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Semi-flexible Bionic Whisker Sensor Based on Triboelectric Nanogenerators

机译:基于摩擦纳米电磁炉的半柔性仿生晶须传感器

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Tactile sensing can provide sufficient cues concerning the geometry and texture of the contact in unknown environments. This paper proposes a semi-flexible triboelectric bionic whisker sensor (TBWS) as a novel scheme for robotic tactile perception. To be specific, it comprises power generation units (38mm in length, 18mm in width, and 10mm in thickness), octagonal plate, carbon fiber shaft (300mm in length, 1.5mm in diameter), shape memory alloy, and supporting parts. The octagonal plate hit the power generation units resulted from the carbon fiber shaft subjected to the external force, allowing to gene rate signals from the principle of via triboelectric and electrostatic induction. One another feature of the proposed sensors is that it is inspired by the structure of rat whisker follicles characterized by complex higher-order dynamics. Experimental result shows that TBWS can help robots accomplish autonomous work in complex environments. There is no doubt that the invention of sensor TBWS provides a new direction for robots’ future research.
机译:触觉感应可以提供有足够的提示,了解未知环境中的接触的几何形状和纹理。本文提出了一种半柔性的摩擦母线晶须传感器(TBW),作为机器人触觉感知的新颖方案。具体而言,它包括发电单元(长度为38mm,宽度为18mm,厚度为10mm),八角板,碳纤维轴(300mm,长度为300mm,直径1.5mm),形状记忆合金和支撑部件。八边形板击中发电单元由经过外力的碳纤维轴导致,允许基因率来自摩擦电和静电诱导的原理。所提出的传感器的彼此的另一个特征是它由特征在于复杂的高阶动态的大鼠晶须卵孔的结构的启发。实验结果表明,TBW可以帮助机器人在复杂环境中实现自主工作。毫无疑问,传感器TBW的发明为机器人的未来研究提供了新的方向。

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