A flexible slip sensor using triboelectric nanogenerator approach

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Abstract

With the rapid development of robotic technology, tactile sensors for robots have gained great attention from academic and industry researchers. Tactile sensors for slip detection are essential for human-like steady control in dexterous robot hand. In this paper, we propose and demonstrate a flexible slip sensor based on triboelectric nanogenerator with a seesaw structure. The sensor is composed of two porous PDMS layers separated by an inverted trapezoid structure with a height of 500 μm. In order to customize the sensitivity of the sensor, porous PDMS was fabricated by mixing PDMS with deionized water thoroughly and then removing water with heat. Laser-induced porous graphene and aluminium are served as the pair of contact materials. To detect slip from different directions, two sets of the electrode pair were used. Experimental results show a distinct difference between static state and the moment when a slip happens was detected. In addition, the output voltage of the sensors increased as the increase of slip velocity from 0.25 mm/s to 2.5 mm/s. The flexible slip sensor proposed here shows the potential applications in smart robotics and prosthesis.

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APA

Wang, X., Liang, J., Xiao, Y., Wu, Y., Deng, Y., Wang, X., & Zhang, M. (2018). A flexible slip sensor using triboelectric nanogenerator approach. In Journal of Physics: Conference Series (Vol. 986). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/986/1/012009

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