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一种面向可穿戴终端用户的新型基于纺织针法的应变传感器。

A Novel Textile Stitch-Based Strain Sensor for Wearable End Users.

作者信息

Tangsirinaruenart Orathai, Stylios George

机构信息

Research Institute for Flexible Materials, Heriot Watt University, Edinburgh EH14 4AS, UK.

出版信息

Materials (Basel). 2019 May 7;12(9):1469. doi: 10.3390/ma12091469.

Abstract

This research presents an investigation of novel textile-based strain sensors and evaluates their performance. The electrical resistance and mechanical properties of seven different textile sensors were measured. The sensors are made up of a conductive thread, composed of silver plated nylon 117/17 2-ply, 33 tex and 234/34 4-ply, 92 tex and formed in different stitch structures (304, 406, 506, 605), and sewn directly onto a knit fabric substrate (4.44 tex/2 ply, with 2.22, 4.44 and 7.78 tex spandex and 7.78 tex/2 ply, with 2.22 and 4.44 tex spandex). Analysis of the effects of elongation with respect to resistance indicated the ideal configuration for electrical properties, especially electrical sensitivity and repeatability. The optimum linear working range of the sensor with minimal hysteresis was found, and the sensor's gauge factor indicated that the sensitivity of the sensor varied significantly with repeating cycles. The electrical resistance of the various stitch structures changed significantly, while the amount of drift remained negligible. Stitch 304 2-ply was found to be the most suitable for strain movement. This sensor has a wide working range, well past 50%, and linearity (R is 0.984), low hysteresis (6.25% ΔR), good gauge factor (1.61), and baseline resistance (125 Ω), as well as good repeatability (drift in R is -0.0073). The stitch-based sensor developed in this research is expected to find applications in garments as wearables for physiological wellbeing monitoring such as body movement, heart monitoring, and limb articulation measurement.

摘要

本研究对新型纺织基应变传感器进行了调查并评估了其性能。测量了七种不同纺织传感器的电阻和机械性能。这些传感器由导电丝线制成,该导电丝线由镀银尼龙117/17双股线(33特克斯)和234/34四股线(92特克斯)组成,并形成不同的针迹结构(304、406、506、605),然后直接缝在针织面料基底上(4.44特克斯/双股线,含2.22、4.44和7.78特克斯氨纶;以及7.78特克斯/双股线,含2.22和4.44特克斯氨纶)。对伸长率与电阻关系的分析表明了电学性能的理想配置,特别是电灵敏度和重复性。找到了具有最小滞后的传感器的最佳线性工作范围,并且传感器的应变片系数表明传感器的灵敏度随重复循环而显著变化。各种针迹结构的电阻变化显著,而漂移量可忽略不计。发现304双股针迹最适合应变运动。该传感器具有宽工作范围,远超50%,线性度(R为0.984)、低滞后(6.25%ΔR)、良好的应变片系数(1.61)和基线电阻(125Ω),以及良好的重复性(R的漂移为-0.0073)。本研究中开发的基于针迹的传感器有望在服装中作为可穿戴设备用于生理健康监测,如身体运动、心脏监测和肢体关节测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58b9/6540156/d4fef56b6f1c/materials-12-01469-g001.jpg

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