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Highly stretchable and wearable strain sensors using conductive wool yarns with controllable sensitivity

机译:使用具有可控灵敏度的导电羊毛纱线具有可控羊毛纱的高度可伸展和可穿戴的应变传感器

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Wearable strain sensors for various applications, such as human motion detection, soft robotics, and healthcare have recently received extensive attention. Although a number of strain sensors based on various active materials have been proposed, a simple and practical method to obtain both high stretchable and sensitive strain sensors remains challenging. This paper presents a simple, scalable and environment-friendly fabrication method for wearable strain sensors, based on wool yarns, as abundant, lightweight, and stretchable natural materials. A simple coating technique was used to achieve highly conductive wool yarns using a conductive ink. Different types of strain sensors were then fabricated by changing the shape of the active material within the elastomer to tune their sensitivity. In detail, the conductive yarns were sandwiched within the Ecoflex in the form of a straight line (CWY-1 strain sensors) or serpenoid curves (CWY-2 and CWY-3 strain sensors). The strain sensors were fully characterized up to 200% of applied tensile strain. Gauge factors of 5 and 7.75 were found within the percentage stretch ranges of 0-127 and 127-200 %, respectively, for the CWY-1 strain sensors. We have also demonstrated the ability of the strain sensors to monitor human muscle and joints movements. (C) 2018 Published by Elsevier B.V.
机译:用于各种应用的可穿戴应变传感器,例如人类运动检测,软机器人和医疗保健最近受到了广泛的关注。尽管已经提出了基于各种活性材料的许多应变传感器,但是一种获得高可拉伸和敏感的应变传感器的简单实用的方法仍然具有挑战性。本文介绍了一种简单,可扩展和环保的制造方法,可穿着可穿戴应变传感器,基于羊毛纱线,作为丰富,轻质和可拉伸的天然材料。使用简单的涂布技术使用导电油墨来实现高导电羊毛纱线。然后通过改变弹性体内的活性材料的形状来制造不同类型的应变传感器以调整它们的灵敏度。详细地,导电纱线以直线(CWY-1菌株传感器)或Serpenoid曲线(CWY-2和CWY-3菌株传感器)的形式夹在EcoFlex内。应变传感器完全表征高达200%的施加拉伸应变。对于CWY-1应变传感器,分别在0-127和127-200%的百分比范围内发现5和7.75的仪表因子。我们还证明了应变传感器监测人体肌肉和关节运动的能力。 (c)2018由elestvier b.v出版。

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