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Digital Laser-dyeing for Polyester Fabrics

机译:涤纶织物数字激光染色

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Surface polyester fibers modified by laser beam energy have been found to display improved dye uptake (Lau et al. 1997; Kamel et al. 2012; Shahidi et al. 2013). This research considers "laser-dye" patterning as an alternative coloration method within a textile design context. In this study, standardized polyester (PET) knitted jersey and plain, woven fabrics were modified with CO_2 laser technology to engineer dye onto the fabric with high-resolution graphics. The work considered the aesthetic possibilities, production opportunities, and environmental potential of the process compared to traditional and existing surface design techniques. Laser-dyed patterns were generated by a digital dyeing technique involving CAD, laser technology, and dye practices to facilitate textile coloration and patterning. An understanding of energy density was used to define the tone of a dye in terms of color depth in relation to the cloth. In so doing, a system for calibrating levels of color against laser energy in order to build a tonal image was found. Central to the investigation was the consideration of the laser beam spot as a dots-per-inch tool, drawing on the principles used in digital printing processes. It was therefore possible to utilize the beam as an image-making instrument for modifying textile fibers with controlled laser energy. Quantitative analysis of the outcomes alongside creative exploration facilitated both a tacit understanding of, and ability to control, processing parameters. This enabled repeatability of results parallel to design development and has established the potential to apply the technique commercially. Sportswear prototypes produced in the study suggest a suitable market for processing polyester garments in this way.
机译:已发现通过激光束能量改性的表面聚酯纤维表现出改善的染料吸收(Lau等,1997; Kamel等,2012; Shahidi等,2013)。这项研究将“激光染料”图案视为纺织品设计范围内的另一种着色方法。在这项研究中,采用CO_2激光技术对标准聚酯(PET)针织平纹针织面料和平纹机织织物进行了改性,以将染料工程化到具有高分辨率图形的织物上。与传统和现有的表面设计技术相比,这项工作考虑了该工艺的美学可能性,生产机会和环境潜力。激光染色的图案是通过涉及CAD的数字染色技术,激光技术和染色方法生成的,以促进纺织品的着色和图案化。对能量密度的理解被用来根据相对于布料的色深来定义染料的色调。这样做,发现了一种针对激光能量校准色彩水平以建立色调图像的系统。该研究的中心是根据数字印刷过程中使用的原理,将激光束斑视为每英寸点数的工具。因此,可以将光束用作成像仪器,以通过受控的激光能量来改性纺织纤维。对结果的定量分析以及创造性的探索促进了对处理参数的默契理解和控制能力。这使得结果的可重复性与设计开发平行,并建立了将该技术商业化应用的潜力。该研究中生产的运动服原型为以这种方式加工聚酯服装提供了合适的市场。

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