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Highly sensitive printed crack-enhanced strain sensor as dual-directional bending detector

机译:高敏感的印刷裂缝增强应变传感器作为双向弯曲探测器

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Strain sensors with good flexibility and high sensitivity attracted a lot of interest because of their potential applications in wearable electronics. In this paper, we demonstrate a high-performance crack-based strain sensor based on printable polyvinyl chloride/carbon black (PVC/CB) composite material. Flexible conductive circuit and PVC/CB composite were screen-printed to a desirable geometry on a polyimide (PI) substrate. After 5000 bends, a stable cracked morphology formed on the PVC/CB surface, which greatly enhanced the sensitivity of our strain sensor: corresponding gauge factors were equal to 741 and 1563 gauge under the tensile and compressive strains, respectively. Our crack-based strain sensor also demonstrated high stability. Additionally, this work shows the application of this crack-based sensor for human activity detection to demonstrate their application prospects for flexible and wearable electronic devices.
机译:具有良好柔韧性和高灵敏度的应变传感器由于其可穿戴电子产品的潜在应用而引起了很多兴趣。 在本文中,我们证明了一种基于可印刷聚氯乙烯/炭黑(PVC / CB)复合材料的高性能裂缝的应变传感器。 将柔性导电电路和PVC / CB复合材料筛选到聚酰亚胺(PI)衬底上的期望几何形状。 在5000°之后,在PVC / CB表面上形成的稳定裂纹形态,这大大提高了我们的应变传感器的灵敏度:相应的量压因子分别在拉伸和压缩菌株下等于741和1563尺。 我们的裂缝的应变传感器也表现出高稳定性。 此外,这项工作表明,基于裂缝的传感器用于人类活动检测的应用,以展示它们的柔性和可穿戴电子设备的应用前景。

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