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Impact of Manufacturing Variability and Washing on Embroidery Textile Sensors

机译:制造差异和清洗对绣花纺织品传感器的影响

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摘要

In this work, an embroidered textile moisture sensor is presented. The sensor is based on a capacitive interdigitated structure embroidered on a cotton substrate with an embroidery conductor yarn composed of 99% pure silver plated nylon yarn 140/17 dtex. In order to evaluate the sensor sensitivity, the impedance of the sensor has been measured by means of a impedance meter (LCR) from 20 Hz to 20 kHz in a climatic chamber with a sweep of the relative humidity from 25% to 65% at 20 °C. The experimental results show a clear and controllable dependence of the sensor impedance with the relative humidity. Moreover, the reproducibility of the sensor performance subject to the manufacturing process variability and washing process is also evaluated. The results show that the manufacturing variability introduces a moisture measurement error up to 4%. The washing process impact on the sensor behavior after applying the first washing cycle implies a sensitivity reduction higher than 14%. Despite these effects, the textile sensor keeps its functionality and can be reused in standard conditions. Therefore, these properties point out the usefulness of the proposed sensor to develop wearable applications within the health and fitness scope including when the user needs to have a life cycle longer than one-time use.
机译:在这项工作中,提出了一种刺绣的纺织品湿度传感器。该传感器基于电容式叉指结构,该结构在棉质基材上绣有绣花导体纱,该绣花导体纱由99%纯银镀尼龙纱140/17 dtex组成。为了评估传感器的灵敏度,已在气候室内使用20 Hz至20 kHz的阻抗计(LCR)测量了传感器的阻抗,在20°C时相对湿度从25%降至65% ℃。实验结果表明,传感器阻抗与相对湿度之间存在明显且可控的依赖关系。此外,还评估了受制造过程变化和清洗过程影响的传感器性能的可再现性。结果表明,制造差异会导致水分测量误差高达4%。在应用第一个洗涤周期后,洗涤过程对传感器行为的影响意味着灵敏度降低幅度超过14%。尽管有这些影响,纺织品传感器仍保持其功能,可以在标准条件下重复使用。因此,这些特性指出了所提出的传感器在健康和健身范围内开发可穿戴应用的有用性,包括当用户需要的生命周期长于一次性使用时。

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