Lee Suhyun, Park Sohyun
Department of Fashion and Textiles, Seoul National University Seoul 08826 Republic of Korea
Department of Human Ecology, Korea National Open University Seoul 03087 Republic of Korea
RSC Adv. 2024 Dec 23;14(54):40098-40116. doi: 10.1039/d4ra07365g. eCollection 2024 Dec 17.
This study aimed to determine optimal washing and drying methods for maintaining the functionality of silver-coated conductive knitted fabrics, commonly used in wearable smart products. By investigating changes in the physical, chemical, and electrical properties of these fabrics under various care conditions, we sought to provide recommendations for their proper maintenance. Results showed that mechanical friction during washing, combined with the chemical effect of detergent and the effects of machine drying, led to peeling and oxidation of the silver layer, resulting in changes to the fabric's appearance, color and increased surface resistance. Washing temperatures of 60 °C and the use of neutral detergents caused significant degradation of the silver coating, whereas alkaline detergents and lower temperatures (below 40 °C) caused relatively less damage. Machine drying, as opposed to air drying, further exacerbated damage to the conductive layer. Although the total hand value of the fabrics remained largely unchanged across most conditions, washing at 60 °C and using neutral detergents led to noticeable increases in smoothness and softness. Changes in fabric properties, particularly shrinkage and increased clothing pressure after washing, were observed through 3D virtual fitting, suggesting potential impacts on wear comfort. The study concluded that the care methods for smart clothing should be tailored to both the intended functionality and the wearer's comfort, with a balance between electrical stability and physical properties. Future research should focus on developing standardized guidelines for the care of conductive fabrics to ensure long-term performance and user satisfaction.
本研究旨在确定用于维护可穿戴智能产品中常用的镀银导电针织面料功能的最佳洗涤和干燥方法。通过研究这些面料在各种护理条件下的物理、化学和电学性能变化,我们试图为其正确维护提供建议。结果表明,洗涤过程中的机械摩擦,加上洗涤剂的化学作用和机器烘干的影响,导致银层剥落和氧化,从而使面料的外观、颜色发生变化,并增加表面电阻。60°C的洗涤温度和使用中性洗涤剂会导致银涂层显著降解,而碱性洗涤剂和较低温度(低于40°C)造成的损害相对较小。与空气干燥相比,机器烘干进一步加剧了对导电层的损害。尽管在大多数情况下,面料的总手感值基本保持不变,但在60°C下洗涤并使用中性洗涤剂会导致光滑度和柔软度明显增加。通过3D虚拟试穿观察到面料性能的变化,特别是洗涤后的收缩和服装压力增加,这表明对穿着舒适度可能有影响。该研究得出结论,智能服装的护理方法应根据预期功能和穿着者的舒适度进行调整,在电气稳定性和物理性能之间取得平衡。未来的研究应专注于制定导电面料护理的标准化指南,以确保长期性能和用户满意度。