激光技术对涤纶织物颜色影响的研究

IF 1 4区 工程技术 Q3 MATERIALS SCIENCE, TEXTILES International Journal of Clothing Science and Technology Pub Date : 2024-03-29 DOI:10.1108/ijcst-06-2023-0089
Rıza Atav, Özge Çolakoğlu
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引用次数: 0

摘要

目的 本研究旨在确定激光处理对涤纶织物的分散染料吸收和牢度值的影响。此外,本研究还旨在直接通过织物样品的照片来评估颜色,而不是使用分光光度计来测量颜色,这在在线数字颜色评估方面被认为是非常有用的。 设计/方法/方法 本研究中的试验使用了 100%涤纶(150 旦)单面针织物(重量:145 g/m2,道密度:15 圈/cm,布密度:24 圈/cm)。试验研究了染色前后激光处理对颜色的影响。在染色前,以不同的分辨率(20、25 和 30 dpi)和像素时间(60、80 和 100 微秒)对织物进行激光处理。激光束的功率为 210 W,波长为 10.6 µm。为了确定激光处理对涤纶的影响,对未处理和处理过的织物样品进行了傅立叶变换红外光谱分析、SEM-EDX 分析和爆破强度测试。研究结果 发现,激光处理对涤纶纤维的分散染料吸收有显著影响,因此激光处理过的织物被染成深色。此外,经测定,在 30 dpi 时处理的样品开始熔化,织物受损严重,而在 20 和 25 dpi 时处理的织物则完全不受影响。在涤纶织物中使用激光技术的另一个结果是,如果织物的某些区域不使用激光,而另一些区域使用 20 dpi 60 µs 和 25 dpi 60 µs 的激光进行处理,就有可能在织物上获得包含三种不同深浅的相同颜色的图案。众所周知,如今的色彩测量是使用分光光度计进行数字测量的。然而,当我们在电脑屏幕上观看照片时,我们看到的颜色是由 RGB(红-绿-蓝)值定义的,而在分光光度计中,它们是由 L*a*b* (L*:亮度-暗度,a*:红度-绿度,b*:黄度-蓝度)值定义的。特别是当希望利用激光技术制作各种图案来生产设计产品时,在电脑屏幕上直接向客户显示颜色,并能就颜色的相同值进行对话,会更加有用。因此,在本研究中,没有使用分光光度计对织物样本进行颜色测量,而是用 MATLAB 将从样本照片上获得的 RGB 值转换成 L*a*b* 值并进行解释,即对照片进行数字颜色评估。因此,相信本研究将对文献做出贡献。
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Investigation of the effect of laser technology on the color of polyester fabrics

Purpose

The purpose of this study is to determine the effect of laser treatment on disperse dye-uptake and fastness values of polyester fabrics. Furthermore, it was aimed to evaluate colors directly over the photos of fabric samples instead of color measuring with spectrophotometer which is thought to be useful in terms of online digital color assessment.

Design/methodology/approach

In this study, 100% polyester (150 denier) single jersey knitted fabrics (weight: 145 g/m2, course density: 15 loops/cm, wale density: 24 loops/cm) were used in the trials. The effect of laser treatments before and after dyeing on color was investigated. Laser treatments were applied to fabrics at different resolutions (20, 25 and 30 dpi) and pixel times (60, 80 and 100 µs) before dyeing. The power of the laser beam was 210 W and the wavelength was 10.6 µm. In order to determine the effect of laser treatment on polyester; FTIR analysis, SEM-EDX analysis and bursting strength tests were applied to untreated and treated fabric samples.

Findings

It was found that treatments with laser have a significant effect on disperse dye-uptake of polyester fibers, and for this reason laser-treated fabrics were dyed in darker shade. Furthermore, it was determined that the samples treated at 30 dpi started to melt and the fabric was damaged considerably, but the fabrics treated at 20 and 25 dpi were not affected at all. Another result obtained regarding the use of laser technology in polyester fabrics is that if some areas of fabrics are not treated with laser and some other areas are treated with laser at 20 dpi 60 µs and 25 dpi 60 µs, it will be possible to obtain patterns containing three different shades of the same color on the fabric.

Originality/value

When the literature is examined, it is seen that there are various studies on the dyeability and patterning of polyester fabrics with disperse dyes by laser technology. As it is known, today color measurement is done digitally using a spectrophotometer. However, when we look at a photograph on computer screens, the colors we see are defined by RGB (red-green-blue) values, while in the spectrophotometer they are defined by L*a*b* (L*: lightness-darkness, a*: redness-greenness, b*: yellowness-blueness) values. Especially when it is desired to produce various design products by creating patterns with laser technology, it would be more useful to show the color directly to the customer on the computer screen and to be able to speak over the same values on the color. For this reason, in this study, the color measurement of the fabric samples was not made with a spectrophotometer, instead, the RGB values obtained from the photographs of the samples were converted into L*a*b* values with MATLAB and interpreted, that is, a digital color evaluation was made on the photographs. Therefore, it is believed that this study will contribute to the literature.

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来源期刊
CiteScore
2.40
自引率
8.30%
发文量
51
审稿时长
10 months
期刊介绍: Addresses all aspects of the science and technology of clothing-objective measurement techniques, control of fibre and fabric, CAD systems, product testing, sewing, weaving and knitting, inspection systems, drape and finishing, etc. Academic and industrial research findings are published after a stringent review has taken place.
期刊最新文献
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