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Pad dyeing of cellulose acetate nanofibres with disperse dyes

机译:用分散染料对醋酸纤维素纳米纤维进行轧染

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摘要

In addition to a number of applications of nanofibres in technical fields such as medical, filtration and biosensing, nanofibres are recently being widely explored in terms of apparel use. Past work has focused on the functional properties of nanofibres for apparel use. Coloured nanofibres were produced to investigate their aesthetic properties for the potential application to apparel. Webs of cellulose acetate nanofibre were electrospun and dyed with a high energy level Cl Disperse Red 167:1 dye and a low energy level Cl Disperse Blue 56 dye using the continuous pad-dry-bake method. Results revealed that the high energy level dye produced better colour yield than the lower energy level dye. The dyed cellulose acetate nanofibres produced acceptable colorimetric values, colour yield and colour fastness. Young's modulus of dyed nanofibres increased by threefold in comparison to the undyed cellulose acetate nanofibres. Scanning electron microscopy images showed good morphology with the smooth surface of the dyed cellulose acetate nanofibres.
机译:除了纳米纤维在医疗,过滤和生物传感等技术领域的大量应用外,最近在服装用途方面也正在广泛探索纳米纤维。过去的工作集中在用于服装的纳米纤维的功能特性上。生产有色纳米纤维以研究其美学特性,以潜在地应用于服装。将醋酸纤维素纳米纤维网进行静电纺丝,并使用连续浸轧-烘干法用高能级Cl Disperse Red 167:1染料和低能级Cl Disperse Blue 56染料进行染色。结果表明,高能级染料比低能级染料产生更好的颜色产量。染色的醋酸纤维素纳米纤维产生可接受的比色值,色产率和色牢度。与未染色的乙酸纤维素纳米纤维相比,染色的纳米纤维的杨氏模量增加了三倍。扫描电子显微镜图像显示出良好的形态,其染色的醋酸纤维素纳米纤维表面光滑。

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  • 来源
    《Coloration Technology》 |2013年第2期|159-163|共5页
  • 作者单位

    Nano Fusion Technology Research Group, Faculty of Textile Science and Technology, Shinshu University, Ueda, Nagano 386-8567, Japan,Department of Textile Engineering, Mehran University of Engineering and Technology Jamshoro, Sindh 76062, Pakistan;

    Department of Textile Engineering, Mehran University of Engineering and Technology Jamshoro, Sindh 76062, Pakistan;

    Department of Textile Engineering, Mehran University of Engineering and Technology Jamshoro, Sindh 76062, Pakistan;

    Department of Textile Engineering, Mehran University of Engineering and Technology Jamshoro, Sindh 76062, Pakistan;

    Department of Organic Materials (ε) Fiber Engineering, Chonbuk National University, Jeonju-si, Republic of Korea;

    Nano Fusion Technology Research Group, Faculty of Textile Science and Technology, Shinshu University, Ueda, Nagano 386-8567, Japan;

    Nano Fusion Technology Research Group, Faculty of Textile Science and Technology, Shinshu University, Ueda, Nagano 386-8567, Japan;

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