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Highly sensitive and stretchable strain sensors based on chopped carbon fibers sandwiched between silicone rubber layers for human motion detections

机译:基于切碎的碳纤维的高敏感和可拉伸的应变传感器,用于人体运动检测硅橡胶层夹在硅橡胶层之间

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摘要

Tuning the electromechanical performance in piezoresistive composite strain sensors is primarily attained through appropriately employing the materials system and the fabrication process. High sensitivity along with flexibility in the strain sensing devices needs to be met according to the application (e.g. human motion detection, health and sports monitoring). In this paper, a highly stretchable and sensitive strain sensor with a low-cost fabrication is proposed which is acquired by embedding the chopped carbon fibers sandwiched in between silicone rubber layers. The electrical and mechanical features of the sensor were characterized through stretch/release loading tests where a considerably high sensitivity (the gauge factor about 100) was observed with very low hysteresis. This implies high strain reversibility (i.e. full recovery in each cycle) over 700 loading cycles. Moreover, the sensors exhibited ultra-high stretchability (up to ~300% elongation) in addition to a low stiffness meaning minimal mechanical effects induced by the sensor for sensitive human motion monitoring applications including large and small deformations. The results suggest the promising capability of the present sensor in reflecting the human body motion detection.
机译:通过适当地采用材料系统和制造过程,调整压阻复合应变传感器中的机电性能。根据应用需要满足高灵敏度以及应变传感装置的灵活性(例如,人类运动检测,健康和体育监测)。在本文中,提出了一种具有低成本制造的高度可伸缩和敏感的应变传感器,其通过将切碎的碳纤维嵌入硅氧烷层之间的夹在硅橡胶层之间而获得。传感器的电气和机械特征通过拉伸/释放负载试验表征,其中观察到具有非常低的滞后观察到相当高的灵敏度(大约100个)。这意味着高应变可逆性(即每个循环中的完全恢复)超过700个装载周期。此外,除了低刚度之外,传感器还表现出超高拉伸性(高达约300%的伸长率),这意味着传感器诱导的用于敏感的人体运动监测应用,包括大小变形的敏感的机械效应。结果表明本发明传感器在反映人体运动检测方面的承诺能力。

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