UV LED喷墨印刷中油墨固化对纺织品印花色差、油墨泌水和耐磨性的影响

IF 0.7 Q3 MATERIALS SCIENCE, TEXTILES
G. Lavrič, I. Karlovits, Deja Muck, Eva Petra Forte Tavčer, U. Kavčič
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引用次数: 1

摘要

数字印刷技术越来越多地出现在纺织品印刷领域。特别突出的是使用水性油墨的喷墨打印技术,而UV LED喷墨打印也越来越多地被使用。UV LED喷墨主要不用于直接服装印刷;然而,它可以特别用作软标牌市场的混合解决方案。对于那些不仅从事纺织品印刷,而且想要更通用的印刷产品组合的印刷商来说,这是一个很好的选择,可以将其扩展到非服装纺织产品,例如软标牌和非穿戴产品。由于这些类型的产品通常需要徽标的颜色复制,准确的颜色复制、良好的油墨附着力和清晰度与其他印刷技术一样重要。为了评估紫外线LED辐射量对色差、墨水渗出和耐磨性的影响,使用紫外线LED喷墨打印机打印了六个不同的织物样品(五个编织物和一个非织造物)。根据色差的结果,确定紫外线辐射的减少(减少制造商建议量的一半)对该参数没有影响。然而,在使用国际标准ISO 13655-2017定义的不同M测量条件时,观察到了明显的色差。减少UV辐射的量对印刷油墨的粘附性和耐久性没有影响。在这两个参数中检测到的微小差异主要是纺织材料性能的结果,而不是紫外线辐射减少的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Ink Curing in UV LED Inkjet Printing on Colour Differences, Ink Bleeding and Abrasion Resistance of Prints on Textile
Digital printing techniques are increasingly present in the field of textile printing. Particularly prominent is the inkjet printing technique using water-based inks, while UV LED inkjet printing also increasingly being in use. UV LED inkjet is primarily not intended for direct clothing printing; however, it can be used especially as a hybrid solution in the soft signage market. It is a great option for the printers that are not engaged only in textile print¬ing, and want a more versatile print portfolio, extending it to non-clothing textile products, e.g. soft signage and non-wearable products. As these types of products often require colour reproduction of logos, accurate colour reproduction, good ink adhesion and sharpness are important just like in other printing technologies. In order to evaluate the impact of UV LED radiation amount on colour differences, ink bleeding and abrasion resistance, six different fabric samples (five woven and one nonwoven) were printed using a UV LED inkjet printer. Based on the results of colour difference, it was established that a reduction of UV radiation (by half the manufacturer’s recommended amount) had no effect on this parameter. However, perceptible colour differences were observed with the use of different M measurement conditions defined by the international standard ISO 13655-2017. Reducing the amount of UV radiation had no effect on the adhesion and durability of the printed ink. Small differences detected in these two parameters were mainly a consequence of the properties of textile materials and not of decreased UV radiation.
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来源期刊
TEKSTILEC
TEKSTILEC MATERIALS SCIENCE, TEXTILES-
CiteScore
1.30
自引率
14.30%
发文量
22
审稿时长
12 weeks
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