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喷墨打印等离子体表面改性羊毛和棉织物与植物基油墨。

Inkjet printing of plasma surface-modified wool and cotton fabrics with plant-based inks.

机构信息

School of Textiles and Design, Heriot-Watt University, Edinburgh, UK.

School of Engineering and Physical Sciences, Heriot-Watt University, Scottish Borders, UK.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(45):68357-68375. doi: 10.1007/s11356-022-20659-3. Epub 2022 May 10.

Abstract

In this research paper, sustainable technologies that are plasma surface treatment and digital printing of wool and cotton fabrics with herbal inks are implemented for ecological outcomes. One of the significant objectives was to study the plasma surface modification and its implication on fabric absorbency, K/S values gained, and the fastness properties of the resultant herbal fabrics. The wash fastness to colour change was studied wherein plasma surface treatment remarkably improved wash fastness ratings from 1-2 to 3-4 obtained on inkjet printed wool and cotton fabrics. These findings were supported by data gained from optical tensiometer, ATR-FTIR, drop test and SEM justifying the enhanced wettability of the modified fabrics. The factorial experiment was designed for this segment of research, and it was further validated with ANOVA one-way test. The concluding parametric study with plasma surface modification yielded the probability value of 0.000463 and actual power of 0.99 which is reassuring. The ecological characterisation and assessment of functional properties of the herbal fabrics are suggested for the forthcoming study.

摘要

在本研究论文中,实施了等离子体表面处理和数码印花技术,以草本油墨对羊毛和棉织物进行印花,以实现生态效益。其中一个重要目标是研究等离子体表面改性及其对织物吸水性、K/S 值和所得草本织物色牢度的影响。研究了水洗色牢度,结果表明,等离子体表面处理显著提高了喷墨印花羊毛和棉织物的水洗色牢度评级,从 1-2 提高到 3-4。这些发现得到了来自光学张力计、ATR-FTIR、滴液试验和 SEM 的数据的支持,这些数据证明了改性织物的润湿性得到了增强。该部分研究采用析因实验设计,并进一步用单因素方差分析进行了验证。带有等离子体表面改性的结论性参数研究得出的概率值为 0.000463,实际功率为 0.99,这令人安心。建议对草本织物的生态特性和功能特性进行评估,作为后续研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2283/9508230/61d4c09b7ae3/11356_2022_20659_Fig1_HTML.jpg

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