks represented simple colors such as bluish or close to achromatic color with light or dark shade. For skirt, YR(yellow red), PB color and lt.g, lt, d. tone were preferred. Therefore, soft light or moderately toned various colors that are close to pure color were especially preferred for skirts. 4. The colors of preferred fabrics for slacks and skirts differed. The colors of the preferred fabrics for slacks were mostly cold color, whereas those of skirts were mostly warm color. And college students preferred various, medium shaded and closer to pure colors for skirts because they tend to consider the aesthetic side as being important. 5. The pattern of preferred fabrics was mostly solid, regardless of clothing item, and melange was the second most preferred pattern. 6. Through the analysis of $L^*,\;a^*,\;b^*$ values, shirt and blouse textiles showed higher $L^*$ value than that of slacks and skirt. The preferred textiles of college students were generally close to achromatic color because the values of $a^*$, and $b^*$ were very low, as confirmed by the result of the chromaticity diagram.