Opt Lett. 2018 Jun 1;43(11):2503-2506. doi: 10.1364/OL.43.002503.
A fiber-Bragg-grating-(FBG)-based sensor is a very popular fiber optic sensor due to its simplicity, mature fabrication technology, and sensitivity to a number of physical stimuli. However, due to the stiff nature of optical fiber, it is impossible to heavily stretch a FBG sensor. A stretchable sensor is highly desired in soft robotics, human motion detection, and biomedical applications, which could involve motions like tension, bending, and twisting. In this Letter, we demonstrate a stretchable FBG-based fiber optic sensor by embedding a FBG-written optic fiber sinusoidally in a soft silicone film at an off-center position. This unique structure enables 30% of elongation in length that facilitates tension, bending, and twisting measurement.
基于光纤布拉格光栅(FBG)的传感器因其结构简单、成熟的制造技术以及对多种物理刺激的敏感性而成为一种非常流行的光纤传感器。然而,由于光纤的刚性,不可能对 FBG 传感器进行大幅度拉伸。在软机器人、人体运动检测和生物医学应用中,人们非常希望使用可拉伸传感器,这些应用可能涉及拉伸、弯曲和扭转等运动。在本信中,我们通过将 FBG 写入的光纤以非中心位置正弦嵌入软硅胶薄膜来展示一种可拉伸的 FBG 光纤传感器。这种独特的结构可实现 30%的长度伸长率,从而方便进行拉伸、弯曲和扭转测量。