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针织应变传感器的尺寸预测与电气性能

Size Prediction and Electrical Performance of Knitted Strain Sensors.

作者信息

Liang Xinhua, Cong Honglian, Dong Zhijia, Jiang Gaoming

机构信息

Engineering Research Center for Knitting Technology, Ministry of Education, Jiangnan University, Wuxi 214122, China.

出版信息

Polymers (Basel). 2022 Jun 10;14(12):2354. doi: 10.3390/polym14122354.

Abstract

Benefitting from the multifunctional properties of knitted fabrics with elasticity, flexibility, and high resilience, knitted strain sensors based on structure and strain performance are widely utilized in sports health due to their adaptability to human movements. However, the fabrication process of common strain sensors mainly relies on experienced technicians to determine the best sensor size through repeated experiments, resulting in significant size errors and a long development cycle. Herein, knitted strain sensors based on plain knit were fabricated with nylon/spandex composite yarn and silver-plated nylon yarn using a flat knitting process. A size prediction model of knitted strain sensors was established by exploring the linear relationship between the conductive area size of samples and knitting parameters via SPSS regression analysis. Combined with stable structures and high performance of good sensitivity, stability, and durability, the knitted strain sensors based on size prediction models can be worn on human skin or garments to monitor different movements, such as pronunciation and joint bending. This research indicated that the reasonable size control of the knitted strain sensor could realize its precise positioning in intelligent garments, exhibiting promising potential in intelligent wearable electronics.

摘要

得益于针织面料具有弹性、柔韧性和高回弹性等多功能特性,基于结构和应变性能的针织应变传感器因其对人体运动的适应性而在运动健康领域得到广泛应用。然而,普通应变传感器的制造过程主要依靠经验丰富的技术人员通过反复实验来确定最佳传感器尺寸,导致尺寸误差较大且开发周期较长。在此,采用横机工艺,用尼龙/氨纶复合纱线和镀银尼龙纱线制造了基于平针编织的针织应变传感器。通过SPSS回归分析探索样品导电面积尺寸与编织参数之间的线性关系,建立了针织应变传感器的尺寸预测模型。基于尺寸预测模型的针织应变传感器结合了稳定的结构和良好的灵敏度、稳定性及耐久性等高性能,可穿戴在人体皮肤上或衣物上以监测不同运动,如发音和关节弯曲。该研究表明,针织应变传感器的合理尺寸控制能够实现其在智能服装中的精确定位,在智能可穿戴电子设备中展现出广阔的应用潜力。

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