压光对 100% 再生涤纶纬编织物性能的影响

IF 2.2 4区 工程技术 Q1 MATERIALS SCIENCE, TEXTILES Journal of Industrial Textiles Pub Date : 2024-03-27 DOI:10.1177/15280837241244692
Tamara Ruiz-Calleja, Alberto Jiménez-Suárez, Federico Sainz-de-Robles, Paula Cristóbal-Ruiz
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引用次数: 0

摘要

政府政策的重点是让纺织行业遵循可持续发展和循环经济的趋势,从而提高再生纺织品的使用率,而再生纺织品需要进一步提高性能,才能与其他纺织产品相比具有完全的竞争力,同时使用的二次处理也要对环境友好。在本研究中,对服装和运动纺织品行业的商业品牌目前使用的 100% 再生涤纶纬编织物进行了压延处理,并对处理前后的特性进行了检验。这项研究调查了样品在物理(外观和厚度)、机械(拉伸强度和弹性恢复)和生理(抗水蒸气性、喷雾测试和润湿性)特性方面的变化。经过压延处理后,抗水蒸气性能降低了 23%,这对于运动服装来说尤为重要。此外,压延工艺还增加了接触角,从而降低了润湿性。这项工作的新发现包括:原织物上的汗渍清晰可见,而压光织物上不会出现汗渍,湿度管理也得到改善,同时机械性能不会发生显著变化。这些结果在以前的文献中都没有发现过,这使人们对这种回收纤维的传统工艺产生了浓厚的兴趣,因为它可以促进纺织业知识的进步,并提高经处理织物的性能。所有这些方面都使得这种处理方法在提高纺织材料技术性能的同时,对环境的影响较小,而且经济实惠。
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Effect of calendering on the performance of 100% recycled polyester weft-knitted fabrics
Government policies focus on the textile sector to follow a tendency towards sustainability and circular economy, thus, raising the use of recycled textiles which require further performance improvement to be completely competitive with other textile products while using secondary treatments that are also environmentally friendly. In this study, a 100% recycled polyester weft-knitted fabric, currently used by commercial brands in the apparel and sport textile industry, is calendered and its properties are examined before and after such treatment. This research investigates variations in the physical (appearance and thickness), mechanical (tensile strength and elastic recovery), and physiological (water vapour resistance, spray test, and wettability) characteristics of the samples. The calendering treatment reduces water vapour resistance up to 23%, which is particularly interesting for garments used in sports. Additionally, the contact angle is increased by the calendering process which translates in poorer wettability. Novel findings of this work include that, whereas in the original fabric sweat marks are visible, sweat stains do not appear on the calendered fabric and moisture management improves, while mechanical properties do not undergo significant changes. These results have not been previosly found in the literature, giving a particular interest to a conventional process in this type of recycled fiber that can contribute to the advancement of knowledge in the textile industry and enhance the performance of treated fabrics. All these aspects make the treatment particularly interesting to improve the technical performance of the textile material while using an economic treatment with low effect on the environment.
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来源期刊
Journal of Industrial Textiles
Journal of Industrial Textiles MATERIALS SCIENCE, TEXTILES-
CiteScore
5.30
自引率
18.80%
发文量
165
审稿时长
2.3 months
期刊介绍: The Journal of Industrial Textiles is the only peer reviewed journal devoted exclusively to technology, processing, methodology, modelling and applications in technical textiles, nonwovens, coated and laminated fabrics, textile composites and nanofibers.
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