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Patterning technique for expanding color variety of Jacquard fabrics in alignment with shaded weave structures

机译:提花织物与阴影编织结构对齐的图案化技术

摘要

This study aimed to enhance the capability of multiple weave color reproduction for Jacquard textiles. Today, the subtractive color mixing of CMYK color system is being widely used for rendering weave patterns and assorting filling yarn colors. However, as Jacquard color creation involves optical color mixing, the direct application of pigment mixing is limited to corresponding to an artwork that involves red, green, blue and saturated solid black. Since Jacquard colors are realized by opaque and non-blended material of yarns, it requires a different approach of light and pigment mixing to simulate colors of an original image in woven forms. Therefore, in this study, the optimization of weave color reproduction was approached to properly embrace the proposed color gamut of the CMYK model in digital Jacquard textiles. Based on the ink densities of the CMYK color scope, segmentation was applied in reflection of optical thread color mixing to attain optimal weave patterns. A pair of primary color layers was merged by defining a set of rules to classify individual primary and secondary color patterns to designate colored threads in associated regions, and weave structures were designed and aligned to generate varied levels of color shades in weaving form. The correlation between shaded weave structures and the primary color-based weave patterns were matched to present a faithful color reproduction in weaving.
机译:这项研究旨在增强提花纺织品的多种编织颜色再现能力。如今,CMYK色彩系统的减色混色被广泛用于渲染编织图案和填充纬纱颜色。但是,由于提花颜色的创建涉及光学颜色混合,因此颜料混合的直接应用仅限于对应于涉及红色,绿色,蓝色和饱和的纯黑色的艺术品。由于提花颜色是由不透明和非混合的纱线材料实现的,因此它需要一种不同的光和颜料混合方法来模拟编织形式的原始图像的颜色。因此,在本研究中,对织造色彩再现进行了优化,以正确地涵盖数字提花纺织品中CMYK模型的拟议色域。基于CMYK颜色范围的墨水密度,将细分应用于反射光线颜色混合以获得最佳的编织图案。通过定义一组规则对一对原色层进行合并,以对各个原色和副色图案进行分类,以指定关联区域中的有色线,并设计并对齐编织结构以生成编织形式的各种颜色阴影。阴影编织结构与基于原色的编织图案之间的相关性进行了匹配,从而在编织中呈现出忠实的色彩再现。

著录项

  • 作者

    Ng F; Kim KR; Hu J; Zhou J;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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