• Title/Summary/Keyword: black color fabrics

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Effect of Characteristics and Texture of Sight and Touch on the Tactile Preferences for the Black Fabrics (블랙 패션 소재의 특성과 시촉각적 질감이 촉감 선호도에 미치는 영향)

  • Kim, Yeo-Won;Choi, Jong-Myoung
    • The Research Journal of the Costume Culture
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    • v.19 no.3
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    • pp.556-564
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    • 2011
  • The purpose of this study was to analyze the effect of the structural properties, the color characteristics and the texture of sight and touch on the tactile preferences for the black fabrics. Male and female university students were asked to evaluate the texture of sight and touch and tactile preference to the nine different black fabrics which were selected on the basis of the previous research results. Data were analyzed by using frequency analysis, mean, factor analysis, t-test, F-test, correlation and regression analysis. The texture of sight and touch for black fabrics was classified into four factors: smoothness, bulkiness, extensibility, firmness. This texture of sight and touch factors showed a significant correlative relationship to the structural properties and color characteristics of the black fabrics. There were significant differences according to black fabrics on the point of texture of sight and touch. The velvet was evaluated the most smooth fabric, while the velvet and fake leather were evaluated the most bulky fabrics. Also, the jersey and lace fabrics were evaluated the most extensible fabrics, while the melton was evaluated as the most firm fabrics. There were significant correlative relationships not only between the structural properties and the texture of sight and touch but also between the color characteristics and the texture for black fabrics. Also, among the structural properties, the color characteristics and the texture of sight and touch of black fabrics, major variable factor of influencing on the tactile preference was turned out to be the texture of sight and touch.

Color Sensibility and Preference of the Black Color Fabrics (블랙컬러 패션소재의 색채감성과 선호도)

  • Kim, Yeo-Won;Choi, Jong-Myoung
    • Science of Emotion and Sensibility
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    • v.13 no.2
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    • pp.337-346
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    • 2010
  • The purposes of this research were to evaluate the color sensibility and preferences, and to analyze the effect of the tactile preferences and purchasing preference on structural properties, color characteristics and color sensibility for the black color fabrics. Male and female university students were asked to evaluate the color sensibility, tactile preference and purchasing preference to the nine different black fabrics which were selected on the basis of the previous research results. Data were analyzed by using frequency analysis, mean, factor analysis, t-test, Kruskal-Wallis test, correlation and regression analysis. The color sensibility for black color fabrics was classified into four factors: simplicity/classic, elegance, modernity and dignity. This color sensibility factors showed a significant correlative relationship to the structural properties and color characteristics of black color fabrics. On the other hand, fabrics which were evaluated with good tactile preference among the black color fabrics tended to show higher purchasing preference. Also, among the color sensibility, the structural properties and color characteristics of black color fabrics, major variable factor of influencing on the tactile preference and the purchasing preference was turned out to be the color sensibility.

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Application of Deep Black Color on Polyester Fabrics by Color Matching (컬러 매칭에 의한 폴리에스테르 직물의 심색효과)

  • Choi, Youn-I;Bae, Kie-Seo;Kim, Yong-Duck;Park, Eun-Hee;Hong, Young-Ki
    • Textile Coloration and Finishing
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    • v.22 no.1
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    • pp.28-36
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    • 2010
  • The deep black coloration of polyester fabrics was obtained by the physical properties of color and color mixing system. In this experiment, we have measured the absorbance and the reflectance of various disperse dyes for accomplishing the lowest lightness value and uniform reflectance, and new matching algorithm and computer color matching was made. The matching used both isomeric and metameric matching. The color matching of deep black color represented low lightness. Though actual reflectance of dyed polyester fabrics using these matching results was as high as theoretical one, low lightness value($L^*$) and uniform appearance were achieved.

Developing Black Color by Natural Dyeing for Contemporary Fashion: Dyeing of Silk Fabrics (현대패션 활용을 위한 천연염색에 의한 검정색 구현(1): 견직물을 중심으로)

  • Yeo, Youngmi;Shin, Younsook
    • Textile Coloration and Finishing
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    • v.29 no.4
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    • pp.276-283
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    • 2017
  • The aim of this study is to develop an effective dyeing process for black color on the silk fabrics, using natural Indigo, Madder, Amur cork tree, Alder, Logwood, and Gallnut. All natural dye materials were water-extracted, concentrated, and freeze-dried. Seven different processes were carried out and the color differences(${\Delta}E$) of black color with each process from the chemical black dyed fabric were compared. The light, washing, and rubbing fastness were evaluated. The black dyeing of the silk fabrics was well carried and excellent black color was obtained in every methods. The profound black color could be obtained by the subtractive mixture of the three primary colors of red, yellow, and blue in the order of indigo(blue) - amur cork tree(yellow) - madder or lac(red). Black color was efficiently obtained by iron mordant when logwood or alder fruit was used. The color difference(${\Delta}E$) from the black color with chemical dyestuff was the lowest in the indigo - amur cork tree - lac - iron method. Light fastness and washing fastness were excellent in all dyeing processes, showing grade 5. The fastness to rubbing was excellent as shown grade 5 in the dry samples of logwood - iron process and alder fruit - iron process.

