Knezić Željko, Penava Željko, Penava Diana Šimić, Rogale Dubravko
Department of Textile Design and Management, Faculty of Textile Technology, University of Zagreb, 10000 Zagreb, Croatia.
Department of Engineering Mechanics, Faculty of Civil Engineering, University of Zagreb, 10000 Zagreb, Croatia.
Materials (Basel). 2021 Jun 18;14(12):3390. doi: 10.3390/ma14123390.
Electrically conductive yarns (ECYs) are gaining increasing applications in woven textile materials, especially in woven sensors suitable for incorporation into clothing. In this paper, the effect of the yarn count of ECYs woven into fabric on values of electrical resistance is analyzed. We also observe how the direction of action of elongation force, considering the position of the woven ECY, effects the change in the electrical resistance of the electrically conductive fabric. The measurements were performed on nine different samples of fabric in a plain weave, into which were woven ECYs with three different yarn counts and three different directions. Relationship curves between values of elongation forces and elongation to break, as well as relationship curves between values of electrical resistance of fabrics with ECYs and elongation, were experimentally obtained. An analytical mathematical model was also established, and analysis was conducted, which determined the models of function of connection between force and elongation, and between electrical resistance and elongation. The connection between the measurement results and the mathematical model was confirmed. The connection between the mathematical model and the experimental results enables the design of ECY properties in woven materials, especially textile force and elongation sensors.
导电纱线(ECY)在机织纺织材料中的应用越来越广泛,尤其是在适合融入服装的机织传感器中。本文分析了织入织物的导电纱线的纱线支数对电阻值的影响。我们还观察了考虑机织导电纱线位置的伸长力作用方向如何影响导电织物电阻的变化。对九种不同的平纹织物样品进行了测量,其中织入了三种不同纱线支数和三个不同方向的导电纱线。通过实验获得了伸长力值与断裂伸长之间的关系曲线,以及含导电纱线织物的电阻值与伸长之间的关系曲线。还建立了一个解析数学模型并进行了分析,确定了力与伸长之间以及电阻与伸长之间的连接函数模型。测量结果与数学模型之间的联系得到了证实。数学模型与实验结果之间的联系使得能够设计机织材料中导电纱线的性能,特别是纺织力和伸长传感器。