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Optimized Stearns-Noechel Model to Predict Mixed Color Values of Yarn-Dyed Fabrics

机译:优化的Stearns-Noechel模型可预测色织面料的混色值

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摘要

In the textile industry, an innovative approach to achieving a special color is to use only a few colored yarns to gain various fabric color effects. This technology is highly environmentally friendly and can greatly reduce wastewater pollution caused by fabric dyes. In practice, however, matching the color of a woven fabric with the targeted or desired color by interweaving colored yarns experimentally has been difficult. Base on the optical color mixing theory and previous research on pre-colored fiber blending, this paper proposes a new model with an adjustable parameter M to predict the mixed color of yarn-dyed fabric made of dope-dyed polyester filaments. Experiments were carried out on 96 fabric samples that were a single color in the warp direction and different colors in the weft direction. A best-fit algorithm was used to determine that the optimum value of M for the Stearns-Noechel (S-N) color prediction model was 0.021. Differences in the values of the predicted and actual colors as determined with a spectrophotometer were calculated for three models : K/S, log (K/S), and S-N. The predictions of these models showed that the average color differences of the optimized S-N model were lower than those of the other two fixed-formula models. In addition, the optimized S-N model has different prediction accuracy in different range of wavelengths.
机译:在纺织工业中,一种实现特殊颜色的创新方法是仅使用少量彩色纱线来获得各种织物颜色效果。该技术是高度环保的,可以大大减少织物染料引起的废水污染。然而,在实践中,通过实验交织有色纱线来使织造织物的颜色与目标或期望的颜色相匹配是困难的。基于光学混色理论和对原色纤维混纺的先前研究,本文提出了一种具有可调参数M的新模型,以预测由涤纶染色长丝制成的色织织物的混色。对96个织物样品进行了实验,这些样品在经向为单一颜色,在纬向为不同颜色。使用最佳拟合算法来确定Stearns-Noechel(S-N)颜色预测模型的M的最佳值为0.021。用分光光度计确定的三种模型的预测颜色和实际颜色值的差异:K / S,log(K / S)和S-N。这些模型的预测表明,优化的S-N模型的平均色差低于其他两个固定公式模型的平均色差。另外,优化的S-N模型在不同的波长范围内具有不同的预测精度。

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  • 来源
    《繊維学会誌》 |2014年第9期|218-224|共7页
  • 作者单位

    College of Materials and Textiles, Zhejiang Sci-Tech University, 928 Second Avenue, Xiasha Higher Education Zone, Hangzhou 310018, China;

    College of Materials and Textiles, Zhejiang Sci-Tech University, 928 Second Avenue, Xiasha Higher Education Zone, Hangzhou 310018, China;

    College of Materials and Textiles, Zhejiang Sci-Tech University, 928 Second Avenue, Xiasha Higher Education Zone, Hangzhou 310018, China;

    Zhejiang SANZHI Textiles Co., Ltd., Changxing Economic Development Zone, Huzhou 313109, China;

    Modern Textile Processing Technology National Engineering Research Center, 928 Second Avenue, Xiasha Higher Education Zone, Hangzhou 310018, China;

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