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Flexible Capacitive Tactile Sensor Based on Micropatterned Dielectric Layer

机译:基于微图案介电层的柔性电容式触觉传感器

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摘要

Flexible tactile sensors are considered as an effective way to realize the sense of touch, which can perform the synchronized interactions with surrounding environment. Here, the utilization of bionic microstructures on natural lotus leaves is demonstrated to design and fabricate new-type of high-performance fl exible capacitive tactile sensors. Taking advantage of unique surface micropattern of lotus leave as the template for electrodes and using polystyrene microspheres as the dielectric layer, the proposed devices present stable and high sensing performance, such as high sensitivity (0.815 kPa(-1)), wide dynamic response range (from 0 to 50 N), and fast response time (approximate to 38 ms). In addition, the fl exible capacitive sensor is not only applicable to pressure (touch of a single hair), but also to bending and stretching forces. The results indicate that the proposed capacitive tactile sensor is a promising candidate for the future applications in electronic skins, wearable robotics, and biomedical devices.
机译:灵活的触觉传感器被认为是实现触摸感的有效方法,可以与周围环境进行同步交互。在这里,证明了利用天然荷叶上的仿生微结构来设计和制造新型的高性能柔性柔性电容式触觉传感器。利用荷叶独特的表面微图案作为电极的模板,并使用聚苯乙烯微球作为介电层,所提出的器件具有稳定和高感测性能,例如高灵敏度(0.815 kPa(-1)),宽动态响应范围(从0到50 N)和快速响应时间(约38毫秒)。此外,柔性电容传感器不仅适用于压力(单根头发的触碰),而且还适用于弯曲和拉伸力。结果表明,提出的电容式触觉传感器是电子皮肤,可穿戴机器人和生物医学设备未来应用的有希望的候选者。

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