光纤光栅柔性触觉传感器的材质识别功能研究
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TN247 TH741

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安徽省自然科学基金(1908085QF294)项目资助


Research on material recognition function of fiber Bragg grating flexible tactile sensor
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    摘要:

    针对目前应用于电子皮肤的触觉传感器不能兼具柔韧性和多模态信息感知等问题,对封装于同一柔性聚合物传感单元 中的两根光纤光栅触觉传感器的材质识别功能进行了有限元仿真和实验研究。 首先,推导了光纤光栅触觉传感原理和基于热 传递的接触物体材质识别机理;然后,对封装材料和接触物体进行了热力学仿真分析;最后,搭建了实验系统平台,对光纤光栅 柔性触觉传感器进行了材质识别实验研究。 仿真和实验结果表明,当接触物体为 70℃ 的铝、铁、塑料等材质时,由于热传递引 起的光纤光栅温度传感器中心波长漂移最大值分别为:ΔλB1 = 0. 588 9 nm、ΔλB2 = 0. 277 3 nm 和 ΔλB3 = 0. 169 2 nm,且在接触的 前 10 s 内中心波长漂移随时间变化率分别为 k1 = 31 pm/ s、k2 = 19 pm/ s 和 k3 = 6 pm/ s。 扩展光纤光栅触滑觉传感器的接触物体 材质识别功能,可实现电子皮肤更多模态信息的感知,具有一定的应用价值。

    Abstract:

    In view of the problems that the current tactile sensors applied to electronic skin cannot have flexibility and multi-modal information perception, a finite element simulation and experimental study of the material recognition function of two fiber Bragg grating (FBG) tactile sensors encapsulated in the same polymer sensing unit is carried out. Firstly, the principle of the FBG tactile sensor and the mechanism of material recognition of the contact object based on thermal transfer are derived; then, the thermodynamic simulation analytical experiments of the encapsulated material with different contact objects are carried out; finally, the experimental system platform is built and the material recognition of FBG flexible tactile sensor is investigated experimentally. The simulation and experimental results show that when the contact object is aluminum, iron and plastic at 70℃ respectively, the maximum values of the central wavelength shift of the FBG temperature sensor due to thermal transfer are: ΔλB1 = 0. 588 9 nm, ΔλB2 = 0. 277 3 nm and ΔλB3 = 0. 169 2 nm, and the rate of change of the central wavelength shift with time in the first 10 seconds of exposure are k1 = 31 pm/ s、k2 = 19 pm/ s and k3 = 6 pm/ s. Expanding the recognition function of the contact object material of the FBG tactile sensor can realize the perception of more modal information of the electronic skin, which has certain application value.

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钱牧云,张姣姣,魏新园.光纤光栅柔性触觉传感器的材质识别功能研究[J].仪器仪表学报,2022,43(4):206-212

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  • 在线发布日期: 2023-02-06
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