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All electrospun fabrics based piezoelectric tactile sensor

机译:全静电纺丝织物压电触觉传感器

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Tactile sensors have been widely used in the areas of health monitoring and intelligent human-machine interface. Flexible tactile sensors based on nanofiber mats made by electrospinning can meet the requirements of comfortability and breathability for wearing the body very well. Here, we developed a flexible and self-powered tactile sensor that was sandwich assembled by electrospun organic electrodes and a piezoelectric layer. The metal-free organic electrodes of thermal plastic polyurethane (PU) nanofibers decorated with multi-walled carbon nanotubes were fabricated by electrospinning followed by ultrasonication treatment. The electrospun polyvinylidene fluoride-trifluoroethylene (PVDF-TrFE) mat was utilized as the piezoelectric layer, and it was found that the piezoelectric performance of PVDF-TrFE nanofiber mat added with barium titanate (BaTiO3) nanoparticles was enhanced about 187 than that of the pure PVDF-TrFE nanofiber mat. For practical application, the as-prepared piezoelectric tactile sensor exhibited an approximative linear relationship between the external force and the electrical output. Then the array of fabricated sensors was attached to the fingertips of a glove to grab a cup of water for tactile sensing, and the mass of water can be directly estimated according to the outputs of the sensor array. Attributed to the integrated merits of good flexibility, enhanced piezoelectric performance, light weight, and efficient gas permeability, the developed tactile sensor could be widely used as wearable devices for robot execution end or prosthesis for tactile feedback.
机译:触觉传感器已广泛应用于健康监测和智能人机界面等领域。基于静电纺丝制成的纳米纤维毡的柔性触觉传感器可以很好地满足穿着身体的舒适性和透气性要求。在这里,我们开发了一种灵活的自供电触觉传感器,该传感器由静电纺丝有机电极和压电层夹层组装而成。采用静电纺丝法和超声处理法制备了多壁碳纳米管装饰的热塑性聚氨酯(PU)纳米纤维的无金属有机电极。以静电纺丝聚偏氟乙烯-三氟乙烯(PVDF-TrFE)毡为压电层,发现添加钛酸钡(BaTiO3)纳米颗粒的PVDF-TrFE纳米纤维毡的压电性能比纯PVDF-TrFE纳米纤维毡提高了约187%。在实际应用中,所制备的压电触觉传感器表现出外力与电输出之间的近似线性关系。然后将制造的传感器阵列连接到手套的指尖上,抓取一杯水进行触觉传感,并且可以根据传感器阵列的输出直接估计水的质量。该触觉传感器具有柔韧性好、压电性能增强、重量轻、透气性高等优点,可广泛用作机器人执行端的可穿戴设备或触觉反馈假肢。

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