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Electrical Impedance Spectroscopy for Electro-Mechanical Characterization of Conductive Fabrics

机译:电阻抗谱用于导电织物的机电特性

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摘要

When we use a conductive fabric as a pressure sensor, it is necessary to quantitatively understand its electromechanical property related with the applied pressure. We investigated electromechanical properties of three different conductive fabrics using the electrical impedance spectroscopy (EIS). We found that their electrical impedance spectra depend not only on the electrical properties of the conductive yarns, but also on their weaving structures. When we apply a mechanical tension or compression, there occur structural deformations in the conductive fabrics altering their apparent electrical impedance spectra. For a stretchable conductive fabric, the impedance magnitude increased or decreased under tension or compression, respectively. For an almost non-stretchable conductive fabric, both tension and compression resulted in decreased impedance values since the applied tension failed to elongate the fabric. To measure both tension and compression separately, it is desirable to use a stretchable conductive fabric. For any conductive fabric chosen as a pressure-sensing material, its resistivity under no loading conditions must be carefully chosen since it determines a measurable range of the impedance values subject to different amounts of loadings. We suggest the EIS method to characterize the electromechanical property of a conductive fabric in designing a thin and flexible fabric pressure sensor.
机译:当我们使用导电织物作为压力传感器时,有必要定量地了解其与所施加压力有关的机电性能。我们使用电阻抗谱(EIS)研究了三种不同导电织物的机电性能。我们发现,它们的电阻抗谱不仅取决于导电纱的电性能,还取决于它们的编织结构。当我们施加机械张力或压缩力时,导电织物会发生结构变形,从而改变其表观电阻抗谱。对于可拉伸的导电织物,阻抗大小分别在拉伸或压缩下增加或减小。对于几乎不可拉伸的导电织物,由于所施加的张力不能使织物伸长,因此张力和压缩均导致阻抗值降低。为了分别测量张力和压缩力,期望使用可拉伸的导电织物。对于任何被选作压力传感材料的导电织物,必须仔细选择其在无负载条件下的电阻率,因为它决定了承受不同负载量的阻抗值的可测量范围。我们建议在设计薄而柔韧的织物压力传感器时,采用EIS方法来表征导电织物的机电性能。

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