Department of Materials, Textiles and Chemical Engineering, Faculty of Engineering and Architecture, Ghent University, B-9052 Ghent, Belgium.
Ethiopian Institute of Textile and Fashion Technology (EiTEX), Bahir Dar University, 6000 Bahir Dar, Ethiopia.
Sensors (Basel). 2020 Dec 20;20(24):7323. doi: 10.3390/s20247323.
Fabric stretch sensors are available as planar fabrics, but their reliability and reproducibility are low. To find a good working setup for use in an elastic sports garment, the design of such sensors must be optimized. The main purpose of this study was to develop resistive strain sensors from stretchable conductive fabric and investigating the influence of stretchability on conductivity/resistivity. The influence of using the sensor in a sweat rich environment was also determined, in order to evaluate the potential use of the sensor in sporting garments. The sensor resistivity performance was analyzed for its sensitivity, working range, and repeatability and it was determined what makes the sensitivity when elongated or stretched. The resistivity was found to decrease with elongation if no sweat is present, this can be due to molecular rearrangement and a higher degree of orientation that improves the conductivity of a material. The result from this finding also shows that for wearable applications the commercial EeonTex conductive stretchable fabric did not show a considerable resistivity increase, nor a good sensitivity. The sensitivity of the sensor was between 0.97 and 1.28 and varies with different elongation %. This may be due to the mechanical deformation characteristics of knitted samples that lead to changes in conductivity. We advise that the testing performed in this paper is done by default on new stretch sensitive textile materials, so practical use of the material can be correctly estimated.
织物拉伸传感器有平面织物形式,但它们的可靠性和可重复性较低。为了找到在弹性运动服装中使用的良好工作设置,必须优化这种传感器的设计。本研究的主要目的是开发由弹性导电织物制成的电阻应变传感器,并研究拉伸对导电性/电阻的影响。还确定了在富含汗液的环境中使用传感器的影响,以评估传感器在运动服装中的潜在用途。分析了传感器的电阻性能,包括灵敏度、工作范围和重复性,并确定了伸长或拉伸时的灵敏度。如果没有汗液,电阻会随着伸长而降低,这可能是由于分子重排和更高的取向度提高了材料的导电性。这一发现的结果还表明,对于可穿戴应用,商用 EeonTex 导电弹性织物并没有显示出相当大的电阻增加,也没有很好的灵敏度。传感器的灵敏度在 0.97 到 1.28 之间变化,并且随不同的伸长率%而变化。这可能是由于针织样品的机械变形特性导致了导电性的变化。我们建议默认在新的拉伸敏感纺织材料上执行本文中的测试,以便正确估计材料的实际用途。