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Dual-Core Capacitive Microfiber Sensor for Smart Textile Applications

机译:用于智能纺织应用的双芯电容超细纤维传感器

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摘要

Wearable sensors for smart textile applications have garnered tremendous interest in recent years and can have enormous potential for human machine interfaces and digital health monitoring. Here, we report a soft capacitive microfiber sensor that can be woven seamlessly into textiles for strain measurement. Comprising a dual-lumen elastomeric microtube and liquid metallic alloy, the microfiber sensor enables continual strain perception even after being completely severed. In addition, our microfiber sensor is highly stretchable and flexible and exhibits tunable sensitivity, excellent linearity, a fast response, and negligible hysteresis. More importantly, the microfiber sensor is minimally affected by train rate and compression during strain sensing. Even under drastic environmental changes, the microfiber sensor presents good electrical stability. By integrating the microfiber sensor imperceptibly with textiles, we devise smart textile wearables to interpret hand gestures, detect limb motion, and monitor respiration rate. We believe that this sensor presents enormous potential in unobtrusive continuous health monitoring.
机译:智能纺织应用的可穿戴传感器在近年来赢得了巨大的兴趣,并且可以对人机界面和数字健康监测具有巨大潜力。在这里,我们报告了一种软电容微纤维传感器,可以无缝地编织成纺织品以进行应变测量。含有双腔弹性微管和液体金属合金,微纤维传感器即使在完全切断后也能够持续的应变感知。此外,我们的微纤维传感器是高度可伸缩和柔韧的,并且具有可调灵敏度,优异的线性度,快速响应和可忽略的滞后。更重要的是,在应变感测期间,通过列车速率和压缩的微纤维传感器最小化。即使在剧烈的环境变化下,微纤维传感器也呈现出良好的电稳定性。通过将微纤维传感器与纺织品集成,我们设计了智能纺织品可穿戴物,以解释手势,检测肢体运动,并监测呼吸速率。我们认为,该传感器在不引人注目的持续健康监测中具有巨大的潜力。

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