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用于测量出汗量的不锈钢/聚酯混纺针织物的电阻

Electrical Resistance of Stainless Steel/Polyester Blended Knitted Fabrics for Application to Measure Sweat Quantity.

作者信息

Chen Qing, Shu Lin, Fu Bailu, Zheng Rong, Fan Jintu

机构信息

Shanghai International Fashion Innovation Center, Donghua University, Shanghai 200051, China.

School of Electronic and Information Engineering, South China University of Technology, Guangzhou 510640, China.

出版信息

Polymers (Basel). 2021 Mar 25;13(7):1015. doi: 10.3390/polym13071015.

Abstract

Skin wetness and body water loss are important indexes to reflect the heat strain of the human body. According to ISO 7933 2004, the skin wetness and sweat rate are calculated by the evaporative heat flow and the maximum evaporative heat flow in the skin surface, etc. This work proposes the soft textile-based sensor, which was knitted by stainless steel/polyester blended yarn on the flat knitting machine. It investigated the relationship between electrical resistance in the weft/warp directions and different water absorption ratio (0-70%), different sample size (2 cm × 2 cm, 2 cm × 4 cm, 2 cm × 6 cm and 2 cm × 8 cm). The hydrophilic treatment effectively improved the water absorption ratio increasing from 40% to 70%. The weft and warp direction exhibited different electrical behaviors when under dry and wet conditions. It suggested the weft direction of knitted fabrics was recommended for detecting the electrical resistance due to its stable sensitivity and linearity performance. It could be used as a flexible sensor integrated into a garment for measuring the skin wetness and sweat rate in the future instead of traditional measurements.

摘要

皮肤湿度和身体水分流失是反映人体热应激的重要指标。根据ISO 7933 2004标准,皮肤湿度和出汗率是通过皮肤表面的蒸发热流和最大蒸发热流等来计算的。这项工作提出了一种基于柔软纺织品的传感器,它是在横机上用不锈钢/聚酯混纺纱编织而成的。研究了纬向/经向电阻与不同吸水率(0-70%)、不同样品尺寸(2 cm×2 cm、2 cm×4 cm、2 cm×6 cm和2 cm×8 cm)之间的关系。亲水处理有效地将吸水率从40%提高到了70%。在干湿条件下,纬向和经向表现出不同的电学行为。结果表明,针织物的纬向因其稳定的灵敏度和线性性能而推荐用于检测电阻。未来,它可以作为一种柔性传感器集成到服装中,用于测量皮肤湿度和出汗率,以取代传统测量方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e995/8037120/c05468ca6b29/polymers-13-01015-g001.jpg

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