Colorfastness of Black-Colored Fabrics with Various Fibers

  • Yang, Yoon-Young;Choi, Hae-Woon;Park, Myung-Ja
    • International Journal of Human Ecology
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    • v.9 no.1
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    • pp.17-27
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    • 2008
  • Black garments can lose color, image, and be the main cause of color staining when washed with other laundry that can cause color contamination from interaction with other garments. To know the fiber-based dye fastness for colored garments, 4-5 pieces of various fibers of different fabrics were selected; cotton, linen, wool, silk, rayon, acetate, polyester, and nylon. To determine the colorfastness to washing and crocking, the black fabrics were washed with alkali and neutral detergents under the Laund-O-Meter method under the Crockmeter method. In an alkali detergent laundering conditions, most colored samples did not undergo color or light fastness. However, most of the stained fabrics slightly changed in K/S values while other samples underwent severe changes. With neutral detergent laundering, sample fabrics underwent less shrinking, and had less naps. The stained fabrics also underwent less change in K/S values. With time-repeatedly-washing the original sample went through colorfastness to lose color. In crocking fastness, most samples produced good to excellent results under dry conditions but produced relatively low crocking fastness under wet conditions. Natural fibers especially showed lower crocking fastness than artificial fibers. In conclusion, garments of the same color should be laundered together. The black garments that are washed using neutral detergents can decrease the amount of damage from color change. While it is the responsibility of garment producers to provide appropriate quality indications they should also provide adequate instructions for consumers to understand and appropriately cope with the quality indications in order to contribute to establishing a correct laundering method.

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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Natural Dyeing of Ramie Fabrics with Acer Ginnala, Alnus Japonica and Gromwell Extracts (신나무, 오리나무 및 자초를 이용한 라미직물의 천연염색)

  • Kim, Sangyool
    • Journal of Fashion Business
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    • v.18 no.4
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    • pp.15-27
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    • 2014
  • A natural colorant was extracted from Acer ginnala, Alnus japonica and gromwell as extractants. Studies have been made on the effects of the kind of extracts and dyeing/mordanting conditions on colorimetric changes of ramie fabrics. The color of fabrics tended to become darker as the numbers of dyeing process and mordanting process increased using three kinds of extracts. As the numbers of dyeing and mordanting increased, the ramie fabrics gradually increased to show reddish and bluish signs using Acer ginnala, Alnus japonica, and gromwell extracts(500ml and 1,000ml). In the case of 1,500ml of gromwell extracts, the ramie fabrics showed the color with more redness and yellowness. Color difference (${\Delta}E$) of dyed and mordanted fabrics increased as the numbers of dyeing and mordanting processes increased. The apparent colors of ramie fabrics using Acer ginnala were Y and GY. The Alnus japonica extracts produced Y and GY colors on ramie fabrics. With varying amount of gromwell extracts, the colors of dyed and mordanted fabrics were R, YR, GY, G, PB, P and RP, however, the main color was PB. It was concluded that the extracts of Acer ginnala, Alnus japonica and gromwell can be used as a natural dye producing black colors.

A Study on the Black Color Expression of Silk Fabrics with Juglans mandshurica Cortex Extract (가래 외피 추출액을 이용한 견직물의 흑색 발현 연구)

  • Lee, JeNam;Lee, EunJin
    • Journal of Fashion Business
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    • v.21 no.1
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    • pp.166-176
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    • 2017
  • This study is fundamental research on how to be able to scientifically quantify and reproduce a natural dyeing procedure. By dyeing silk fabrics, the establishment of a reproducible dyeing method was sought. Juglans mandshurica has been known as one of the most widely used black vegetable dyes. Repetition conditions and combination dyeing were performed with Juglans mandshurica cortex, gallnut, clove, and Eclipta prostrata L. extracts to express a deep black color. Juglans mandshurica cortex, gallnut, clove, and Eclipta prostrata L. extracts were suitable for black coloration and showed a darker black color when combined with iron mordant. Specifically, Juglans mandshurica cortex and clove can be used for deep black coloring. Color fastness when washed or dry cleaned was found to be strong with a grade of 4-5 and fastness to light was rated at a 3-4. The grade of color change when exposed to rubbing and perspiration was good at a 4-5. In regards to functional property aspects, it showed excellent results with a 99% deodorization rate at 120 minutes of dyeing time, 97.1% UV protection rate, and 85.9% and 62.3% bacterial reduction against Staphylococcus aureus and Streptococcus pneumoniae, respectively. Therefore, it is considered that the extract from the Juglans mandshurica cortex is of great value as an eco-friendly, natural dyestuff.

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.

Effect of Particle Sizes of Polymer Binders for Pigment Inks on Touch of Fabrics (안료 잉크용 바인더의 입자 크기가 직물의 태에 미치는 영향)

  • Park, Seongmin;Han, Minwoo;Jeong, Euigyung
    • Textile Coloration and Finishing
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    • v.32 no.4
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    • pp.226-231
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    • 2020
  • This study investigated effect of particle sizes of polymer binders for digital textile printing(DTP) pigment inks on touch of fabrics. The polymer binders were synthesized via miniemulsion polymerization of methyl methacrylate(MMA), butyl acrylate(BA), N-ethylolacrylamide(NEA) and methacrylic acid(MAA). The prepared binders were applied to black pigment inks and those black pigment inks were used to dye cotton fabrics. Then, color strength, rubbing fastness, stiffness, surface and bending properties of the dyed fabrics were investigated. Depending on the particle size of the polymer binder used, color strength, friction fastness, stiffness, surface and bending properties change. Generally, the larger the particle size of the polymer binder, the softer properties.