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Large-scale printed strain sensors based on carbon ink incorporated into an intermittent conductive silver pattern

机译:基于碳油墨的大型印刷应变传感器掺入间歇导电银图案中

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In this study, we demonstrate a new concept of large-scale strain sensors whose construction is based on a hybrid structure of a conductive intermittent pattern with embedded sensing elements made of a functional resistive ink. Because the electrical resistance of the intermittent conductive pattern (made of silver) was much lower than that of the resistance of sensing elements made of carbon-based inks, the sensitivity of the entire sensor depends almost selectively on the properties of the sensing elements, which is a key feature of the demonstrated sensor. The developed large-scale strain sensors were tested during static and dynamic bending deformations, demonstrating good strain sensitivity (gauge factor: 13.26) and no hysteresis within the investigated strain range. This sensor construction may be especially suitable for manufacturing sensors longer than those demonstrated herein (20 cm) and with a desirable electrical resistance. (c) 2021 The Japan Society of Applied Physics
机译:在这项研究中,我们展示了一种新的大规模应变传感器的新概念,其结构基于导电间歇图案的混合结构,其具有由功能电阻墨水制成的嵌入式感测元件。 因为间歇导电图案(银制成)的电阻远低于由碳墨水制成的感测元件的电阻,所以整个传感器的灵敏度几乎取决于感测元件的性质,这 是演示传感器的关键特征。 在静态和动态弯曲变形期间测试开发的大规模应变传感器,展示了良好的应变灵敏度(仪表因子:13.26),并且在调查的应变范围内没有滞后。 该传感器结构可以特别适用于比本文所示(20cm)和所需的电阻的制造传感器。 (c)2021日本应用物理学会

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